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芳香族电子导电高分子的应用和进展 被引量:5
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作者 袁新华 徐红星 +1 位作者 魏贤勇 宗志敏 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2001年第5期25-29,共5页
芳香族导电高分子由于同时具有金属或半导体的导电性能和芳香族聚合物热稳定性高、化学稳定性好、质轻牢固及良好的加工成型性的特点 ,其应用正受到人们越来越多的关注。文中综述了芳香族电子导电高分子的应用和研究进展 ,指出其存在问... 芳香族导电高分子由于同时具有金属或半导体的导电性能和芳香族聚合物热稳定性高、化学稳定性好、质轻牢固及良好的加工成型性的特点 ,其应用正受到人们越来越多的关注。文中综述了芳香族电子导电高分子的应用和研究进展 ,指出其存在问题和解决方法。 展开更多
关键词 芳香族化合物 聚合物 导电高分子 电子导电高分子 应用 研究进展
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Water-Resistant and Stretchable Conductive Ionic Hydrogel Fibers Reinforced by Carboxymethyl Cellulose 被引量:2
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作者 Zhen Wang Mei Wang +1 位作者 Ming-ming Ma Ning Zhang 《Chinese Journal of Chemical Physics》 SCIE EI CAS CSCD 2022年第5期835-841,I0013,共8页
Conductive ionic hydrogels(CIH)have been widely studied for the development of stretchable electronic devices,such as sensors,electrodes,and actuators.Most of these CIH are made into 3D or 2D shape,while 1D CIH(hydrog... Conductive ionic hydrogels(CIH)have been widely studied for the development of stretchable electronic devices,such as sensors,electrodes,and actuators.Most of these CIH are made into 3D or 2D shape,while 1D CIH(hydrogel fibers)is often difficult to make because of the low mechanical robustness of common CIH.Herein,we use gel spinning method to prepare a robust CIH fiber with high strength,large stretchability,and good conductivity.The robust CIH fiber is drawn from the composite gel of sodium polyacrylate(PAAS)and sodium carboxymethyl cellulose(CMC).In the composite CIH fiber,the soft PAAS presents good conductivity and stretchability,while the rigid CMC significantly enhances the strength and toughness of the PAAS/CMC fiber.To protect the conductive PAAS/CMC fiber from damage by water,a thin layer of hydrophobic polymethyl acrylate(PMA)or polybutyl acrylate(PBA)is coated on the PAAS/CMC fiber as a water-resistant and insulating cover.The obtained PAAS/CMC-PMA and PAAS/CMC-PBA CIH fibers present high tensile strength(up to 28 MPa),high tensile toughness(up to 43 MJ/m~3),and good electrical conductivity(up to 0.35 S/m),which are useful for textile-based stretchable electronic devices. 展开更多
关键词 Stretchable electronic device Conductive hydrogel fiber POLYELECTROLYTE Carboxymethyl cellulose
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