首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Sedum lineare flower-like ordered mesoporous In2O3/ZnO gas sensing materials with high sensitive response to H2S at room temperature prepared by self-assembled of 2D nanosheets
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Sedum lineare flower-like ordered mesoporous In2O3/ZnO gas sensing materials with high sensitive response to H2S at room temperature prepared by self-assembled of 2D nanosheets

机译:Sedum Lineare花样有序的介孔In2O3 / ZnO气体传感材料,对H2S的高敏感反应,在室温下通过自组装制成的2D纳米片制备

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摘要

In this work, a kind of novel monodispersed sedum lineare flower-like ordered mesoporous In2O3/ZnO material was prepared by template method. The diameters of the sedum lineare flower-like structure In2O3/ZnO composite particles were much uniform which were self-assembled by 2D nanosheets with 118 nm thickness, and the ordered pores were distributed on the surface of the petals. The layered porous structure was conducive to the absorption of poisonous gas which improved gas sensitive property. The influences of the stirring temperature and In content to gas sensitive property and morphology were studied. The response (Ra/Rg) of the prepared In2O3/ZnO material reached to 10.2 towards 100 ppm H2S at room temperature (25 +/- 3 degrees C) which was about 8.5 times of pure ZnO matrix, the detection limit was 1 ppm, and it also had much faster response and recovery time. Moreover, the In2O3/ZnO composite had excellent selectivity, cycling and long-term stability towards H2S which provided the advanced materials and synthetic method for developing H2S gas sensor. It had much outstanding advantages compared with the other reported H2S gas sensors at room temperature. (C) 2020 Elsevier B.V. All rights reserved.
机译:在这项工作中,通过模板方法制备了一种新型单分散的Sedum Lineare花样的介孔In2O3 / ZnO材料。 Sedum Lineare花状结构的直径为2O3 / ZnO复合颗粒的均匀均匀,其由具有118nm厚的2D纳米片自组装,并且有序孔分布在花瓣的表面上。层状多孔结构有利于吸收有毒气体,改善气体敏感性。研究了搅拌温度和含量对气敏性和形态的影响。在室温(25 +/- 3摄氏度)(25 +/- 3℃)的约8.5倍为纯ZnO基质的约8.5倍的10.2升至100ppm H 2的响应(Ra / Rg),检测限为1 ppm,它也有更快的响应和恢复时间。此外,In2O3 / ZnO复合材料具有优异的选择性,循环和长期稳定性,其为H2S提供了用于开发H2S气体传感器的先进材料和合成方法。与其他报道的H2S气体传感器相比,它具有很大的优点。 (c)2020 Elsevier B.v.保留所有权利。

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