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Inserire qui il curricFrancesca Nanni si è laureata nell’aa 1996-1997 in Ingegneria Chimica presso l’Università di Roma “La Sapienza”. Nel 2000 svolge attività di ricerca sui materiali compositi autodiagnosticanti presso il Japanise Fine Ceramic Centre (JFCC) di Nagoya (Giappone). Nel 2001 svolge attività di ricerca presso l’Università di Roma “La Sapienza”. Nel 2003 diventa Dottore di Ricerca in Ingegneria dei Materiali presso l’Università di Roma “Tor Vergata”, dove ha svolto attività di Ricercatore dal 2002 al 2010. Attualmente è Professore Associato di Scienza e Tecnologia dei Materiali (ING.IND/22) presso il Dipartimento di Ingegneria dell’Impresa dell’Università di Roma “Tor Vergata”, ed è docente dei corsi di Fondamenti di Scienza dei Materiali e Metallurgia per i corsi di  Laurea in Ingegneria Meccanica ed Ing. Energetica, e dei corsi di Materiali per la Produzione Industriale e di Ceramici e Compositi per i corsi di  Laurea Specialistica in Ingegneria Gestionale, Ing. Meccanica e Scienza dei Materiali. Dal 2003 è nel Collegio dei Docenti del Dottorato di Ricerca in Ingegneria  della Progettazione e Produzione Industriale. E’ membro dell’AIMAT (Associazione Italiana Materiali), dell’INSTM (Consorzio Interuniversitario per la Scienza e Tecnologia dei Materiali) e dell’ECNP (European Center for Nanostructured Polymers).

Membro del comitato scientifico di diversi congressi e del workshop ASI tenutosi nel Luglio 2016 su “Additive Manufacturing per lo Spazio: Stato dell'arte, Sviluppi e Prospettive”. Chairman del IX ECNP Conference on Nanostructured Polymers and Nanocomposites (Roma, Sett. 2016), editor della rivista Polymer International, reviwer di più di 10 riviste internazionali nel settore della Scienza e Tecnologia dei Materiali, Responsabile Scientifico di 26 progetti di Ricerca Industriale e Partecipante/Responsabile a 10 Progetti di Ricerca Scientifica Nazionali/UE  in partecipazione a Bandi pubblici.

Autore di più di 60 articoli su rivista internazionale peer-review, e più di  50 atti di congressi, di 20 dei quali è stata relatore. E’ autrice del capitolo “Electromagnetic properties of polymer CNT composites” in “Polymer carbon nanotube composites: synthesis, properties and applications” Editors: Dr Tony McNally and Dr Petra Pötschke Woodhead Publishing Limited. Coautrice di 3 brevetti. Co-fondatore di uno spin-off universitario Tecnosens srl.

 

ulum

Francesca Nanni graduated in Chemical Engineering at the University of Rome “La Sapienza” in the academic year 1996-1997. In 2000 she carried out  research activity on self-monitoring materials at the Japanise Fine Ceramic Centre (JFCC) of Nagoya (Japan) and, successively in 2001 at the University of Rome “La Sapienza”.  PhD in Materials Engineering  in 2003 at the University of Rome “Tor Vergata”, where she becomes Researcher in the field of Scienza e Tecnologia dei Materiali (ING.IND/22) from2002 al 2010. Is currently associate Professor in  Scienza e Tecnologia dei Materiali (ING.IND/22) at the Department of Enterprise Engineering, at the University of Rome “Tor Vergata”,  where  she teaches Fundamentals of Material Science and Metallurgy (Degree in Mechanical Engineering, Energetic Engineering), Materials for Industrial Production (Maser Degree in Enterprise Engineering, Mechanical Engineering, and Material Science), Chemistry and Fundamental of Material Science (Degree of Enterprise Engineering, online course)

Since 2003 she is in the Board of Professors of the Doctorate in Industrial Engineering and successively of the Doctorate in Design and Manufacturing Engineering

Prof Nanni is a member of AIMAT (Associazione Italiana Materiali), INSTM (Consorzio Interuniversitario per la Scienza e Tecnologia dei Materiali) and ECNP (European Center for Nanostructured Polymers).

She is member of the scientific commetee of many international congress and workshops. She was Chairman of the  IX ECNP Conference on Nanostructured Polymers and Nanocomposites (Rome, Sett. 2016), editor of Polymer International, reviewer of more than 10 international scientific journals in the field of Material Science and Technology,

She is the Scientific Supervisor of more than 26 Industrial research Projects, and participant/coordinator in  10 Scientific National/EU Research Projects.

She is author of more than 60 scientific papers published in peer-review international journals, of more than  50 congress proceedings, 20 of which she presented in conference. She is author of the chapter “Electromagnetic properties of polymer CNT composites” in “Polymer carbon nanotube composites: synthesis, properties and applications” Editors: Dr Tony McNally and Dr Petra Pötschke Woodhead Publishing Limited. Co-author of  3 patents. Co-founder of an università spin-off Tecnosens srl.

