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首页> 外文期刊>Nanoscale >Sponge-like loose and porous SnO2 microspheres with rich oxygen vacancies and their enhanced room-temperature gas-sensing performance
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Sponge-like loose and porous SnO2 microspheres with rich oxygen vacancies and their enhanced room-temperature gas-sensing performance

机译:像海绵一样的宽松和多孔SnO2微球丰富的氧空位和增强室温气敏性能

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Structure and surface modification of semiconductor materials are of great importance in gas sensors. In this study, a facile citric acid-assisted solvothermal method via a precise calcination process was leveraged to synthesize sponge-like loose and porous SnO2 microspheres with rich oxygen vacancies (denoted as LP-SnO2-Ov). When this material was used in a gas sensor, it exhibited an extremely high response to 10 ppm hydrogen sulfide gas at room temperature (Ra/Rg = 9688), which was 54 times higher than that of commercial SnO2. Furthermore, the response time of LP-SnO2-Ov was 5 s, while the recovery time was 177 s. Moreover, it displayed such high selectivity and stability for hydrogen sulfide gas that its properties remained almost unchanged after 1 month. This method paves a new way to fabricate materials possessing a sponge-like loose and porous structure with oxygen vacancies, which is promising for many other scientific fields such as lithium-ion batteries and photocatalysis.
机译:结构和表面改性半导体材料是非常重要的在气体传感器。acid-assisted solvothermal通过精确的方法煅烧过程是利用合成像海绵一样的宽松和多孔SnO2微球与富氧空位(表示LP-SnO2-Ov)。传感器,它表现出极高的反应10 ppm硫化氢气体的房间温度(Ra / Rg = 9688),这是54次高于商业SnO2。的响应时间LP-SnO2-Ov 5 s,而恢复时间是177年代。显示这样的高选择性和稳定性硫化氢气体,其属性1个月后几乎不变。一个制造材料拥有的新方法像海绵一样的宽松和多孔结构氧空位,这是有前途的锂离子等其他科学领域电池、光催化作用。

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