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Probing luminescent Fe-doped ZnO nanowires for high-performance oxygen gas sensing application\ud

机译:探讨发光Fe掺杂ZnO纳米线用于高性能氧气传感应用\ ud

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摘要

Herein, we demonstrate the growth of Fe-doped ZnO nanowires using a typical vapour phase transport process for oxygen gas sensing application. The morphologies of these nanowires have been evaluated by high-resolution transmission electron microscopy, which confirms the formation of ZnO nanowires with 20-50 nm diameter and with a d-spacing of similar to 0.270 nm, corresponding to (002) planes. The energy dispersive X-ray spectroscopy result reveals the presence of Fe, Zn and O elements in 9 wt% Fe-doped ZnO nanowires. The Raman and photoluminescence spectroscopy results explore the oxygen deficient structure of these nanowires with Fe ion occupying tetrahedral sites in the ZnO lattice along with some interstitial Zn and Fe ions. Furthermore, these nanowires arrays illustrate a sensitivity of 23 and 31 with fast response/recovery times of about 38 s/46 s and 11 s/11 s at an operating temperatures of 100 degrees C and 140 degrees C, respectively. The obtained results established that these luminescent ZnO nanowires could be an excellent choice for high-performance oxygen gas sensing application.
机译:在这里,我们演示了使用典型的气相传输过程进行氧气传感应用时,Fe掺杂的ZnO纳米线的生长。这些纳米线的形态已通过高分辨率透射电子显微镜进行了评估,这证实了直径为20-50 nm且d间距类似于0.270 nm的ZnO纳米线的形成,对应于(002)平面。能量色散X射线光谱结果表明,在9 wt%的掺杂Fe的ZnO纳米线中存在Fe,Zn和O元素。拉曼光谱和光致发光光谱结果探讨了这些纳米线的缺氧结构,其中Fe离子与一些间隙性Zn和Fe离子一起占据了ZnO晶格中的四面体位置。此外,这些纳米线阵列分别在100摄氏度和140摄氏度的工作温度下显示了23和31的灵敏度,分别具有约38 s / 46 s和11 s / 11 s的快速响应/恢复时间。获得的结果表明,这些发光的ZnO纳米线可能是高性能氧气传感应用的绝佳选择。

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