 

a:104:{i:0;a:14:{s:9:"citazione";s:206:"Bragaglia, M., Lamastra, F.R., Cherubini, V., & Nanni, F. (2020). 3D printing of polybutadiene rubber cured by photo-induced thiol-ene chemistry: A proof of concept. EXPRESS POLYMER LETTERS, 14(6), 576-582.";s:4:"data";s:4:"2020";s:2:"id";s:20:"PUBBLICAZIONE_388894";s:6:"handle";s:11:"2108/246691";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:55:"rubber; 3D printing; elastomers; additive manufacturing";s:9:"metadata3";s:18:"Settore ING-IND/22";s:9:"metadata4";N;s:9:"metadata5";s:98:"3D printing of polybutadiene rubber cured by photo-induced thiol-ene chemistry: A proof of concept";s:9:"metadata6";s:50:"Bragaglia, M; Lamastra, FR; Cherubini, V; Nanni, F";s:9:"metadata7";s:32:"10.3144/expresspolymlett.2020.47";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:1;a:14:{s:9:"citazione";s:249:"Cugliari, J., Straffi, P., Agoretti, P., Klüppel, M., Meier, J., & Nanni, F. (2020). VALIDATION OF THE KUMMER FRICTION MODEL FOR RUBBER COMPOUNDS ON SINUSOIDAL TRACKS BY FEA SIMULATIONS AND EXPERIMENTAL TECHNIQUES. RUBBER CHEMISTRY AND TECHNOLOGY.";s:4:"data";s:4:"2020";s:2:"id";s:20:"PUBBLICAZIONE_367515";s:6:"handle";s:11:"2108/228149";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:128:"VALIDATION OF THE KUMMER FRICTION MODEL FOR RUBBER COMPOUNDS ON SINUSOIDAL TRACKS BY FEA SIMULATIONS AND EXPERIMENTAL TECHNIQUES";s:9:"metadata6";s:70:"Cugliari, J; Straffi, P; Agoretti, P; Klüppel, M; Meier, J; Nanni, F";s:9:"metadata7";s:20:"10.5254/rct.20.80433";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:2;a:14:{s:9:"citazione";s:278:"Mazzuca, C., Severini, L., Missori, M., Tumiati, M., Domenici, F., Micheli, L., et al. (2020). Evaluating the influence of paper characteristics on the efficacy of new poly(vinyl alcohol) based hydrogels for cleaning modern and ancient paper. MICROCHEMICAL JOURNAL, 155, 104716.";s:4:"data";s:4:"2020";s:2:"id";s:20:"PUBBLICAZIONE_373039";s:6:"handle";s:11:"2108/249318";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore CHIM/02";s:9:"metadata4";N;s:9:"metadata5";s:146:"Evaluating the influence of paper characteristics on the efficacy of new poly(vinyl alcohol) based hydrogels for cleaning modern and ancient paper";s:9:"metadata6";s:138:"Mazzuca, C; Severini, L; Missori, M; Tumiati, M; Domenici, F; Micheli, L; Titubante, M; Bragaglia, M; Nanni, F; Paradossi, G; Palleschi, A";s:9:"metadata7";s:28:"10.1016/j.microc.2020.104716";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:3;a:14:{s:9:"citazione";s:190:"Bragaglia, M., Cacciotti, I., Cherubini, V., & Nanni, F. (2019). Influence of organic modified silica coatings on the tribological properties of elastomeric compounds. WEAR, 434-435, 202987.";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_367077";s:6:"handle";s:11:"2108/227789";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:73:"Silica coatings; Elastomeric compounds; Dip coating; Friction coefficient";s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:101:"Influence of organic modified silica coatings on the tribological properties of elastomeric compounds";s:9:"metadata6";s:50:"Bragaglia, M; Cacciotti, I; Cherubini, V; Nanni, F";s:9:"metadata7";s:26:"10.1016/j.wear.2019.202987";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:4;a:14:{s:9:"citazione";s:309:"Bragaglia, M., Lamastra, F.r., Tului, M., Di Gaspare, L., Notargiacomo, A., Valentini, M., et al. (2019). Low temperature sputtered ITO on glass and epoxy resin substrates: influence of process parameters and substrate roughness on morphological and electrical properties. SURFACES AND INTERFACES, 17, 100365.";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_367145";s:6:"handle";s:11:"2108/227847";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:86:"ITO; Magnetron sputtering; Polymeric substrates; Microstructure; Electrical properties";s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:165:"Low temperature sputtered ITO on glass and epoxy resin substrates: influence of process parameters and substrate roughness on morphological and electrical properties";s:9:"metadata6";s:92:"Bragaglia, M; Lamastra, Fr; Tului, M; Di Gaspare, L; Notargiacomo, A; Valentini, M; Nanni, F";s:9:"metadata7";s:28:"10.1016/j.surfin.2019.100365";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:5;a:14:{s:9:"citazione";s:229:"Cacciotti, I., Rinaldi, M., Fabbrizi, J., & Nanni, F. (2019). Innovative polyetherimide and diatomite based composites: Influence of the diatomite kind and treatment. JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY, 8(2), 1737-1745.";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_347615";s:6:"handle";s:11:"2108/212102";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:103:"Innovative polyetherimide and diatomite based composites: Influence of the diatomite kind and treatment";s:9:"metadata6";s:47:"Cacciotti, I; Rinaldi, M; Fabbrizi, J; Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:6;a:14:{s:9:"citazione";s:198:"Cacciotti, I., Valentini, M., Raio, M., & Nanni, F. (2019). Design and development of advanced BaTiO3/MWCNTs/PVDF multi-layered systems for microwave applications. COMPOSITE STRUCTURES, 224, 111075.";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_367075";s:6:"handle";s:11:"2108/227787";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:106:"Polyvinylidene fluoride; Barium titanate; Multiwalled carbon nanotubes (MWCNTs); Electromagnetic absorbers";s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:102:"Design and development of advanced BaTiO3/MWCNTs/PVDF multi-layered systems for microwave applications";s:9:"metadata6";s:45:"Cacciotti, I; Valentini, M; Raio, M; Nanni, F";s:9:"metadata7";s:32:"10.1016/j.compstruct.2019.111075";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:7;a:14:{s:9:"citazione";s:238:"Nanni, F. (2019). Multifunctional polymeric composite materials for 3d printing: the scenario in industry 4.0. Paper presented at CWorkshop on Progress in Nanotechnology and Optoelectronics 25 –29 April, 2019, Lodz, Poland INVITED TALK.";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_372925";s:6:"handle";s:11:"2108/232666";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:18:"Settore ING-IND/22";s:9:"metadata4";N;s:9:"metadata5";s:91:"Multifunctional polymeric composite materials for 3d printing: the scenario in industry 4.0";s:9:"metadata6";s:8:"Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:8;a:14:{s:9:"citazione";s:264:"Nanni, F., Rinaldi, M., & Bragaglia, L. (2019). “Multifunctional composite materials for additive layer manufacturing”. Paper presented at CCMST Collaborative Conference on Materials Science and Technology, 14 –18 October, 2019, Shanghai, China INVITED