首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Enhanced gas sensing properties for formaldehyde based on ZnO/Zn2SnO4 composites from one-step hydrothermal synthesis
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Enhanced gas sensing properties for formaldehyde based on ZnO/Zn2SnO4 composites from one-step hydrothermal synthesis

机译:一种基于ZnO / Zn2SNO4复合材料的甲醛从一步水热合成增强气体传感性能

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摘要

Formaldehyde gas sensor with high performance is indispensable for monitoring indoor air quality. Exploring novel nanostructured composites as gas sensing materials is considered to be a feasible way to enhance the sensing performance. In this work, one-step hydrothermal method was employed for facile synthesis of ZnO/Zn2SnO4 nanocomposites and the as-prepared sample took on a homogeneous hexagonal lamellar nanostructure with a diameter of 600 nm-900 nm and thickness of about 100 nm. Gas sensing properties of the sample were tested and the results demonstrated that the ZnO/Zn2SnO4 composites possessed excellent sensing performances to formaldehyde. At 160 degrees C, the ZnO/Zn2SnO4 composites based sensor exhibited a high response of 22.5 towards 100 ppm of formaldehyde and a detection limit as low as 500 ppb. Compared with pristine Zn2SnO4 and ZnO, ZnO/Zn2SnO4 composites showed higher sensitivity (increased by 80% and 120%), better selectivity and lower detection limit. The noteworthy improvement of formaldehyde sensing performances could be attributed to the synergetic effect as well as the formation of n-n type heterojunctions between Zn2SnO4 and ZnO. The mechanism involved in gas sensing performance of ZnO/Zn2SnO4 composites was also discussed. (C) 2020 Elsevier B.V. All rights reserved.
机译:高性能的甲醛气体传感器是监测室内空气质量必不可少的传感器。探索新型纳米复合材料作为气敏材料被认为是提高气敏性能的可行途径。在本研究中,采用一步水热法制备了ZnO/Zn2SnO4纳米复合材料,所制备的样品呈均匀的六角层状纳米结构,直径为600 nm-900 nm,厚度约为100 nm。测试了样品的气敏性能,结果表明,ZnO/Zn2SnO4复合材料对甲醛具有良好的气敏性能。在160℃下,基于ZnO/Zn2SnO4复合材料的传感器对100 ppm的甲醛表现出22.5的高响应,检测限低至500 ppb。与原始Zn2SnO4和ZnO相比,ZnO/Zn2SnO4复合材料具有更高的灵敏度(分别提高了80%和120%)、更好的选择性和更低的检测限。甲醛传感性能的显著改善可归因于Zn2SnO4和ZnO之间的协同效应以及n-n型异质结的形成。讨论了ZnO/Zn2SnO4复合材料气敏性能的机理。(C) 2020爱思唯尔B.V.版权所有。

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