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Optimization of the surface coverage of metal nanoparticles on nanowires gas sensors to achieve the optimal sensing performance

机译:优化纳米线气体传感器上金属纳米颗粒的表面覆盖率,以实现最佳传感性能

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摘要

The functionalization of noble metal nanoparticles (NPs) is a highly efficient method for increasing the sensing performance of metal oxide nanowire (NWs) gas sensors. Despite the well-established strategy, the level of the optimal functionalization for obtaining the maximum sensing response has rarely been reported. Herein, the surfaces of SnO2 NWs were functionalized with N and Pd NPs, and the gas sensing characteristics were then investigated using NO2 as an example gas. The sensing responses obtained at the optimal temperature showed a bell-shaped dependency on the proportion of surface coverage by Pd and N NPs. The sensing mechanism is explained and the results were also fitted to a simple theoretical model based on modulation in the conduction channel via the chemical and electronic sensitization on NWs. This study provides guidelines on the amount of metal NPs for achieving the optimal sensing responses in metal oxide NWs gas sensors.
机译:贵金属纳米颗粒(NPs)的功能化是一种用于提高金属氧化物纳米线(NWs)气体传感器的传感性能的高效方法。尽管制定了完善的策略,但很少获得获得最大传感响应的最佳功能化水平。在此,SnO2 NWs的表面用N和Pd NPs功能化,然后使用NO2作为示例气体研究了气体传感特性。在最佳温度下获得的传感响应显示出钟形的依赖于Pd和N NPs的表面覆盖比例。解释了感应机制,并将结果也拟合到了一个简单的理论模型,该模型基于通过在NWs上进行化学和电子增感在传导通道中进行调制而得到。这项研究提供了有关在金属氧化物NWs气体传感器中实现最佳传感响应的金属NP数量的指南。

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