TALK.";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_372928";s:6:"handle";s:11:"2108/232668";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:18:"Settore ING-IND/22";s:9:"metadata4";N;s:9:"metadata5";s:74:"“Multifunctional composite materials for additive layer manufacturing”";s:9:"metadata6";s:39:"Nanni, F; Rinaldi, M; Bragaglia, LPLPeM";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:9;a:14:{s:9:"citazione";s:243:"Pigliaru, L., Paleari, L., Rinaldi, M., Bragaglia, M., Romana Lamastra, F., Rohr, T., et al. (2019). PEEK-NdFeB 3D printed composite materials development and testing. Paper presented at Euromat 2019, 1-5 –September, 2019, Stockholm, Sweden.";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_372915";s:6:"handle";s:11:"2108/232658";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:18:"Settore ING-IND/22";s:9:"metadata4";N;s:9:"metadata5";s:65:"PEEK-NdFeB 3D printed composite materials development and testing";s:9:"metadata6";s:100:"Pigliaru, L; Paleari, L; Rinaldi, M; Bragaglia, M; Romana Lamastra, F; Rohr, T; Ghidini, T; Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:10;a:14:{s:9:"citazione";s:236:"Pigliaru, L., Rinaldi, M., Cicacci, L., Paleari, L., Bragaglia, M., Norman, A., et al. (2019). PEEK/NdFeB 3D printed magnetic materials. Paper presented at 70th International Astronautical Congress, IAC 2019, Washington; United States;.";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_372912";s:6:"handle";s:11:"2108/232654";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:18:"Settore ING-IND/22";s:9:"metadata4";N;s:9:"metadata5";s:40:"PEEK/NdFeB 3D printed magnetic materials";s:9:"metadata6";s:103:"Pigliaru, L; Rinaldi, M; Cicacci, L; Paleari, L; Bragaglia, M; Norman, A; Rohr, T; Ghidini, T; Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:11;a:14:{s:9:"citazione";s:297:"Rinaldi, M., Ghidini, T., Bragaglia, M., Franceschetti, F., & Nanni, F. (2019). GNP/ MWCNT/MCF PEEK Composites for FDM Printing: Paving the Way Towards Smart Structures. Paper presented at 8th International Conference on Carbon NanoParticle based Composites, CNP- Comp 2019, 17-19 July London, UK.";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_372920";s:6:"handle";s:11:"2108/232660";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:18:"Settore ING-IND/22";s:9:"metadata4";N;s:9:"metadata5";s:88:"GNP/ MWCNT/MCF PEEK Composites for FDM Printing: Paving the Way Towards Smart Structures";s:9:"metadata6";s:64:"Rinaldi, M; Ghidini, T; Bragaglia, M; Franceschetti, F; Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:12;a:14:{s:9:"citazione";s:283:"Schnabel-Lubovsky, M., Kossover, O., Melino, S., Nanni, F., Talmon, Y., & Seliktar, D. (2019). Visualizing cell-laden fibrin-based hydrogels using cryogenic scanning electron microscopy and confocal microscopy. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 13(4), 587-598.";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_347060";s:6:"handle";s:11:"2108/211674";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:88:"confocal microscopy; electron microscopy; fibrin; hydrogel; scaffold; tissue engineering";s:9:"metadata3";s:14:"Settore BIO/10";s:9:"metadata4";s:1816:"The present investigation explores the microscopic aspects of cell-laden hydrogels at high resolutions, using three-dimensional cell cultures in semi-synthetic constructs that are of very high water content (>98% water). The study aims to provide an imaging strategy for these constructs, while minimizing artefacts. Constructs of poly(ethylene glycol)-fibrinogen and fibrin hydrogels containing embedded mesenchymal cells (human dermal fibroblasts) were first imaged by confocal microscopy. Next, high-resolution scanning electron microscopy (HR-SEM) was used to provide images of the cells within the hydrogels, at submicron resolutions. Because it was not possible to obtain artefact-free images of the hydrogels using room-temperature HR-SEM, a cryogenic HR-SEM imaging methodology was employed to visualize the sample while preserving the natural hydrated state of the hydrogel. The ultrastructural details of the constructs were observed at subcellular resolutions, revealing numerous cellular components, the biomaterial in its native configuration, and the uninterrupted cell membrane as it relates with the biomaterial in the hydrated state of the construct. Constructs containing microscopic albumin microbubbles were also imaged using these methodologies to reveal fine details of the interaction between the cells, the microbubbles, and the hydrogel. Taken together with the confocal microscopy, this imaging strategy provides a more complete picture of the hydrated state of the hydrogel network with cells inside. As such, this methodology addresses some of the challenges of obtaining this information in amorphous hydrogel systems containing a very high water content (>98%) with embedded cells. Such insight may lead to better hydrogel-based strategies for tissue engineering and regeneration.";s:9:"metadata5";s:114:"Visualizing cell-laden fibrin-based hydrogels using cryogenic scanning electron microscopy and confocal microscopy";s:9:"metadata6";s:78:"Schnabel-Lubovsky, M; Kossover, O; Melino, S; Nanni, F; Talmon, Y; Seliktar, D";s:9:"metadata7";s:17:"10.1002/term.2813";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:13;a:14:{s:9:"citazione";s:201:"Cecchini, F., Cherubini, V., Fabbrocino, F., & Nanni, F. (2018). DOE analysis of the rheological data of shear-thickening fluids for puncture-resistant composite shells. DATA IN BRIEF, 21, 176-184-184.";s:4:"data";s:7:"2018-12";s:2:"id";s:20:"PUBBLICAZIONE_343050";s:6:"handle";s:11:"2108/208188";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";s:1577:"The dilatancy (Shear-thickening) is a time-independent rheological behaviour exhibited by some non-Newtonian fluids. These fluids manifest a surge in the apparent viscosity with an increase in the shear rate. If these fluids are encapsulated, they can be used to manufacture high-end stab resistance inserts (Cecchini et al., 2018) [1]. In the first part of this work, a comparison between the rheological performance of different shear-thickening fluids (STFs) based on nanosilica dispersed in glycols is presented. This analysis attempts to investigate the combinations of fillers and carriers with the highest energy-absorbing capabilities, among the various glycol-based colloidal STFs. In the second part, the influence of the composition of the STF on its rheological properties is analyzed statistically. The statistical analysis is performed by evaluating the interaction between the main design variables of the fluids (filler dimension, weight-to-weight ratio and molecular weight of the carrier). Finally, the puncture resistance of a composite system obtained by encapsulating the previously manufactured shear-thickening fluids in a polymeric shell is analyzed by means of a high-speed puncture test. This test is performed on the mockup of a tyre tread containing the best performing STF. The results showed that the use of the STF core increased the resistance to puncture by 20% as compared to the same volume of tyre tread material. Furthermore, the STF hermetically sealed the pierced sample, even when the tyre mockup was inflated at high internal pressures.";s:9:"metadata5";s:103:"DOE analysis of the rheological data of shear-thickening fluids for puncture-resistant composite shells";s:9:"metadata6";s:50:"Cecchini, F; Cherubini, V; Fabbrocino, F; Nanni, F";s:9:"metadata7";s:25:"10.1016/j.dib.2018.09.107";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:14;a:14:{s:9:"citazione";s:282:"Cacciotti, I., Ciocci, M., Di Giovanni, E., Nanni, F., & Melino, S. (2018). Hydrogen sulfide-releasing fibrous membranes: Potential patches for stimulating human stem cells proliferation and viability under oxidative stress. