School of Textiles and Fashion, Shanghai University of Engineering Science, Shanghai 201620, China; Hubei Key Laboratory of Biomass Fibers & Eco-Dyeing &Finishing, Wuhan Textile University, Wuhan 430200, China; Shanghai Engineering Research Center for Clean Production of Textile Chemistry, Shanghai 201620, China.
School of Textiles and Fashion, Shanghai University of Engineering Science, Shanghai 201620, China.
Int J Biol Macromol. 2024 Oct;278(Pt 2):134867. doi: 10.1016/j.ijbiomac.2024.134867. Epub 2024 Aug 18.
A conductive film (PNIPAM-rGO/BC) was fabricated combining bacterial cellulose (BC) with poly-N-isopropylacrylamide-modified graphene oxide (PNIPAM-GO) through vacuum filtration and steam reduction techniques. The conductivity and performance of PNIPAM-GO composite and the resulting conductive film were studied. The key findings revealed that PNIPAM-GO composite exhibited a reversible temperature-sensitive behavior. Specifically, the lower critical solution temperature (LCST) increased upon the introduction of graphene oxide (GO). Detailed analyses confirmed uniform dispersion of GO nanosheets within the BC matrix. The incorporation of 10.0 % PNIPAM-GO (containing 7.0 % GO) led to a remarkable 19.6 % increase in tensile strength and approximately 37.0 % enhancement in elongation at break for the conductive film (PNIPAM-rGO/BC) compared to BC. After steam reduction, the electrical conductivity of PNIPAM-rGO/BC exhibited significant improvement over BC. Furthermore, the conductive film demonstrated temperature-dependent conductivity, with a resistivity value approximately 5.2 ± 0.2 KΩ at 25 °C. As the test temperature above the LCST of PNIPAM-GO composite, the resistance decreased. These intriguing temperature-sensitive conductive properties position PNIPAM-rGO/BC as a promising material for smart switches.
一种导电膜(PNIPAM-rGO/BC)是通过真空过滤和蒸汽还原技术将细菌纤维素(BC)与聚 N-异丙基丙烯酰胺修饰的氧化石墨烯(PNIPAM-GO)结合而制备的。研究了 PNIPAM-GO 复合材料和所得导电膜的导电性和性能。研究结果表明,PNIPAM-GO 复合材料表现出可逆的温度敏感性。具体来说,引入氧化石墨烯(GO)后,较低临界溶液温度(LCST)升高。详细分析证实了 GO 纳米片在 BC 基体中的均匀分散。与 BC 相比,当加入 10.0%的 PNIPAM-GO(含有 7.0%GO)时,导电膜(PNIPAM-rGO/BC)的拉伸强度增加了 19.6%,断裂伸长率增加了约 37.0%。经过蒸汽还原后,PNIPAM-rGO/BC 的电导率与 BC 相比有了显著提高。此外,该导电膜表现出温度依赖性的导电性,在 25°C 时电阻率约为 5.2±0.2 KΩ。当测试温度高于 PNIPAM-GO 复合材料的 LCST 时,电阻会降低。这些有趣的温度敏感导电特性使 PNIPAM-rGO/BC 成为智能开关的有前途的材料。