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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Enhancing the Photon- and Gas-Sensing Properties of a Single SnO2 Nanowire Based Nanodevice by Nanoparticle Surface Functionalization
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Enhancing the Photon- and Gas-Sensing Properties of a Single SnO2 Nanowire Based Nanodevice by Nanoparticle Surface Functionalization

机译:通过纳米粒子表面功能化增强单个SnO2纳米线基纳米器件的光子和气体传感特性

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摘要

Field-effect transistors based on a single SnO2 nanowire were successfully fabricated, and their photon- and gas-sensing properties were investigated. It is found that the sensitivity of single SnO2 nanowire based devices was remarkably improved by surface functionalization with ZnO or NiO nanoparticles. The heterojunction between the surface coating layers and SnO2 and the corresponding coupling effect of the two sensing materials play a critical role in controlling device sensitivity.
机译:成功地制造了基于单条SnO2纳米线的场效应晶体管,并研究了它们的光子和气敏特性。发现通过基于ZnO或NiO纳米粒子的表面功能化,单个基于SnO2纳米线的器件的灵敏度显着提高。表面涂层和SnO2之间的异质结以及两种传感材料的相应耦合效应在控制器件灵敏度方面起着关键作用。

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