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 19(8), 2368.";s:4:"data";s:7:"2018-08";s:2:"id";s:20:"PUBBLICAZIONE_336962";s:6:"handle";s:11:"2108/203304";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:14:"Settore BIO/10";s:9:"metadata4";N;s:9:"metadata5";s:147:"Hydrogen sulfide-releasing fibrous membranes: Potential patches for stimulating human stem cells proliferation and viability under oxidative stress";s:9:"metadata6";s:60:"Cacciotti, I; Ciocci, M; Di Giovanni, E; Nanni, F; Melino, S";s:9:"metadata7";s:20:"10.3390/ijms19082368";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:15;a:14:{s:9:"citazione";s:236:"Benucci, I., Liburdi, K., Lombardelli, C., Nanni, F., Esti, M., & Zappino, M. (2018). Chitosan/clay nanocomposite films as supports for enzyme immobilization: an innovative green approach for winemaking applications. FOOD HYDROCOLLOIDS.";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_321134";s:6:"handle";s:11:"2108/189652";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:129:"Chitosan/clay nanocomposite films as supports for enzyme immobilization: an innovative green approach for winemaking applications";s:9:"metadata6";s:69:"Benucci, I; Liburdi, K; Lombardelli, C; Nanni, F; Esti, M; Zappino, M";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:16;a:14:{s:9:"citazione";s:220:"Cacciotti, I., Mori, S., Cherubini, V., & Nanni, F. (2018). Eco-sustainable systems based on poly(lactic acid), diatomite and coffee grounds extract for food packaging. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_326581";s:6:"handle";s:11:"2108/194355";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:107:"Eco-sustainable systems based on poly(lactic acid), diatomite and coffee grounds extract for food packaging";s:9:"metadata6";s:45:"Cacciotti, I; Mori, S; Cherubini, V; Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:17;a:14:{s:9:"citazione";s:226:"Federico, C., Valeria, C., Fabbrocino, F., & Nanni, F. (2018). Novel approach to the design of sound insulating composites by means of a non-linearly extrapolated master curve. THE OPEN MATERIALS SCIENCE JOURNAL, 12(1), 14-28.";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_343657";s:6:"handle";s:11:"2108/208712";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:112:"Novel approach to the design of sound insulating composites by means of a non-linearly extrapolated master curve";s:9:"metadata6";s:48:"Federico, C; Valeria, C; Fabbrocino, F; Nanni, F";s:9:"metadata7";s:27:"10.2174/1874088X01812010014";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:18;a:14:{s:9:"citazione";s:231:"Lamastra, F.r., Grilli, M.l., Leahu, G., Belardini, A., Li Voti, R., Sibilia, C., et al. (2018). Photoacoustic Spectroscopy Investigation of Zinc Oxide/Diatom Frustules Hybrid Powders. INTERNATIONAL JOURNAL OF THERMOPHYSICS, 39(9).";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_343052";s:6:"handle";s:11:"2108/208190";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:86:"Photoacoustic Spectroscopy Investigation of Zinc Oxide/Diatom Frustules Hybrid Powders";s:9:"metadata6";s:110:"Lamastra, Fr; Grilli, Ml; Leahu, G; Belardini, A; Li Voti, R; Sibilia, C; Salvatori, D; Cacciotti, I; Nanni, F";s:9:"metadata7";s:25:"10.1007/s10765-018-2428-6";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:19;a:14:{s:9:"citazione";s:269:"Nanni, F., Nacamulli, S., De Francesco, R., Petritoli, E., & Morello, R. (2018). A New Reliability Approach for Additive Layers Manufactured Components: An Improvement. Paper presented at 2018 5th IEEE International Workshop on Metrology for AeroSpace (MetroAeroSpace).";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_343055";s:6:"handle";s:11:"2108/208192";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:86:"A New Reliability Approach for Additive Layers Manufactured Components: An Improvement";s:9:"metadata6";s:65:"Nanni, F; Nacamulli, S; De Francesco, R; Petritoli, E; Morello, R";s:9:"metadata7";s:35:"10.1109/MetroAeroSpace.2018.8453530";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:20;a:14:{s:9:"citazione";s:310:"Pigliaru, L., Rinaldi, M., Allegranza, C., Bragaglia, M., Nanni, F., Ciccacci, L., et al. (2018). Long Term Storage Issues of NdFeB magnets: Coatings and PEEK/ NdFeB composites as alternative approaches. Paper presented at IAC- 9th International Astronautical Congress (IAC), Bremen, Germany, 1-5 October 2018.";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_372922";s:6:"handle";s:11:"2108/232664";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:18:"Settore ING-IND/22";s:9:"metadata4";N;s:9:"metadata5";s:104:"Long Term Storage Issues of NdFeB magnets: Coatings and PEEK/ NdFeB composites as alternative approaches";s:9:"metadata6";s:96:"Pigliaru, L; Rinaldi, M; Allegranza, C; Bragaglia, M; Nanni, F; Ciccacci, L; Rohr, T; Ghidini, T";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:21;a:14:{s:9:"citazione";s:186:"Rinaldi, M., Ghidini, T., Cecchini, F., Brandao, A., & Nanni, F. (2018). Additive layer manufacturing of poly (ether ether ketone) via FDM. COMPOSITES. PART B, ENGINEERING, 145, 162-172.";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_343653";s:6:"handle";s:11:"2108/208710";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:65:"Additive layer manufacturing of poly (ether ether ketone) via FDM";s:9:"metadata6";s:57:"Rinaldi, M; Ghidini, T; Cecchini, F; Brandao, A; Nanni, F";s:9:"metadata7";s:33:"10.1016/j.compositesb.2018.03.029";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:22;a:14:{s:9:"citazione";s:207:"Cecchini, F., Cherubini, V., Fabbrocino, F., & Nanni, F. (2017). “Numerical modeling of a Composite pentamode comprising a shear-thickening fluid". 