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首页> 外文期刊>Bulletin of the Korean Chemical Society >CO Gas-Sensor Based on Pt-Functionalized Mg-Doped ZnO Nanowires
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CO Gas-Sensor Based on Pt-Functionalized Mg-Doped ZnO Nanowires

机译:基于Pt掺杂Mg的ZnO纳米线的CO气体传感器

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摘要

Mg-doped ZnO one-dimensional (1D) nanostrutures were synthesized by using a thermal evaporation technique. The morphology, crystal structure, and sensing properties of the Mg-doped ZnO nanostructures functionalized with Pt to CO gas at 100 ℃ were examined. The diameters of the ID nanostructures ranged from 80 to 120 nm and that the lengths were up to a few tens of micrometers. The gas sensors fabricated from multiple networked Mg-doped ZnO nanowires functionalized with Pt showed enhanced electrical response to CO gas. The responses of the nanowires were improved by approximately 70, 69, 111, and 81 times at CO concentrations of 10, 25, 50, and 100 ppm, respectively. Both the response and recovery times of the nanowire sensor for CO gas sensing were not nearly changed by Pt functionalization. It also appeared that the Mg doping concentration did not influence the sensing properties of ZnO nanowires as strongly as Pt-functionalization. In addition, the mechanism for the enhancement in the CO gas sensing properties of Mg-doped ZnO nanowires by Pt functionalization is discussed.
机译:利用热蒸发技术合成了掺Mg的ZnO一维(1D)纳米结构。研究了在100℃下Pt对CO气体功能化的Mg掺杂的ZnO纳米结构的形貌,晶体结构和传感性能。内径纳米结构的直径范围为80至120 nm,长度可达几十微米。由用Pt功能化的多根掺Mg的ZnO纳米线构成的气体传感器显示出对CO气体的增强电响应。在10、25、50和100 ppm的CO浓度下,纳米线的响应分别提高了约70、69、111和81倍。 Pt功能化几乎没有改变用于CO气体传感的纳米线传感器的响应时间和恢复时间。看来,Mg的掺杂浓度并没有像Pt官能化那样强烈地影响ZnO纳米线的传感特性。此外,还讨论了通过Pt功能化增强Mg掺杂的ZnO纳米线的CO气敏特性的机理。

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