An easy-fabricated hydrogen gas sensor based on palladium-decorated polyurethane nanofibers

Ran Chen, Wei-ting Liu, Xin Fu, P. Dario
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引用次数: 1

Abstract

This paper reports a hydrogen gas sensor based on palladium-decorated polyurethane nanofibers which can be easily fabricated through electrospinning, sputtering, gap generating and adjusting. Extremely narrow gaps between palladium nanostructures with width about 12nm are obtained through stretching aided hydrogen gas exposure and adjusted through further stretching which modulates measurement range and sensitivity of the sensor. This sensor performs a good and fast response (with response time less than 5s and recovery time less than 10s) to hydrogen gas of low concentrations with a good sensitivity and linearity in narrow range (with max sensitivity about 0.32% per ppm in relative resistance change and span less than 100ppm) and a fairly low limit-of-detection (which can be below 50ppm). Therefore, the sensor is suitable for hydrogen gas leak detection.
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一种基于钯装饰聚氨酯纳米纤维的易于制造的氢气传感器
本文报道了一种基于钯修饰聚氨酯纳米纤维的氢气传感器,该传感器可以通过静电纺丝、溅射、间隙产生和调节等方法轻松制备。通过拉伸辅助氢气曝光获得了宽度约为12nm的极窄钯纳米结构间隙,并通过进一步拉伸调节了传感器的测量范围和灵敏度。该传感器对低浓度氢气具有良好的快速响应(响应时间小于5s,恢复时间小于10s),在窄范围内具有良好的灵敏度和线性(相对电阻变化的最大灵敏度约为0.32% / ppm,量程小于100ppm)和相当低的检测限(可低于50ppm)。因此,该传感器适用于氢气泄漏检测。
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