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Preserving Softness and Elastic Recovery in Silicone-Based Stretchable Electrodes Using Carbon Nanotubes

机译:使用碳纳米管保持有机硅基可拉伸电极的柔软性和弹性恢复

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摘要

Soft electronics based on various rubbers have lately been needed in many advanced applications such as soft robotics, wearable electronics, and remote health monitoring. The ability of a self-sensing material to be monitored in use provides a significant advantage. However, conductive fillers usually used to increase conductivity also change mechanical properties. Most importantly, the initial sought-after properties of rubber, namely softness and long elastic deformation, are usually compromised. This work presents full mechanical and electro-mechanical characterization, together with self-sensing abilities of a vinyl methyl silicone rubber (VMQ) and multi-walled carbon nanotubes (MWCNTs) composite, featuring conductivity while maintaining low hardness. The research demonstrates that MWCNT/VMQ with just 4 wt.% of MWCNT are as conductive as commercial conductive VMQ based on Carbon Black, while exhibiting lower hardness and higher elastic recovery (~20% plastic deformation, similar to pure rubber). The research also demonstrates piezo-resistivity and Raman-sensitivity, allowing for self-sensing. Using morphological data, proposed mechanisms for the superior electrical and mechanical behavior, as well as the in-situ fingerprint for the composite conditions are presented. This research novelty is in the full MWCNT/VMQ mechanical and electro-mechanical characterization, thus demonstrating its ability to serve as a sensor over large local strains, multiple straining cycles, and environmental damage.
机译:最近,在许多高级应用程序中需要使用基于各种橡胶的软电子设备,例如软机器人,可穿戴电子设备和远程健康监控。在使用中监测自感材料的能力提供了显着的优势。但是,通常用于增加导电性的导电填料也会改变机械性能。最重要的是,通常会损害橡胶最初寻求的性能,即柔软性和长弹性变形。这项工作展现了完整的机械和机电特性,以及乙烯基甲基硅橡胶(VMQ)和多壁碳纳米管(MWCNTs)复合材料的自感应能力,具有导电性且保持低硬度。研究表明,仅占MWCNT的4%(重量)的MWCNT / VMQ与基于炭黑的商用导电VMQ一样导电,同时具有较低的硬度和较高的弹性回复率(约20%的塑性变形,类似于纯橡胶)。该研究还证明了压阻和拉曼灵敏度,可以实现自我感应。利用形态学数据,提出了具有优越的电气和机械性能的机制,以及复合条件下的原位指纹。这项研究的新颖之处在于完整的MWCNT / VMQ机械和机电特性,从而证明了其在较大的局部应变,多个应变循环和环境破坏下可以用作传感器的能力。

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