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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 >Highly sensitive formaldehyde gas sensors based on Y-doped SnO2 hierarchical flower-shaped nanostructures
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Highly sensitive formaldehyde gas sensors based on Y-doped SnO2 hierarchical flower-shaped nanostructures

机译:基于Y掺杂SnO2等级花形纳米结构的高敏感的甲醛气体传感器

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摘要

In this work, we have successfully prepared Y-doped SnO2 hierarchical flower-like nanostructures through a facile one-step hydrothermal method for the purpose of improving the formaldehyde gas sensing performance of conventional SnO2 semiconductor nanomaterials. The products were characterized by diverse techniques, which revealed that trivalent Y cations have been introduced into the crystal lattice of SnO2 and they exhibited lots of regular flower-like nanostructures consisting of several layers of rough and porous flakes. At an optimal working temperature of 180 degrees C, the fabricated gas sensor based on Y-doped SnO2 shown much better gas sensing properties to formaldehyde compared with SnO2 due to the combination of this distinctive three-dimensional hierarchical flower-like nanostructures and doping of Y ions. In particular, the detectable formaldehyde minimum limit has been reduced to 1 ppm. Consequently, Y-doped SnO2 hierarchical flower-like nanostructures are expected to become ideal gas sensing materials of highly sensitive gas sensors for formaldehyde detection due to their excellent gas sensing performance. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们通过容易的一步水热法成功地制备了Y掺杂的SnO2层级花样纳米结构,以改善常规SnO2半导体纳米材料的甲醛气体感测性能。该产品的特征在于各种技术,揭示了三价Y阳离子被引入SnO2的晶格中,并且它们展示了由几层粗糙和多孔薄片组成的常规花状纳米结构。在180℃的最佳工作温度下,基于Y掺杂的SnO 2的制造气体传感器显示出与SnO2相比,与甲醛相比,由于这种独特的三维等级花朵纳米结构和y掺杂而与SnO2相比,与SnO2相比具有更好的气体感测性能。离子。特别地,可检测的甲醛最小限度已降至1 ppm。因此,y掺杂的SnO2分层花样花样纳米结构预计是由于它们具有优异的气体传感性能,因此成为甲醛检测的高敏感气体传感器的理想气体传感材料。 (c)2019 Elsevier B.v.保留所有权利。

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