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MoO2 Nanospheres Synthesized by Microwave-Assisted Solvothermal Method for the Detection of H2S in Wide Concentration Range at Low Temperature

机译:MOO2纳米球通过微波辅助溶剂热量合成,用于在低温下检测H2S的宽浓度范围

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摘要

It is crucial to develop highly energy-efficient and selective sensors for wide concentration range of H2S, a common toxic gas that widely exists in petrochemical industries. In this work, MoO2 nanospheres were rapidly synthesized by microwave-assisted solvothermal method, and were subsequently fabricated into H2S gas sensor. The MoO2 nanospheres-based sensor exhibited excellent response toward H2S with good linearity in a wide concentration range (10–240 ppm). Besides, this sensor presented low working temperature, good repeatability, and selectivity against CH4, H2, and CO. The outstanding sensing performance results from the reaction between H2S and abundant chemisorbed oxygen introduced by oxygen vacancies of MoO2. This result indicates that MoO2 nanosphere synthesized by microwave-assisted solvothermal method is a promising sensing material for H2S detection.
机译:对于为广泛的浓度范围的H2S进行高度节能和选择性传感器,这是至关重要的,这是石油化学行业广泛存在的常见有毒气体。在这项工作中,通过微波辅助溶剂热法迅速合成MOO2纳米球,随后将其制成H2S气体传感器。基于MOO2纳米球的传感器对H2S的良好反应具有良好的线性度,在宽浓度范围内(10-240ppm)。此外,该传感器呈现出低的工作温度,良好的重复性和针对CH4,H2和CO的选择性。优异的感测性能是由H2S与MOO2的氧空位引入的丰富化学吸附的反应。该结果表明,通过微波辅助溶剂热法合成的MOO2纳米晶体是对H2S检测的有前途的感测材料。

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