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Facile Synthesis of Wormhole-Like Mesoporous Tin Oxide via Evaporation-Induced Self-Assembly and the Enhanced Gas-Sensing Properties

机译:蒸发诱导的自组装轻松合成蠕虫状中孔氧化锡和增强的气敏性能

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摘要

Wormhole-like mesoporous tin oxide was synthesized via a facile evaporation-induced self-assembly (EISA) method, and the gas-sensing properties were evaluated for different target gases. The effect of calcination temperature on gas-sensing properties of mesoporous tin oxide was investigated. The results demonstrate that the mesoporous tin oxide sensor calcined at 400 °C exhibits remarkable selectivity to ethanol vapors comparison with other target gases and has a good performance in the operating temperature and response/recovery time. This might be attributed to their high specific surface area and porous structure, which can provide more active sites and generate more chemisorbed oxygen spices to promote the diffusion and adsorption of gas molecules on the surface of the gas-sensing material. A possible formation mechanism of the mesoporous tin oxide and the enhanced gas-sensing mechanism are proposed. The mesoporous tin oxide shows prospective detecting application in the gas sensor fields.
机译:通过简便的蒸发诱导自组装(EISA)方法合成了蠕虫状的中孔氧化锡,并针对不同的目标气体评估了其气敏特性。研究了煅烧温度对介孔氧化锡气敏性能的影响。结果表明,与其他目标气体相比,在400°C下煅烧的中孔氧化锡传感器显示出对乙醇蒸气的显着选择性,并且在工作温度和响应/恢复时间方面具有良好的性能。这可能归因于它们的高比表面积和多孔结构,可以提供更多的活性位点并产生更多的化学吸附的氧香料,从而促进气体分子在气体传感材料表面的扩散和吸附。提出了介孔氧化锡可能的形成机理和增强的气敏机理。介孔氧化锡在气体传感器领域显示出前瞻性的检测应用。

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