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降低 GO 杂化 CNTs 气凝胶中的结构缺陷和含氧官能团:同时改善电气和机械性能以提高压力灵敏度。

Reducing Structural Defects and Oxygen-Containing Functional Groups in GO-Hybridized CNTs Aerogels: Simultaneously Improve the Electrical and Mechanical Properties To Enhance Pressure Sensitivity.

机构信息

State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics , Chinese Academy of Sciences , Lanzhou 730000 , P. R. China.

University of Chinese Academy of Sciences , Beijing 100080 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2018 Nov 14;10(45):39009-39017. doi: 10.1021/acsami.8b12578. Epub 2018 Nov 5.

Abstract

Three-dimensional graphene oxide-carbon nanotube (GO-CNT, abbreviated as GCNT) aerogels can find wide applications in various fields. Especially, low-density GCNT aerogels featuring both high conductivity and superelasticity are essential requirements for the construction of highly sensitive pressure sensor. However, simultaneous improvement on the electrical and mechanical properties of low-density GCNT is still a great challenge owing to their disordered microstructure, severe structural defects and massive oxygen-containing functional groups. Here, a structurally ordered and less defective GCNT aerogel featuring both high conductivity and superelasticity has been fabricated through alkali induced self-assembly of GO liquid crystals (GO LCs) and CNTs. Our methodology relies on the double roles of KOH solution as dispersant for CNTs and an inducer for the self-assembly of GO LCs nanosheets. The less-defective CNTs acting as reinforcement material contributes to the robust structure networks, leading to the significantly improved conductivity (2.4 S m) and elasticity (14.3 kPa) of GCNT. Benefiting from these outstanding properties of GCNT aerogels, the assembled pressure sensor exhibits an ultrahigh sensitivity of 1.22 kPa, rapid response time of 28 ms and excellent cycling stability, which enables it as a high-performance sensing platform to monitor various human motions in real time.

摘要

三维氧化石墨烯-碳纳米管(GO-CNT,简称 GCNT)气凝胶在各个领域都有广泛的应用。特别是具有高导电性和超弹性的低密度 GCNT 气凝胶,是构建高灵敏度压力传感器的必要条件。然而,由于其无序的微观结构、严重的结构缺陷和大量含氧官能团,同时改善低密度 GCNT 的电性能和机械性能仍然是一个巨大的挑战。在这里,通过碱诱导氧化石墨烯液晶(GO LC)和碳纳米管的自组装,制备出了具有高导电性和超弹性的结构有序、缺陷少的 GCNT 气凝胶。我们的方法依赖于 KOH 溶液作为碳纳米管分散剂和 GO LC 纳米片自组装诱导剂的双重作用。作为增强材料的缺陷较少的 CNT 有助于形成坚固的结构网络,从而显著提高 GCNT 的导电性(2.4 S m)和弹性(14.3 kPa)。得益于 GCNT 气凝胶的这些优异性能,组装的压力传感器具有超高的灵敏度 1.22 kPa、快速的响应时间 28 ms 和出色的循环稳定性,使其成为一个高性能的传感平台,可以实时监测各种人体运动。

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