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Flexible Room-Temperature Gas Sensors of Nanocomposite Network-Coated Papers

机译:纳米复合网络覆膜纸柔性室温气体传感器

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摘要

A 'green' paper-based flexible room-temperature electronic sensor is assembled from environmentally friendly 3D porous cellulose papers with the filtration coating of hierarchical polyaniline/ reduced graphene oxide (PANI/RGO) nanocomposite network, which is prepared by in situ PANI polymerization in RGO solution. The environmentally friendly paper with flexibility, porous structure, portability, and recyclability, is considered as potential substrates for the flexible electronic sensors. The as-assembled flexible electronic gas sensor reveals excellent sensing performance and reliable flexibility without obvious performance change after 1000 bending/extending cycles. The high gas sensing performance could be attributed to synergistic advantages of RGO and PANI, high specific surface area (48.532 m(2)/g) for efficient adsorption/desorption of vapor analytes, the interconnected nanocomposite sensing network, and the effectively exposed active surfaces. It is anticipated to be extended for fabricating flexible sensors, providing high sensing performance, superior recyclability, robust flexibility and reliable portability to be potentially integrated into handheld flexible electronics.
机译:一种“绿色”的柔性室温电子传感器由环保型3D多孔纤维素纸组装而成,具有多级聚苯胺/还原氧化石墨烯(PANI/RGO)纳米复合网络的过滤涂层,该网络是在RGO溶液中原位聚合制备的。这种环保纸具有柔韧性、多孔结构、便携性和可回收性,被认为是柔性电子传感器的潜在基板。组装后的柔性电子气体传感器具有出色的传感性能和可靠的灵活性,在1000次弯曲/伸展循环后没有明显的性能变化。高气体传感性能可归因于RGO和PANI的协同优势,高比表面积(48.532 m(2)/g)可有效吸附/解吸蒸汽分析物,互连的纳米复合传感网络以及有效暴露的活性表面。预计它将扩展到制造柔性传感器,提供高传感性能、卓越的可回收性、强大的灵活性和可靠的便携性,并有可能集成到手持式柔性电子产品中。

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