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CORROSION SCIENCE.";s:4:"data";s:4:"2017";s:2:"id";s:20:"PUBBLICAZIONE_321142";s:6:"handle";s:11:"2108/189655";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:86:"Document Corrosion and radiation resistant nanoceramic coatings for lead fast reactors";s:9:"metadata6";s:271:"García Ferré⁠, F; Mairov⁠, A; Iadicicco⁠, D; Vanazzi⁠a⁠, ⁠; Bassini⁠, S; Utili⁠, M; Tarantino⁠, M; Bragaglia⁠, M; Lamastra⁠, F; Nanni, F; Ceseracciu⁠, L; Serruys⁠, Y; Trocellier⁠, P; Beck⁠, L; Sridharan⁠, K; Beghi⁠, M; Di Fonzo⁠, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:24;a:14:{s:9:"citazione";s:185:"Kenny, J., Puglia, D., & Nanni, F. (a cura di). (2017). In Focus International Conference on Nanostructured Polymers and Nanocomposites (ECNP). ;Southern Gate : John Wiley and Sons Ltd.";s:4:"data";s:4:"2017";s:2:"id";s:20:"PUBBLICAZIONE_326583";s:6:"handle";s:11:"2108/194357";s:9:"metadata1";s:8:"Curatele";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:86:"In Focus International Conference on Nanostructured Polymers and Nanocomposites (ECNP)";s:9:"metadata6";s:29:"Kenny, J; Puglia, D; Nanni, F";s:9:"metadata7";s:15:"10.1002/pi.5460";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:25;a:14:{s:9:"citazione";s:211:"Lamastra, F., Grilli, M., Leahu, G., Belardini, A., Voti, R., Sibilia, C., et al. (2017). Diatom frustules decorated with zinc oxide nanoparticles for enhanced optical properties. 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ONCOTARGET.";s:4:"data";s:10:"2016-10-12";s:2:"id";s:20:"PUBBLICAZIONE_297235";s:6:"handle";s:11:"2108/168731";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:14:"Settore BIO/10";s:9:"metadata4";N;s:9:"metadata5";s:109:"H2S-releasing nanoemulsions: a new formulation to inhibit tumor cells proliferation and improve tissue repair";s:9:"metadata6";s:69:"Ciocci, M; Iorio, E; Carotenuto, F; Khashoggi, H; Nanni, F; Melino, S";s:9:"metadata7";s:25:"10.18632/oncotarget.12609";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:30;a:14:{s:9:"citazione";s:207:"DE NICOLA, F., Salvato, M., Cirillo, C., Crivellari, M., Boscardin, M., Scarselli, M.a., et al. (2016). Record efficiency of air-stable multi-walled carbon nanotube/silicon solar cells. CARBON, 101, 226-234.";s:4:"data";s:7:"2016-01";s:2:"id";s:20:"PUBBLICAZIONE_303083";s:6:"handle";s:11:"2108/173619";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:37:"Settore FIS/03 - Fisica della Materia";s:9:"metadata4";N;s:9:"metadata5";s:80:"Record efficiency of air-stable multi-walled carbon nanotube/silicon solar cells";s:9:"metadata6";s:135:"DE NICOLA, F; Salvato, M; Cirillo, C; Crivellari, M; Boscardin, M; Scarselli, Ma; Nanni, F; Cacciotti, I; DE CRESCENZI, M; Castrucci, P";s:9:"metadata7";s:28:"10.1016/j.carbon.2016.01.099";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:31;a:14:{s:9:"citazione";s:195:"Scarselli, M.a., Castrucci, P., Nicola, F., Cacciotti, I., Nanni, F., Gatto, E., et al. (2015). Applications of three-dimensional carbon nanotube. BEILSTEIN JOURNAL OF NANOTECHNOLOGY, 6, 792-798.";s:4:"data";s:10:"2015-03-23";s:2:"id";s:20:"PUBBLICAZIONE_230489";s:6:"handle";s:11:"2108/112531";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:37:"Settore FIS/03 - Fisica della Materia";s:9:"metadata4";N;s:9:"metadata5";s:49:"Applications of three-dimensional carbon nanotube";s:9:"metadata6";s:101:"Scarselli, Ma; Castrucci, P; Nicola, F; Cacciotti, I; Nanni, F; Gatto, E; Venanzi, M; DE CRESCENZI, M";s:9:"metadata7";s:19:"10.3762/bjnano.6.82";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:32;a:14:{s:9:"citazione";s:274:"Arduini, F., Forchielli, M., Amine, A., Neagu, D., Cacciotti, I., Nanni, F., et al. (2015). Screen-printed biosensor modified with carbon black nanoparticles for the determination of paraoxon based on the inhibition of butyrylcholinesterase. MIKROCHIMICA ACTA, 182, 643-651.";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_205148";s:6:"handle";s:10:"2108/97532";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:35:"Settore CHIM/01 - Chimica Analitica";s:9:"metadata4";N;s:9:"metadata5";s:148:"Screen-printed biosensor modified with carbon black nanoparticles for the determination of paraoxon based on the inhibition of butyrylcholinesterase";s:9:"metadata6";s:107:"Arduini, F; Forchielli, M; Amine, A; Neagu, D; Cacciotti, I; Nanni, F; Moscone Dinia, D.; Palleschi, G";s:9:"metadata7";s:25:"10.1007/s00604-014-1370-y";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:33;a:14:{s:9:"citazione";s:230:"Cacciotti, I., House, J.N., Mazzuca, C., Valentini, M., Madau, F., Palleschi, A., et al. (2015). Neat and GNPs loaded natural rubber fibers by electrospinning: Manufacturing and characterization. MATERIALS & DESIGN, 88, 1109-1118.";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_278961";s:6:"handle";s:11:"2108/153927";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:97:"Neat and GNPs loaded natural rubber fibers by electrospinning: Manufacturing and characterization";s:9:"metadata6";s:95:"Cacciotti, I; House, JN; Mazzuca, C; Valentini, M; Madau, F; Palleschi, A; Straffi, P; Nanni, F";s:9:"metadata7";s:28:"10.1016/j.matdes.2015.09.054";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:34;a:14:{s:9:"citazione";s:276:"De Nicola, F., Castrucci, P., Scarselli, M.a., Nanni, F., Cacciotti, I., & DE CRESCENZI, M. (2015). Exploiting the hierarchical morphology of single-walled and multi-walled carbon nanotube films for highly hydrophobic coatings. BEILSTEIN JOURNAL OF NANOTECHNOLOGY, 6, 353-360.";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_230482";s:6:"handle";s:11:"2108/112527";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:127:"hierarchical structures; hydrophobic surfaces; multi-walled carbon nanotube; single-walled carbon nanotube; wetting transitions";s:9:"metadata3";s:37:"Settore FIS/03 - Fisica della Materia";s:9:"metadata4";s:918:"Self-assembled hierarchical solid surfaces are very interesting for wetting phenomena, as observed in a variety of natural and artificial surfaces. Here, we report single-walled (SWCNT) and multi-walled carbon nanotube (MWCNT) thin films realized by a simple, rapid, reproducible, and inexpensive filtration process from an aqueous dispersion, that was deposited at room temperature by a dry-transfer printing method on glass. Furthermore, the investigation of carbon nanotube films through scanning electron microscopy (SEM) reveals the multi-scale hierarchical morphology of the self-assembled carbon nanotube random networks. Moreover, contact angle measurements show that hierarchical SWCNT/MWCNT composite surfaces exhibit a higher hydrophobicity (contact angles of up to 137°) than bare SWCNT (110°) and MWCNT (97°) coatings, thereby confirming the enhancement produced by the surface hierarchical morphology.";s:9:"metadata5";s:126:"Exploiting