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高弹性高导电稳定性炭黑/碳管/硅橡胶复合材料的设计与制备 被引量:9
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作者 宁南英 刘苏亭 +4 位作者 赵柔 邹华 于冰 田明 张立群 《科学通报》 EI CAS CSCD 北大核心 2018年第34期3677-3686,共10页
采用少量炭黑(CB)和少量碳纳米管(CNTs)并用,通过调控CB和CNTs在甲基乙烯基硅橡胶(PMVS)基体中的网络结构,成功制备了低导电填料下高弹性、高导电性、高循环拉伸导电稳定性的PMVS-CB-CNTs导电橡胶复合材料.当1.8%(体积百分比,下同)CB和1... 采用少量炭黑(CB)和少量碳纳米管(CNTs)并用,通过调控CB和CNTs在甲基乙烯基硅橡胶(PMVS)基体中的网络结构,成功制备了低导电填料下高弹性、高导电性、高循环拉伸导电稳定性的PMVS-CB-CNTs导电橡胶复合材料.当1.8%(体积百分比,下同)CB和1.2%CNTs并用时,复合材料体积电阻率降低至271Ωcm, 30%拉伸应变下的体积电阻率(R/R0)为2.1,10次循环拉伸再回复后其R/R_0低至1.3.CNTs是原位生长在层状双氢氧化物表面而制备的碳管阵列(CNTA),其与橡胶混炼加工时易于解离成单根分散碳管,不易缠结,且其高长径比有利于低填料量下获得高导电性;而CB的各向同性能够使复合材料拉伸回复后形成新的导电通路.由于所用CNTs具有纳米弹簧效应,复合材料保持了良好的弹性和柔顺性.进一步研究了复合材料在拉伸应变过程中的电导性的变化和循环拉伸导电稳定性,以及拉伸应变下导电网络结构变化和拉伸前后的填料网络结构变化,探明了复合材料导电网络结构与导电性及导电稳定性的关系.结果表明,低含量CB和CNTs可在橡胶基体中形成较强的双导电网络结构;拉伸时,CNTs作为桥梁连接单个的CB粒子及其聚集体,导电网络破坏较小;经循环拉伸再回复后,CB和CNTs又可回复形成较强的双导电网络结构,因此该复合材料电导性较高,且单次拉伸和循环拉伸导电稳定性均较好. 展开更多
关键词 导电橡胶复合材料 导电网络结构 导电性 导电稳定性 碳纳米管 炭黑
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Poly(thioether)-b-polysiloxane-b-poly(thioether)triblock copolymer towards homogeneous dielectric elastomer with high dielectric performance
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作者 Zhanbin Feng Jiafang Guo +2 位作者 suting liu Guofei Feng Xing-Hong Zhang 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第8期4021-4025,共5页
Dielectric elastomers(DEs)have drawn much attention owing to their application prospects in artificial muscles and soft robotics,it is still a big challenge to prepare DEs with high electromechanical performances.This... Dielectric elastomers(DEs)have drawn much attention owing to their application prospects in artificial muscles and soft robotics,it is still a big challenge to prepare DEs with high electromechanical performances.This work reports a highly stretchable poly(thioether)-b-polysiloxane-b-poly(thioether)triblock copolymer based homogenous DEs with high electromechanical properties.The triblock copolymer(PSiPGE)was synthesized through the ring-opening polymerization(ROP)of phenyl glycidyl ether(PGE)and carbonyl sulfide(COS)catalyzed by silicon alkoxides.The dipoles(benzene rings)on the side groups of PSiPGE improved the dipole polarizations and the phase separation structure of this triblock copolymer enhanced the interfacial polarizations between poly(thioether)and polysiloxane,and thus improving the dielectric constant(ε',up to 5.8).In addition,the PSiPGE exhibited low elastic modulus(Y,0.04 MPa),and thus possessed high electromechanical sensitivity(β,~145 MPa^(-1)) which is much higher than that of most homogenous DEs.This work provides a new strategy to construct homogenous DEs with excellent electromechanical performances,leading to a greater application aspect in the actuated devices. 展开更多
关键词 Poly(thioether)-b-polysiloxane-bpoly(thioether)triblock copolymer HOMOGENOUS Dielectric elastomer Phase separation Electromechanical performance
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