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Effects of combining graphene nanoplatelet and phosphorous flame retardant as additives on mechanical properties and flame retardancy of epoxy nanocomposite
Netkueakul, W., Fischer, B., Walder, C., Nüesch, F., Rees, M., Jovic, M., … Wang, J. (2020). Effects of combining graphene nanoplatelet and phosphorous flame retardant as additives on mechanical properties and flame retardancy of epoxy nanocomposite. Polymers, 12(10), 2349 (19 pp.). https://doi.org/10.3390/polym12102349
Silica aerogel–epoxy nanocomposites: understanding epoxy reinforcement in terms of aerogel surface chemistry and epoxy–silica interface compatibility
Salimian, S., Zadhoush, A., Talebi, Z., Fischer, B., Winiger, P., Winnefeld, F., … Malfait, W. J. (2018). Silica aerogel–epoxy nanocomposites: understanding epoxy reinforcement in terms of aerogel surface chemistry and epoxy–silica interface compatibility. ACS Applied Nano Materials, 1(8), 4179-4189. https://doi.org/10.1021/acsanm.8b00941
Nanofibrillated cellulose in wood coatings: viscoelastic properties of free composite films
Künniger, T., Grüneberger, F., Fischer, B., & Walder, C. (2017). Nanofibrillated cellulose in wood coatings: viscoelastic properties of free composite films. Journal of Materials Science, 52(17), 10237-10249. https://doi.org/10.1007/s10853-017-1193-4
Mechanical effects of heat exposure from a bipolar radiofrequency probe on suture under simulated arthroscopic conditions
Valet, S., Weisse, B., Fischer, B., & Meyer, D. C. (2016). Mechanical effects of heat exposure from a bipolar radiofrequency probe on suture under simulated arthroscopic conditions. Arthroscopy: The Journal of Arthroscopy and Related Surgery, 32(10), 1985-1992. https://doi.org/10.1016/j.arthro.2016.03.006
Facile one-pot synthesis of mechanically robust biopolymer–silica nanocomposite aerogel by cogelation of silicic acid with chitosan in aqueous media
Zhao, S., Malfait, W. J., Jeong, E., Fischer, B., Zhang, Y., Xu, H., … Koebel, M. M. (2016). Facile one-pot synthesis of mechanically robust biopolymer–silica nanocomposite aerogel by cogelation of silicic acid with chitosan in aqueous media. ACS Sustainable Chemistry and Engineering, 4(10), 5674-5683. https://doi.org/10.1021/acssuschemeng.6b01574
Synthesis and characterization of silicones containing cyanopropyl groups and their use in dielectric elastomer actuators
Racles, C., Cazacu, M., Fischer, B., & Opris, D. M. (2013). Synthesis and characterization of silicones containing cyanopropyl groups and their use in dielectric elastomer actuators. Smart Materials and Structures, 22(10), 104004 (10 pp.). https://doi.org/10.1088/0964-1726/22/10/104004
Dielectric elastomer materials for actuators and energy harvesting
Opris, D. M., Molberg, M., Nüesch, F., Löwe, C., Walder, C., & Fischer, B. (2011). Dielectric elastomer materials for actuators and energy harvesting. In Y. Bar-Cohen & F. Carpi (Eds.), Proceedings of SPIE: Vol. 7976. Electroactive polymer actuators and devices (EAPAD) 2011 (p. 79760G (8 pp.). https://doi.org/10.1117/12.880358
New silicone composites for dielectric elastomer actuator applications in competition with acrylic foil
Opris, D. M., Molberg, M., Walder, C., Ko, Y. S., Fischer, B., & Nüesch, F. (2011). New silicone composites for dielectric elastomer actuator applications in competition with acrylic foil. Advanced Functional Materials, 21(18), 3531-3539. https://doi.org/10.1002/adfm.201101039