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A New Strategy for Humidity Independent Oxide Chemiresistors: Dynamic Self-Refreshing of In2O3 Sensing Surface Assisted by Layer-by-Layer Coated CeO2 Nanoclusters

机译:一种与湿度无关的氧化物化学传感器的新策略:层状包覆的CeO2纳米团簇辅助In2O3传感表面的动态自刷新

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摘要

The humidity dependence of the gas sensing characteristics of metal oxide semiconductors has been one of the greatest obstacles for gas sensor applications during the last fi ve decades because ambient humidity dynamically changes with the environmental conditions. Herein, a new and novel strategy is reported to eliminate the humidity dependence of the gas sensing characteristics of oxide chemiresistors via dynamic self-refreshing of the sensing surface affected by water vapor chemisorption. The sensor resistance and gas response of pure In2O3 hollow spheres signifi cantly change and deteriorate in humid atmospheres. In contrast, the humidity dependence becomes negligible when an optimal concentration of CeO2 nanoclusters is uniformly loaded onto In2O3 hollow spheres via layer-by-layer (LBL) assembly. Moreover, In2O3 sensors LBL-coated with CeO2 nanoclusters show fast response/ recovery, low detection limit (500 ppb), and high selectivity to acetone even in highly humid conditions (relative humidity 80%). The mechanism underlying the dynamic refreshing of the In2O3 sensing surfaces regardless of humidity variation is investigated in relation to the role of CeO2 and the chemical interaction among CeO2, In2O3, and water vapor. This strategy can be widely used to design high performance gas sensors including disease diagnosis via breath analysis and pollutant monitoring.
机译:在过去的五十年中,金属氧化物半导体的气体传感特性对湿度的依赖性一直是气体传感器应用的最大障碍之一,因为环境湿度会随着环境条件而动态变化。在本文中,报道了一种新的和新颖的策略,以通过受水蒸气化学吸附影响的传感表面的动态自刷新来消除氧化物化学电阻的气体传感特性的湿度依赖性。纯In2O3空心球的传感器电阻和气体响应在潮湿的环境中会显着变化和恶化。相反,当通过逐层组装(LBL)将最佳浓度的CeO2纳米团簇均匀地负载到In2O3空心球上时,湿度依赖性可以忽略不计。而且,涂有CeO2纳米团簇的In2O3传感器LBL表现出快速响应/恢复,低检测限(500 ppb),甚至在高湿度条件下(相对湿度80%)对丙酮的高选择性。研究了与湿度无关的In2O3感测表面的动态刷新机理,这些机理与CeO2的作用以及CeO2,In2O3和水蒸气之间的化学相互作用有关。该策略可广泛用于设计高性能气体传感器,包括通过呼吸分析和污染物监测进行疾病诊断。

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