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 property of SnO2 nanoparticles by constructing the SnO2-TiO2 nanobelt heterostructure
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Enhanced gas sensing property of SnO2 nanoparticles by constructing the SnO2-TiO2 nanobelt heterostructure

机译:通过构建SnO2-TiO2纳米带异质结构增强SnO2纳米颗粒的气敏特性

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摘要

Heterostructures constituted of SnO2 nanoparticles deposited on TiO2 nanobelt (SnO2 NP/TiO2 NB) or on surface-coarsened TiO2 nanobelts (SnO2 NP/TiO2 SNB) were successfully synthesized through a simple hydrothermal process. Using acetone as analyte, the performance of these two heterostructures as gas sensor were compared to a conventional SnO2 NP gas sensor. The SnO2 NP/TiO2 SNB heterostructure exhibited the best gas sensing performance in terms of sensitivity and response/recovery time. The high sensitivity of the SnO2/TiO2 SNB sensor originates from the large surface area offered by SnO2 NPs. The short response/recovery time is attributed to the high carrier transport speed along the long axis of the 1-dimensional TiO2 NB. We have thus demonstrated that the construction of a heterostructure leads to an improvement in the performance of a gas sensor, and we believe this strategy could be applied to many sensor devices. (C) 2015 Published by Elsevier B.V.
机译:通过简单的水热过程成功地合成了由沉积在TiO2纳米带(SnO2 NP / TiO2 NB)或表面粗化的TiO2纳米带(SnO2 NP / TiO2 SNB)上的SnO2纳米颗粒组成的异质结构。使用丙酮作为分析物,将这两个异质结构作为气体传感器的性能与常规的SnO2 NP气体传感器进行了比较。就灵敏度和响应/恢复时间而言,SnO2 NP / TiO2 SNB异质结构表现出最佳的气体传感性能。 SnO2 / TiO2 SNB传感器的高灵敏度源自SnO2 NP提供的大表面积。响应/恢复时间短归因于沿一维TiO2 NB长轴的高载流子传输速度。因此,我们证明了异质结构的构造可以改善气体传感器的性能,并且我们相信这种策略可以应用于许多传感器设备。 (C)2015由Elsevier B.V.发布

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