the hierarchical morphology of single-walled and multi-walled carbon nanotube films for highly hydrophobic coatings";s:9:"metadata6";s:82:"De Nicola, F; Castrucci, P; Scarselli, Ma; Nanni, F; Cacciotti, I; DE CRESCENZI, M";s:9:"metadata7";s:19:"10.3762/bjnano.6.34";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:35;a:14:{s:9:"citazione";s:207:"De Nicola, F., Castrucci, P., Scarselli, M.a., Nanni, F., Cacciotti, I., & DE CRESCENZI, M. (2015). Multi-Fractal Hierarchy of Single-Walled Carbon Nanotube Hydrophobic Coatings. SCIENTIFIC REPORTS, 5, 8583.";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_230480";s:6:"handle";s:11:"2108/112525";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:37:"Settore FIS/03 - Fisica della Materia";s:9:"metadata4";s:1104:"A hierarchical structure is an assembly with a multi-scale morphology and with a large and accessible surface area. Recent advances in nanomaterial science have made increasingly possible the design of hierarchical surfaces with specific and tunable properties. Here, we report the fractal analysis of hierarchical single-walled carbon nanotube (SWCNT) films realized by a simple, rapid, reproducible, and inexpensive filtration process from an aqueous dispersion, then deposited by drytransfer printing method on several substrates, at room temperature. Furthermore, by varying the thickness of carbon nanotube random networks, it is possible tailoring their wettability due to capillary phenomena in the porous films. Moreover, in order to describe the wetting properties of such surfaces, we introduce a two-dimensional extension of the Wenzel-Cassie-Baxter theory. The hierarchical surface roughness of SWCNT coatings coupled with their exceptional and tunable optical and electrical properties provide an ideal hydrophobic composite surface for a new class of optoelectronic and nanofluidic devices.";s:9:"metadata5";s:77:"Multi-Fractal Hierarchy of Single-Walled Carbon Nanotube Hydrophobic Coatings";s:9:"metadata6";s:82:"De Nicola, F; Castrucci, P; Scarselli, Ma; Nanni, F; Cacciotti, I; DE CRESCENZI, M";s:9:"metadata7";s:17:"10.1038/srep08583";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:36;a:14:{s:9:"citazione";s:204:"De Nicola, F., Castrucci, P., Scarselli, M.a., Nanni, F., Cacciotti, I., & DE CRESCENZI, M. (2015). Super-Hydrophobic Multi-Walled Carbon Nanotube Coatings for Stainless Steel. NANOTECHNOLOGY, 26, 145701.";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_230484";s:6:"handle";s:11:"2108/112529";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:37:"Settore FIS/03 - Fisica della Materia";s:9:"metadata4";s:1089:"We have taken advantage of the native surface roughness and the iron content of AISI 316 stainless steel to directly grow multi-walled carbon nanotube (MWCNT) random networks by chemical vapor deposition (CVD) at low-temperature ($\lt 1000{}^\circ \;{\rm C}$) without the addition of any external catalysts or time-consuming pre-treatments. In this way, super-hydrophobic MWCNT films on stainless steel sheets were obtained, exhibiting high contact angle values ($154{}^\circ $) and high adhesion force (high contact angle hysteresis). Furthermore, the investigation of MWCNT films with scanning electron microscopy (SEM) reveals a two-fold hierarchical morphology of the MWCNT random networks made of hydrophilic carbonaceous nanostructures on the tip of hydrophobic MWCNTs. Owing to the Salvinia effect, the hydrophobic and hydrophilic composite surface of the MWCNT films supplies a stationary super-hydrophobic coating for conductive stainless steel. This biomimetical inspired surface not only may prevent corrosion and fouling, but also could provide low friction and drag reduction.";s:9:"metadata5";s:75:"Super-Hydrophobic Multi-Walled Carbon Nanotube Coatings for Stainless Steel";s:9:"metadata6";s:82:"De Nicola, F; Castrucci, P; Scarselli, Ma; Nanni, F; Cacciotti, I; DE CRESCENZI, M";s:9:"metadata7";s:30:"10.1088/0957-4484/26/14/145701";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:37;a:14:{s:9:"citazione";s:258:"Valentini, M., Piana, F., Pionteck, J., Lamastra, F.r., & Nanni, F. (2015). Electromagnetic properties and performance of exfoliated graphite (EG) - Thermoplastic polyurethane (TPU) nanocomposites at microwaves. COMPOSITES SCIENCE AND TECHNOLOGY, 114, 26-33.";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_236206";s:6:"handle";s:11:"2108/117378";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:134:"Electromagnetic properties and performance of exfoliated graphite (EG) - Thermoplastic polyurethane (TPU) nanocomposites at microwaves";s:9:"metadata6";s:59:"Valentini, M; Piana, F; Pionteck, J; Lamastra, Fr; Nanni, F";s:9:"metadata7";s:33:"10.1016/j.compscitech.2015.03.006";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:38;a:14:{s:9:"citazione";s:322:"Zappino, M., Cacciotti, I., Benucci, I., Nanni, F., Liburdi, K., Valentini, F., et al. (2015). Bromelain immobilization on microbial and animal source chitosan films, plasticized with glycerol, for application in wine-like medium: Microstructural, mechanical and catalytic characterisations. FOOD HYDROCOLLOIDS, 45, 41-47.";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_236216";s:6:"handle";s:11:"2108/117385";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:195:"Bromelain immobilization on microbial and animal source chitosan films, plasticized with glycerol, for application in wine-like medium: Microstructural, mechanical and catalytic characterisations";s:9:"metadata6";s:81:"Zappino, M; Cacciotti, I; Benucci, I; Nanni, F; Liburdi, K; Valentini, F; Esti, M";s:9:"metadata7";s:29:"10.1016/j.foodhyd.2014.11.001";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:39;a:14:{s:9:"citazione";s:309:"Cacciotti, I., Fortunati, E., Puglia, D., Kenny, J., & Nanni, F. (2014). MORPHOLOGICAL, THERMAL AND MECHANICAL CHARACTERIZATION OF POLYLACTIC ACID ELECTROSPUN FIBERS LOADED WITH SILVER NANOPARTICLES AND NANOCRYSTALLINE CELLULOSE. Paper presented at 8th ECNP Conference Dresden 16-19 September 2014, Dresden.";s:4:"data";s:7:"2014-09";s:2:"id";s:20:"PUBBLICAZIONE_217164";s:6:"handle";s:11:"2108/102591";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:155:"MORPHOLOGICAL, THERMAL AND MECHANICAL CHARACTERIZATION OF POLYLACTIC ACID ELECTROSPUN FIBERS LOADED WITH SILVER NANOPARTICLES AND NANOCRYSTALLINE CELLULOSE";s:9:"metadata6";s:57:"Cacciotti, I; Fortunati, E; Puglia, D; Kenny, J; Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:40;a:14:{s:9:"citazione";s:159:"Lamastra, F., Brunetti, F., DI CARLO, A., & Nanni, F. (2014). Electrospun PEO/P3HT/PCBM Blends for organic solar cells. Paper presented at 8th ECNP Conference.";s:4:"data";s:7:"2014-09";s:2:"id";s:20:"PUBBLICAZIONE_217162";s:6:"handle";s:11:"2108/102587";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:56:"Electrospun