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首页> 外文期刊>Journal of nanoscience and nanotechnology >Improvement of Gas Sensing Characteristics by Adding Pt Nanoparticles on ZnO-Branched SnO2 Nanowires
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Improvement of Gas Sensing Characteristics by Adding Pt Nanoparticles on ZnO-Branched SnO2 Nanowires

机译:通过在ZnO分支的SnO2纳米线上添加Pt纳米颗粒来改善气体传感特性

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摘要

We coated zinc-oxide (ZnO)-branched tin oxide (SnO2) nanowires with a Pt shell layer via a sputtering method and subsequently annealed the composite to generate Pt nanoparticles. The spillover effect of Pt nanoparticles was expected to play a significant role in enhancing the response. X-ray diffraction, scanning electron microscopy, and transmission electron microscopy revealed that the nanoparticles were comprised of a cubic Pt phase. A sensing test with NO2 gas revealed that the sensor response to NO2 gas was significantly increased, being related to the spillover effect of the Pt nanoparticles. As a result of the Pt-functionalization, the sensor response time and recovery time were decreased and increased, respectively. The high sensor response and fast response time make Pt-functionalized ZnO branched nanowires a promising candidate for gas sensors. The present work will be useful in exploring new areas of multiple-component nanosystems.
机译:我们通过溅射方法在Pt壳层上涂覆了氧化锌(ZnO)支化的氧化锡(SnO2)纳米线,然后对复合材料进行退火以生成Pt纳米粒子。预计Pt纳米颗粒的溢出效应将在增强响应中起重要作用。 X射线衍射,扫描电子显微镜和透射电子显微镜显示,纳米颗粒由立方Pt相组成。用NO2气体进行的传感测试表明,传感器对NO2气体的响应显着增加,这与Pt纳米颗粒的溢出效应有关。 Pt功能化的结果是,传感器响应时间和恢复时间分别减少和增加。高传感器响应速度和快速响应时间使Pt功能化的ZnO支化纳米线成为气体传感器的有希望的候选者。目前的工作将有助于探索多组分纳米系统的新领域。

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