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Preparation of{200}crystal faced SnO_(2) nanorods with extremely high gas sensitivity at lower temperature 被引量:1
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作者 Hong-Yan Xu Zheng-Run Chen +4 位作者 Cai-Yun Liu Qin Ye Xiao-Peng Yang Jie-Qiang Wang Bing-Qiang Cao 《Rare Metals》 SCIE EI CAS CSCD 2021年第8期2004-2016,共13页
Demand for simple and effective gas sensing sensors is growing rapidly due to the growing threat of triethylamine(TEA).Semiconductor tin oxide(SnO_(2))is one of the most widely used sensing materials for metal oxide g... Demand for simple and effective gas sensing sensors is growing rapidly due to the growing threat of triethylamine(TEA).Semiconductor tin oxide(SnO_(2))is one of the most widely used sensing materials for metal oxide gas sensors.In recent years,a lot of binary ternary compound researches have been carried out.In this paper,five different SnO_(2) samples were synthesized by simple synthesis method to understand the internal relationship and obtain different gas sensing characteristics.Based on the low temperature nitrogen adsorption tests and the atomic arrangement model,it can be inferred that different exposed surfaces play a key role in TEA sensing properties.In addition,the TEA sensing activity relationship of SnO_(2) exposed crystal faces is proposed as listed:(200)>(101)>(110). 展开更多
关键词 SnO_(2)gas sensor exposed crystal faces Atomic arrangement TEA sensing properties
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