PEO/P3HT/PCBM Blends for organic solar cells";s:9:"metadata6";s:47:"Lamastra, F; Brunetti, F; DI CARLO, A; Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:41;a:14:{s:9:"citazione";s:208:"Cacciotti, I., Lamastra, F., Campaniello, V., & Nanni, F. (2014). Development of a transparent hydrorepellent modified SiO2 coatings for glazed sanitarywares. MATERIALS CHEMISTRY AND PHYSICS, 146(3), 240-252.";s:4:"data";s:7:"2014-08";s:2:"id";s:20:"PUBBLICAZIONE_203688";s:6:"handle";s:11:"2108/101784";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:91:"Development of a transparent hydrorepellent modified SiO2 coatings for glazed sanitarywares";s:9:"metadata6";s:51:"Cacciotti, I; Lamastra, F; Campaniello, V; Nanni, F";s:9:"metadata7";s:33:"10.1016/j.matchemphys.2014.03.005";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:42;a:14:{s:9:"citazione";s:260:"Arduini, F., Forchielli, M., Amine, A., Neagu, D., Cacciotti, I., Nanni, F., et al. (2014). Screen-printed biosensor modified with carbon black nanoparticles for the determination of paraoxon based on the inhibition of butyrylcholinesterase. MIKROCHIMICA ACTA.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_203809";s:6:"handle";s:10:"2108/96847";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:148:"Screen-printed biosensor modified with carbon black nanoparticles for the determination of paraoxon based on the inhibition of butyrylcholinesterase";s:9:"metadata6";s:97:"Arduini, F; Forchielli, M; Amine, A; Neagu, D; Cacciotti, I ; Nanni, F; Moscone, D; Palleschi, G";s:9:"metadata7";s:25:"10.1007/s00604-014-1370-y";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:43;a:14:{s:9:"citazione";s:262:"Cacciotti, I., Fortunati, E., Puglia, D., Kenny, J.M., & Nanni, F. (2014). Effect of silver nanoparticles and cellulose nanocrystals on electrospun poly(lactic) acid mats: morphology, thermal properties and mechanical behavior. CARBOHYDRATE POLYMERS, 103, 22-31.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_172467";s:6:"handle";s:10:"2108/83827";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:151:"Effect of silver nanoparticles and cellulose nanocrystals on electrospun poly(lactic) acid mats: morphology, thermal properties and mechanical behavior";s:9:"metadata6";s:58:"Cacciotti, I; Fortunati, E; Puglia, D; Kenny, JM; Nanni, F";s:9:"metadata7";s:29:"10.1016/j.carbpol.2013.11.052";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:44;a:14:{s:9:"citazione";s:455:"Cacciotti, I., Valentini, M., & Nanni, F. (2014). Ternary systems based on PVDF, BaTiO3 and MWCNTs: Fabrication, characterization, electromagnetic simulation (Conference Paper). Paper presented at AIP Conference Proceeding Volume 1648, 10 March 2015, Article number 570020 International Conference on Numerical Analysis and Applied Mathematics 2014, ICNAAM 2014; Rodos Palace HotelRhodes; Greece; 22 September 2014 through 28 September 2014; Code 111492.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_236211";s:6:"handle";s:11:"2108/117382";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:127:"Ternary systems based on PVDF, BaTiO3 and MWCNTs: Fabrication, characterization, electromagnetic simulation (Conference Paper)";s:9:"metadata6";s:36:"Cacciotti, I; Valentini, M; Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:45;a:14:{s:9:"citazione";s:280:"Cinti, S., Arduini, E., Vellucci, G., Cacciotti, I., Nanni, F., & Moscone, D. (2014). Carbon black assisted tailoring of Prussian Blue nanoparticles to tune sensitivity and detection limit towards H2O2 by using screen-printed electrode. ELECTROCHEMISTRY COMMUNICATIONS, 47, 63-66.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_203808";s:6:"handle";s:11:"2108/101825";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:149:"Carbon black assisted tailoring of Prussian Blue nanoparticles to tune sensitivity and detection limit towards H2O2 by using screen-printed electrode";s:9:"metadata6";s:69:"Cinti, S; Arduini, E; Vellucci, G; Cacciotti, I; Nanni, F; Moscone, D";s:9:"metadata7";s:28:"10.1016/j.elecom.2014.07.018";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:46;a:14:{s:9:"citazione";s:228:"DE MATTEIS, F., Fanicchia, F., La Mastra, F., Stracci, G., De Angelis, R., Prosposito, P., et al. (2014). Nonlinear optical materials by electrospinning deposition technique. JOURNAL OF APPLIED POLYMER SCIENCE, 131, 40913-40919.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_200046";s:6:"handle";s:11:"2108/101692";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:37:"Settore FIS/03 - Fisica della Materia";s:9:"metadata4";N;s:9:"metadata5";s:67:"Nonlinear optical materials by electrospinning deposition technique";s:9:"metadata6";s:107:"DE MATTEIS, F; Fanicchia, F; La Mastra, F; Stracci, G; De Angelis, R; Prosposito, P; Nanni, F; Casalboni, M";s:9:"metadata7";s:17:"10.1002/app.40913";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:47;a:14:{s:9:"citazione";s:251:"De Angelis, R., Venditti, I., Fratoddi, I., De Matteis, F., Prosposito, P., Cacciotti, I., et al. (2014). From nanospheres to microribbons: self-assembled Eosin Y doped PMMA nanoparticles as photonic crystals. JOURNAL OF COLLOID AND INTERFACE SCIENCE.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_172466";s:6:"handle";s:10:"2108/83808";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:102:"From nanospheres to microribbons: self-assembled Eosin Y doped PMMA nanoparticles as photonic crystals";s:9:"metadata6";s:141:"De Angelis, R; Venditti, I; Fratoddi, I;De Matteis, F; Prosposito, P; Cacciotti, I; D’Amico, L; Nanni, F; Yadav, A; Casalboni, M; Russo, MV";s:9:"metadata7";s:26:"10.1016/j.jcis.2013.09.045";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:48;a:14:{s:9:"citazione";s:208:"Lamastra, F., De Angelis, R., Antonucci, A., Salvatori, D., Prosposito, P., Casalboni, M., et al. (2014). Polymer composite random lasers based on diatom frustules as scatterers. RSC ADVANCES, 4, 61809-61816.