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基于碳纳米管/热塑性聚氨酯取向导电泡沫的柔性、轻质压力传感器,具有优异的压缩稳定性。

Flexible and Lightweight Pressure Sensor Based on Carbon Nanotube/Thermoplastic Polyurethane-Aligned Conductive Foam with Superior Compressibility and Stability.

机构信息

School of Materials Science and Engineering, The Key Laboratory of Material Processing and Mold of Ministry of Education, Zhengzhou University , Zhengzhou, Henan 450001, P. R. China.

State Key Laboratory of Polymer Materials Engineering, Sichuan University , Chengdu, Sichuan 610065, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Dec 6;9(48):42266-42277. doi: 10.1021/acsami.7b16975. Epub 2017 Nov 21.

Abstract

Flexible and lightweight carbon nanotube (CNT)/thermoplastic polyurethane (TPU) conductive foam with a novel aligned porous structure was fabricated. The density of the aligned porous material was as low as 0.123 g·cm. Homogeneous dispersion of CNTs was achieved through the skeleton of the foam, and an ultralow percolation threshold of 0.0023 vol % was obtained. Compared with the disordered foam, mechanical properties of the aligned foam were enhanced and the piezoresistive stability of the flexible foam was improved significantly. The compression strength of the aligned TPU foam increases by 30.7% at the strain of 50%, and the stress of the aligned foam is 22 times that of the disordered foam at the strain of 90%. Importantly, the resistance variation of the aligned foam shows a fascinating linear characteristic under the applied strain until 77%, which would benefit the application of the foam as a desired pressure sensor. During multiple cyclic compression-release measurements, the aligned conductive CNT/TPU foam represents excellent reversibility and reproducibility in terms of resistance. This nice capability benefits from the aligned porous structure composed of ladderlike cells along the orientation direction. Simultaneously, the human motion detections, such as walk, jump, squat, etc. were demonstrated by using our flexible pressure sensor. Because of the lightweight, flexibility, high compressibility, excellent reversibility, and reproducibility of the conductive aligned foam, the present study is capable of providing new insights into the fabrication of a high-performance pressure sensor.

摘要

具有新颖定向多孔结构的柔性轻质碳纳米管 (CNT)/热塑性聚氨酯 (TPU) 导电泡沫被制备。定向多孔材料的密度低至 0.123g·cm。通过泡沫的骨架实现了 CNT 的均匀分散,并且获得了超低的渗流阈值 0.0023 体积%。与无序泡沫相比,定向泡沫的机械性能得到了增强,并且柔性泡沫的压阻稳定性得到了显著提高。在应变 50%时,定向 TPU 泡沫的压缩强度增加了 30.7%,并且在应变 90%时,定向泡沫的应力是无序泡沫的 22 倍。重要的是,在应用应变下,定向泡沫的电阻变化呈现出迷人的线性特征,直到 77%,这有利于将泡沫用作理想的压力传感器。在多次循环压缩-释放测量中,定向导电 CNT/TPU 泡沫在电阻方面表现出优异的可重复性和可再现性。这种良好的性能得益于沿定向方向排列的梯状单元组成的定向多孔结构。同时,我们的柔性压力传感器演示了人类运动的检测,例如行走、跳跃、蹲下等。由于导电定向泡沫的重量轻、柔韧性、高可压缩性、优异的可重复性和可再现性,本研究能够为高性能压力传感器的制造提供新的见解。

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