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Recovery improvement of graphene-based gas sensors functionalized with nanoscale heterojunctions

机译:纳米异质结功能化的基于石墨烯的气体传感器的回收率提高

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摘要

We report a development of reduced graphene oxide (rGO)-based gas sensors with a practical recovery by facile functionalization with tin dioxide nanoclusters. Upon the introduction of UV illumination to this nanostructure, the reaction on surfaces of tin dioxide nanoclusters was activated and thereby the nanoscale heterojunction barriers between the rGO sheet and the nanoclusters were developed. This lowered the conductance to quickly recover, which was intensified as the cluster density has reached to the percolation threshold. However, after the formation of the cluster percolating network, the sensor response has totally changed into a deterioration of the sensitivity as well as the recovery.
机译:我们报告了一种还原氧化石墨烯(rGO)气体传感器的发展,并通过二氧化锡纳米团簇的功能化实用回收。将紫外线照射引入该纳米结构后,二氧化锡纳米团簇表面上的反应被激活,从而在rGO片和纳米团簇之间形成了纳米级异质结势垒。这降低了电导以快速恢复,当簇密度达到渗滤阈值时,电导迅速增强。然而,在形成簇渗透网络之后,传感器的响应已经完全改变为灵敏度的下降以及恢复。

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