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A highly selective and sensitive H2S sensor at low temperatures based on Cr-doped α-Fe2O3 nanoparticles

机译:基于铬掺杂的α-Fe2O3纳米粒子的低温选择性高灵敏的H2S传感器

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摘要

Cr-doped α-Fe _(2) O _(3) nanoparticles were synthesized by a low-cost and environmentally friendly hydrothermal route. Their gas sensing properties were investigated and the sensor showed high sensitivity and selectivity to H _(2) S gas. Different Cr doping levels from 0 to 8.0 wt% were studied, and the sensor of 4.0 wt% Cr-doped α-Fe _(2) O _(3) showed the largest response, with a response of 213 to 50 ppm H _(2) S at 100 °C. The incorporation of Cr ions within α-Fe _(2) O _(3) nanocrystals increases the specific surface area, and promotes the oxidation of H _(2) S and oxygen adsorption in the air. Thus, the doping of Cr into α-Fe _(2) O _(3) nanostructures would be a promising method for designing and fabricating high performance H _(2) S gas sensors.
机译:Cr掺杂的α-Fe_(2)O _(3)纳米粒子是通过低成本和环保的水热路线合成的。研究了它们的气体传感特性,该传感器对H _(2)S气体显示出高灵敏度和选择性。研究了从0到8.0 wt%的不同Cr掺杂水平,并且4.0 wt%Cr掺杂的α-Fe_(2)O _(3)的传感器显示出最大的响应,响应为213至50 ppm H _ (2)在100°C下。 Cr离子在α-Fe_(2)O _(3)纳米晶体中的掺入增加了比表面积,并促进了H _(2)S的氧化和空气中的氧吸附。因此,将Cr掺杂到α-Fe_(2)O _(3)纳米结构中将是设计和制造高性能H _(2)S气体传感器的有前途的方法。

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