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Elastomer-Infiltrated Vertically Aligned Carbon Nanotube Film-Based Wavy-Configured Stretchable Conductors

机译:弹性渗透垂直排列的碳纳米管膜基波浪状可拉伸导体

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摘要

Elastomer-infiltrated vertically aligned carbon nanotube (VACNT) forests are good candidates for use as stretchable conductors that can retain the electrical properties under relatively large stretching. The electrical performance can be further enhanced in terms of high stretchability and small change in the electrical resistance by using a wavy configuration, In this work, we present a wavy-structured high-performance stretchable conductor prepared by a simple prestraining approach based on p oly dim ethyls iloxane (PDMS)-infiltrated VACNT films. Prior to the infiltration process, the VACNT forests can also be easily micropatterned by a PDMS stamp-assisted contact transfer printing technique. The conductive VACNT forest patterns are fully infiltrated with highly elastic PDMS, and the PDMS/VACNT film is conformally and strongly bonded to the prestrained PDMS substrate with the help of an intermediate thin PDMS layer, resulting in mechanical robustness of the whole device. The fabricated wavy VACNT conductor shows a small resistance change ratio of less than 6% with a tensile strain of up to 100% (prestrained level) and a high reversibility under multiple stretching/releasing cycles with a maximum strain of 100%.
机译:渗透弹性体的垂直排列的碳纳米管(VACNT)林是用作可拉伸导体的良好候选者,该导体在较大拉伸下仍可保持电性能。通过使用波浪形结构,可以在高拉伸性和电阻的小变化方面进一步提高电气性能。在这项工作中,我们提出了一种基于结构简单的预应变方法制备的波浪形高性能可拉伸导体二甲基硅氧烷(PDMS)渗透的VACNT膜。在渗透过程之前,也可以通过PDMS邮票辅助的接触转移印刷技术轻松地对VACNT林进行微图案化。导电的VACNT森林图案被高弹性的PDMS完全渗透,并且PDMS / VACNT膜借助中间的薄PDMS层共形且牢固地粘结到预应变的PDMS基板上,从而使整个设备具有机械坚固性。制成的波浪形VACNT导体表现出小于6%的小电阻变化率,最大拉伸应变为100%(预应变水平),在多次拉伸/释放循环下的可逆性很高,最大应变为100%。

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