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3D 分级单斜型结构 Sb 掺杂 WO 在低温下对 NO 气体检测的应用。

Application of 3D hierarchical monoclinic-type structural Sb-doped WO towards NO gas detection at low temperature.

机构信息

School of Chemistry, Beihang University, Beijing 100191, China.

出版信息

Nanoscale. 2018 Apr 26;10(16):7440-7450. doi: 10.1039/c8nr01446a.

Abstract

Currently, the development of semiconducting metal oxide (SMO)-based gas sensors with innovative modification and three-dimensional (3D) structural designs has become a significant scientific interest due to their potential for addressing key technological challenges. Herein, gas sensing devices based on the 3D hierarchical monoclinic-type structural Sb-doped WO3 (HMSW) gas sensing material were successfully constructed by ordered assembly of urchin-like monoclinic-type structural (P2/m) Sb-doped WO2.72 (W18O49) (UMSW) nanocrystals and nanowires. The crystalline microstructure, composition, morphological characteristics, and possible growth mechanisms were systematically investigated. The results of the gas sensor measurements, performed simultaneously on multiple samples, indicated that the 3D HMSW material has superior sensitivity (S = 122) and high selectivity to ppm-level NO2 at 30 °C with a significantly larger response than the best-reported values from other WO3-based gas sensors fabricated so far. All the results clearly demonstrate that the combined effects of abundant structural defects derived from Sb doping modification, reduced band gap, and 3D hierarchical microstructure synergistically play a key role in the NO2 gas sensing performance. Such excellent gas sensing performance foresees the great potential application of 3D hierarchical structural WO3-based sensors for fast and effective detection of toxic gases that can aid in human health and public safety.

摘要

目前,基于半导体金属氧化物(SMO)的气体传感器的发展具有创新性的修饰和三维(3D)结构设计,由于其在解决关键技术挑战方面的潜力,已成为一个重要的科学研究热点。在此,通过有序组装具有 3D 分级单斜结构的(P2/m)掺 Sb 的 WO2.72(W18O49)(UMSW)纳米晶和纳米线,成功构建了基于 3D 分级单斜结构 Sb 掺杂 WO3(HMSW)气体传感材料的气体传感装置。系统研究了晶体微结构、组成、形态特征和可能的生长机制。气体传感器测量结果表明,在 30°C 下,3D HMSW 材料对 ppm 级 NO2 具有优异的灵敏度(S = 122)和选择性,比迄今为止报道的其他基于 WO3 的气体传感器的最佳值具有更大的响应。所有结果清楚地表明,Sb 掺杂修饰产生的丰富结构缺陷、减小的带隙和 3D 分级微结构的协同作用对 NO2 气体传感性能起着关键作用。这种优异的气体传感性能预示着基于 3D 分级结构 WO3 的传感器在快速、有效检测有毒气体方面具有巨大的潜在应用,这有助于人类健康和公共安全。

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