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Thermochemical hydrogen sensor based on chalcogenide nanowire arrays

机译:基于硫族化物纳米线阵列的热化学氢传感器

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摘要

The hydrogen gas-sensing properties have been investigated of two types of thermochemical hydrogen (TCH) sensors composed of thermoelectric layers based on chalcogenide nanowire arrays and anodic aluminum oxide (AAO) templates. The monomorphic-type TCH sensor, which had only Bi2Te3 nanowire arrays, showed an output signal of 23.7 mu V in response to 5 vol% hydrogen gas at room temperature, whereas an output signal of 215 mu V was obtained from an n-p junction-type TCH sensor made of connected Bi2Te3 and Sb2Te3 nanowire arrays in an AAO template. Despite its small deposition area, the output signal of the n-p sensor was more than nine times that of the monomorphic sensor. This observation can be explained by the difference in electrical connections (parallel and serial conversions) in the TCH sensor between each type of nanowire array. Also, our n-p sensor had a wide detection range for hydrogen gas (from 400 ppm to 45 vol%) and a fast response time of 1.3 s at room temperature without requiring external power.
机译:研究了由基于硫族化物纳米线阵列和阳极氧化铝(AAO)模板的热电层组成的两种类型的热化学氢(TCH)传感器的氢气传感特性。仅具有Bi2Te3纳米线阵列的单型TCH传感器在室温下响应于5 vol%的氢气显示23.7μV的输出信号,而从np结型获得215μV的输出信号由AAO模板中连接的Bi2Te3和Sb2Te3纳米线阵列制成的TCH传感器。尽管沉积面积很小,但是n-p传感器的输出信号却是单态传感器的9倍以上。可以通过每种类型的纳米线阵列之间的TCH传感器在电连接(并行和串行转换)方面的差异来解释此观察结果。另外,我们的n-p传感器具有宽广的氢气检测范围(从400 ppm到45 vol%),并且在室温下响应时间仅为1.3 s,而无需外部电源。

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