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Conductive silicone elastomers electrodes processable by screen printing

机译:可通过丝网印刷加工的导电有机硅弹性体电极

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摘要

Conductive inks consisting of graphene and carbon black conductive fillers into a polydimethylsiloxane (PDMS) matrix, which can be processed into thin films by screen printing are developed. The influence of filler composition and content on mechanical and electrical properties of the conductive composites is investigated. The best composites were evaluated as electrode material for dielectric elastomer actuators and for piezoelectric sensors. With increasing filler content, the electrical properties of the resulting composites of graphite nanoplates (GNPs) or a binary mixture of GNPs and carbon black (CB) with PDMS (Mw = 139 kg/mol) are enhanced. Hence, PDMS composites filled with GNPs (42 wt.%) or a binary mixture of GNPs/CB (300/150 ratio, 30 wt.% of total filler loading) exhibited constant contact resistance values of 0.5 and 5 Ω determined in life-cycle test, respectively, thus rendering them suitable as electrode materials for piezosensors. On the other hand, dielectric elastomer actuators require more flexible electrode materials, which could be tuned by varying the polymer molecular weight and by reducing the filler content. Therefore, a composite consisting of PDMS (Mw = 692 kg/mol) and a binary filler mixture of GNPs/CB (150/75 ratio, 18 wt.% of total filler loading) was used for producing the electrodes of dielectric elastomer transducers (DETs). The produced DETs with different electrode thicknesses were characterized in terms of their performance. The negligible hysteresis of the electrode materials is favorable for sensor and actuator applications.
机译:开发了由石墨烯和炭黑导电填料组成的聚二甲基硅氧烷(PDMS)基体的导电油墨,可以通过丝网印刷将其加工成薄膜。研究了填料组成和含量对导电复合材料机械和电气性能的影响。最好的复合材料被评估为介电弹性体致动器和压电传感器的电极材料。随着填料含量的增加,得到的石墨纳米板(GNPs)或GNPs和炭黑(CB)与PDMS(Mw = 139 kg / mol)的二元混合物的电性能得到增强。因此,填充有GNPs(42 wt。%)或GNPs / CB的二元混合物(300/150的比例,总填充剂含量的30 wt。%)的PDMS复合材料,其寿命中测得的接触电阻恒定值为0.5和5。分别进行循环测试,因此使其适合用作压电传感器的电极材料。另一方面,介电弹性体致动器需要更柔软的电极材料,可以通过改变聚合物分子量和减少填充剂含量来进行调节。因此,使用由PDMS(Mw = 692 kg / mol)和GNPs / CB的二元填充物混合物(150/75的比例,占填充物总重量的18 wt%)组成的复合材料来制造介电弹性体换能器的电极( DETs)。所生产的具有不同电极厚度的DET的性能得以表征。电极材料的磁滞可忽略不计,对于传感器和执行器应用而言非常有利。

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