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Improved Mechanical and Electrochemical Properties of XNBR Dielectric Elastomer Actuator by Poly(dopamine) Functionalized Graphene Nano-Sheets

机译:聚(多巴胺)功能化石墨烯纳米片改善XNBR介电弹性体致动器的机械和电化学性能

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摘要

In this work, graphene nano-sheets (GNS) functionalized with poly(dopamine) (PDA) (denoted as GNS-PDA) were dispersed in a carboxylated nitrile butadiene rubber (XNBR) matrix to obtain excellent dielectric composites via latex mixing. Because hydrogen bonds were formed between –COOH groups of XNBR and phenolic hydroxyl groups of PDA, the encapsulation of GNS-PDA around XNBR latex particles was achieved, and led to a segregated network structure of filler formed in the GNS-PDA/XNBR composite. Thus, the XNBR composite filled with GNS-PDA showed improved filler dispersion, enhanced dielectric constant and dielectric strength, and decreased conductivity compared with the XNBR composite filled with pristine GNS. Finally, the GNS-PDA/XNBR composite displayed an actuated strain of 2.4% at 18 kV/mm, and this actuated strain was much larger than that of pure XNBR (1.3%) at the same electric field. This simple, environmentally friendly, low-cost, and effective method provides a promising route for obtaining a high-performance dielectric elastomer with improved mechanical and electrochemical properties.
机译:在这项工作中,将聚(多巴胺)(PDA)(表示为GNS-PDA)功能化的石墨烯纳米片(GNS)分散在羧化丁腈橡胶(XNBR)基质中,通过胶乳混合获得优异的介电复合材料。由于XNBR的–COOH基与PDA的酚羟基之间形成氢键,因此实现了GNS-PDA在XNBR胶乳颗粒周围的包封,并导致了GNS-PDA / XNBR复合材料中形成的填料的隔离网络结构。因此,与填充有原始GNS的XNBR复合材料相比,填充有GNS-PDA的XNBR复合材料显示出改善的填料分散性,增强的介电常数和介电强度以及降低的电导率。最终,GNS-PDA / XNBR复合材料在18 kV / mm时显示出2.4%的驱动应变,并且该驱动应变远大于在相同电场下纯XNBR(1.3%)的驱动应变。这种简单,环保,低成本和有效的方法为获得具有改进的机械和电化学性能的高性能介电弹性体提供了一条有希望的途径。

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