Cobani, E.; Tagliaro, I.; Geppi, M.; Giannini, L.; Leclère, P.; Martini, F.; Nguyen, T.C.; Lazzaroni, R.; Scotti, R.; Tadiello, L.;
et al. Hybrid Interface in Sepiolite Rubber Nanocomposites: Role of Self-Assembled Nanostructure in Controlling Dissipative Phenomena. Nanomaterials 2019, 9, 486.
https://doi.org/10.3390/nano9040486
AMA Style
Cobani E, Tagliaro I, Geppi M, Giannini L, Leclère P, Martini F, Nguyen TC, Lazzaroni R, Scotti R, Tadiello L,
et al. Hybrid Interface in Sepiolite Rubber Nanocomposites: Role of Self-Assembled Nanostructure in Controlling Dissipative Phenomena. Nanomaterials. 2019; 9(4):486.
https://doi.org/10.3390/nano9040486
Chicago/Turabian Style
Cobani, Elkid, Irene Tagliaro, Marco Geppi, Luca Giannini, Philippe Leclère, Francesca Martini, Thai Cuong Nguyen, Roberto Lazzaroni, Roberto Scotti, Luciano Tadiello,
and et al. 2019. "Hybrid Interface in Sepiolite Rubber Nanocomposites: Role of Self-Assembled Nanostructure in Controlling Dissipative Phenomena" Nanomaterials 9, no. 4: 486.
https://doi.org/10.3390/nano9040486
APA Style
Cobani, E., Tagliaro, I., Geppi, M., Giannini, L., Leclère, P., Martini, F., Nguyen, T. C., Lazzaroni, R., Scotti, R., Tadiello, L., & Di Credico, B.
(2019). Hybrid Interface in Sepiolite Rubber Nanocomposites: Role of Self-Assembled Nanostructure in Controlling Dissipative Phenomena. Nanomaterials, 9(4), 486.
https://doi.org/10.3390/nano9040486