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分层石墨烯-聚苯胺纳米复合薄膜用于高性能柔性电子气体传感器。

Hierarchical graphene-polyaniline nanocomposite films for high-performance flexible electronic gas sensors.

机构信息

State Key Laboratory of Chemical Resource Engineering, P.O. Box 98, Beijing University of Chemical Technology, Beijing 100029, P.R. China.

School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.

出版信息

Nanoscale. 2016 Jun 9;8(23):12073-80. doi: 10.1039/c6nr02540d.

Abstract

A hierarchically nanostructured graphene-polyaniline composite film is developed and assembled for a flexible, transparent electronic gas sensor to be integrated into wearable and foldable electronic devices. The hierarchical nanocomposite film is obtained via aniline polymerization in reduced graphene oxide (rGO) solution and simultaneous deposition on flexible PET substrate. The PANI nanoparticles (PPANI) anchored onto rGO surfaces (PPANI/rGO) and the PANI nanofiber (FPANI) are successfully interconnected and deposited onto flexible PET substrates to form hierarchical nanocomposite (PPANI/rGO-FPANI) network films. The assembled flexible, transparent electronic gas sensor exhibits high sensing performance towards NH3 gas concentrations ranging from 100 ppb to 100 ppm, reliable transparency (90.3% at 550 nm) for the PPANI/rGO-FPANI film (6 h sample), fast response/recovery time (36 s/18 s), and robust flexibility without an obvious performance decrease after 1000 bending/extending cycles. The excellent sensing performance could probably be ascribed to the synergetic effects and the relatively high surface area (47.896 m(2) g(-1)) of the PPANI/rGO-FPANI network films, the efficient artificial neural network sensing channels, and the effectively exposed active surfaces. It is expected to hold great promise for developing flexible, cost-effective, and highly sensitive electronic sensors with real-time analysis to be potentially integrated into wearable flexible electronics.

摘要

一种分层纳米结构的石墨烯-聚苯胺复合薄膜被开发并组装成一种灵活的、透明的电子气体传感器,以集成到可穿戴和可折叠的电子设备中。通过在还原氧化石墨烯(rGO)溶液中聚合苯胺并同时在柔性 PET 基底上沉积,得到了分层纳米复合材料。PPANI 纳米颗粒(PPANI/rGO)和 PANI 纳米纤维(FPANI)成功地相互连接并沉积在柔性 PET 基底上,形成分层纳米复合材料(PPANI/rGO-FPANI)网络薄膜。组装好的灵活、透明的电子气体传感器对 NH3 气体浓度在 100ppb 至 100ppm 之间的变化表现出很高的感应性能,PPANI/rGO-FPANI 薄膜的透光率稳定(6 小时样品为 90.3%,在 550nm 处),响应/恢复时间快(36s/18s),具有很强的柔韧性,在 1000 次弯曲/拉伸循环后性能没有明显下降。优异的传感性能可能归因于 PPANI/rGO-FPANI 网络薄膜的协同效应和较高的比表面积(47.896m2g-1)、高效的人工神经网络传感通道以及活性表面的有效暴露。它有望开发出具有实时分析功能的灵活、经济高效、高灵敏度的电子传感器,并有可能集成到可穿戴的柔性电子产品中。

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