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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A superior selective and anti-jamming performance triethylamine sensing sensor based on hierarchical WO3 nanoclusters
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A superior selective and anti-jamming performance triethylamine sensing sensor based on hierarchical WO3 nanoclusters

机译:基于等级WO3纳米能器的优越选择性和抗干扰性能三乙胺感应传感器

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摘要

Synthesizing materials with specific orientation growth or exposed active facets have emerged as a feasible and low-cost approach to improve sensing performances according to recent literatures. Inspired by this, high ordered WO3 nanoclusters (NCs) were synthesized successfully by a facile and no time-consuming hydrothermal reaction in this work. The ordered WO3 NCs were piled up with by numerous of monocrystalline nanorods that were very close in orientation, and the sensor based on above NCs exhibited excellent triethylamine (TEA) detectability in terms of ultra-high response (137-50 ppm TEA), extremely-fast response speed (1.5 s-50 ppm TEA), low detection limit (500 ppb) to TEA. Moreover, it can not only effectively distinguish amine gas from ordinary volatile organic gas, but also can maintain stable and accurate monitoring toward TEA in mixed gases environment on long-term basis. The unique formation mechanism and superior TEA sensing mechanism of WO3 NCs were discussed in detail. (C) 2020 Elsevier B.V. All rights reserved.
机译:根据最近的文献,合成具有特定取向生长或暴露活性面的材料已成为一种可行且低成本的方法来改善传感性能。受此启发,本工作通过一种简单且无需耗时的水热反应成功合成了高有序WO3纳米团簇(NCs)。有序WO3纳米晶由大量取向非常接近的单晶纳米棒堆积而成,基于上述纳米晶的传感器在超高响应(137-50 ppm TEA)、极快响应速度(1.5 s-50 ppm TEA)、低检测限(500 ppb)方面表现出优异的三乙胺(TEA)检测能力。此外,它不仅能有效区分胺类气体和普通挥发性有机气体,还能长期对混合气体环境中的茶叶进行稳定、准确的监测。详细讨论了WO3 NCs独特的形成机理和优越的茶叶传感机理。(C) 2020爱思唯尔B.V.版权所有。

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