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_208228";s:6:"handle";s:10:"2108/98913";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";s:1864:"In this work the possibility to exploit the ability of multiple scattering and localization of light shown by diatom silica shells (frustules) for photoluminescence amplification in a random laser was investigated. To this aim polymethylmethacrylate matrix composite random lasers based on rhodamine B and frustules as gain medium and scatterers, respectively, were prepared by solvent casting. Two different kinds of frustules were used, the first represented by diatomite, a fossil material composed of a mixture of frustules from different diatom species, without specific shape, size and porosity; the second were living diatom frustules from freshwater biofilm, a more homogeneous biosilica, dominated by one frustule type. Chemical properties, morphology and photoluminescence of both biosilica fillers were investigated. Random laser experiments were carried out on polymer composites. The diatomite material was characterised by rectangular and circular pores, ranging from 25 nm to 1 μm in size and showed weak photoluminescence upon excitation at 405 nm. Biofilm frustules were more homogeneous in size and microstructure, with average length of about 20 μm and pore diameters between 20 and 100 nm. The frustule photoluminescence, observed after irradiation at 488, 515, 543 and 635 nm was higher than in diatomite. In addition, the two biosilica materials differed with respect to the presence of superficial silanol groups, that were not detected in diatomite. Random laser experiments showed an incoherent random lasing effect in all polymer composites. The laser threshold diminished at increasing frustule content, with a lowest value recorded using biofilm frustules (308 kW cm−2). This is probably due to the frustule size exhibited in this almost monospecific biosilica, that was in the range of most typical morphology-dependent resonators.";s:9:"metadata5";s:71:"Polymer composite random lasers based on diatom frustules as scatterers";s:9:"metadata6";s:119:"Lamastra, F; De Angelis, R; Antonucci, A; Salvatori, D; Prosposito, P; Casalboni, M; Congestri, R; Melino, Sm; Nanni, F";s:9:"metadata7";s:18:"10.1039/c4ra12519c";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:49;a:14:{s:9:"citazione";s:216:"Nanni, F., Lamastra, F., Franceschetti, F., Biccari, F., & Cacciotti, I. (2014). Mo-doped indium oxide films by dip-coating: synthesis, microstructure and optical properties. CERAMICS INTERNATIONAL, 40(1), 1851-1858.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_172465";s:6:"handle";s:10:"2108/83829";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:92:"Mo-doped indium oxide films by dip-coating: synthesis, microstructure and optical properties";s:9:"metadata6";s:65:"Nanni, F; Lamastra, F; Franceschetti, F; Biccari, F; Cacciotti, I";s:9:"metadata7";s:30:"10.1016/j.ceramint.2013.07.087";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:50;a:14:{s:9:"citazione";s:236:"Pionteck, J., Piana, F., Valentini, M., & Nanni, F. (2014). Effect of the processing conditions on the conductivity and EMI of thermoplastic polyurethane/expanded graphite (TPU/EG) composites. Paper presented at Inno CNT JahresKongress.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_217152";s:6:"handle";s:11:"2108/102594";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:131:"Effect of the processing conditions on the conductivity and EMI of thermoplastic polyurethane/expanded graphite (TPU/EG) composites";s:9:"metadata6";s:45:"Pionteck, J; Piana, F; Valentini, M; Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:51;a:14:{s:9:"citazione";s:191:"Nanni, F. (2013). Potentiality and limits of nanomaterials and nanocomposites in industrial applications. Paper presented at COST ACTION MP0902 COMPOSITES OF INORGANIC NANOTUBES AND POLYMERS.";s:4:"data";s:7:"2013-03";s:2:"id";s:20:"PUBBLICAZIONE_217143";s:6:"handle";s:11:"2108/102604";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:86:"Potentiality and limits of nanomaterials and nanocomposites in industrial applications";s:9:"metadata6";s:8:"Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:52;a:14:{s:9:"citazione";s:239:"Bhuiyan, A., Carotenuto, F., Vitale, E., Mauretti, A., Neri, A., Nanni, F., et al. (2013). Abstracts presented at the 13th International Congress on Amino acids, peptides and proteins. Paper presented at Amino acids, peptides and proteins.";s:4:"data";s:4:"2013";s:2:"id";s:20:"PUBBLICAZIONE_297203";s:6:"handle";s:11:"2108/168689";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:14:"Settore BIO/10";s:9:"metadata4";N;s:9:"metadata5";s:92:"Abstracts presented at the 13th International Congress on Amino acids, peptides and proteins";s:9:"metadata6";s:92:"Bhuiyan, A; Carotenuto, F; Vitale, E; Mauretti, A; Neri, A; Nanni, F; Di Nardo, P; Melino, S";s:9:"metadata7";s:25:"10.1007/s00726-013-1540-y";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:53;a:14:{s:9:"citazione";s:239:"Nanni, F., Paternoster, S., & Madau, F. (2013). Self-monitoring composite laminates containing screen printed piezoresistive fabrics,. Paper presented at CNP Comp2013– 6th International Conference On Carbon Nanoparticle Based Composites.";s:4:"data";s:4:"2013";s:2:"id";s:20:"PUBBLICAZIONE_217151";s:6:"handle";s:11:"2108/102651";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:85:"Self-monitoring composite laminates containing screen printed piezoresistive fabrics,";s:9:"metadata6";s:34:"Nanni, F; Paternoster, S; Madau, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:54;a:14:{s:9:"citazione";s:245:"Yadav, A., De Angelis, R., Casalboni, M., De Matteis, F., Prosposito, P., Nanni, F., et al. (2013). Spectral properties of self-assembled polystyrene nanospheres photonic crystals doped with luminescent dyes. OPTICAL MATERIALS, 35(8), 1538-1543.";s:4:"data";s:4:"2013";s:2:"id";s:20:"PUBBLICAZIONE_161970";s:6:"handle";s:10:"2108/79648";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:37:"Settore FIS/03 - Fisica della Materia";s:9:"metadata4";N;s:9:"metadata5";s:107:"Spectral properties of self-assembled polystyrene nanospheres photonic crystals doped with luminescent dyes";s:9:"metadata6";s:91:"Yadav, A; De Angelis, R; Casalboni, M; De Matteis, F; Prosposito, P; Nanni, F; Cacciotti, I";s:9:"metadata7";s:28:"10.1016/j.optmat.2013.03.020";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:55;a:14:{s:9:"citazione";s:294:"Lamastra, F., Puglia, D., Monti, M., Vella, A., Peponi, L., Kenny, J., et al. (2012). Preparation and characterisation of Poly(e-caprolactone) reinforced with MWCNTs and GNPs loaded aligned electrospun PMMA fibre mats. Paper presented at ECCM15 15th European Conference on Composite Materials,.";s:4:"data";s:7:"2012-06";s:2:"id";s:20:"PUBBLICAZIONE_217138";s:6:"handle";s:11:"2108/102814";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:55:"Settore ING-IND/22 - Scienza e Tecnologia dei Materiali";s:9:"metadata4";N;s:9:"metadata5";s:131:"Preparation and characterisation of Poly(e-caprolactone) reinforced with MWCNTs and GNPs loaded aligned electrospun PMMA fibre mats";s:9:"metadata6";s:73:"Lamastra, F; Puglia, D; Monti, M; Vella, A; Peponi, L; Kenny, J; Nanni, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:56;a:14:{s:9:"citazione";s:272:"Nanni, F., Mayoral Lauerta, B., Valentini, M., & McNally, T. (2012). Effect of stretching on the microwave electromagnetic properties of extruded mwcnt/pet films,. 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