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Palladium thin films on microfiber filtration paper as flexible substrate and its hydrogen gas sensing mechanism

机译:微纤维滤纸上的钯薄膜作为柔性基底及其氢气传感机理

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Cost-effective, simple and flexible hydrogen gas sensors operating at room temperature were demonstrated based on DC magnetron sputtered palladium thin films. The main idea is to use commercial microfiber filtration paper as a cheap, fibrous and flexible substrate for palladium. With this objective, Pd thin films with 21, 38 and 54 nm thicknesses were deposited and characterized by grazing incident X-ray diffraction (GIXRD) and scanning electron microscope (SEM). The gas sensing behavior was tested by hydrogen gas in the concentration rang of 0.5-10%. GIXRD showed a PdX/Pd phase and SEM revealed existing of many structural nanocracks. An activation process was needed where sensors were heated up to 110 degrees C in the presence of 10% H-2. Then a desirable hydrogen sensitivity with good stability based on hydrogen induced lattice expansion (HILE) effect in which conductance increases was observed. However, for low Pd thicknesses (21 and 38 nm) and at below 4% H-2, an inverse effect was observed in which the conductance decreased instead of increasing. For all samples the response time is incremental in the range of 0.5 -4% and declining for 4-10%. Moreover, the deposited Pd sensors operate well when they are bent inward or outward. The governed physical mechanism was expressed and discussed. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:基于直流磁控溅射钯薄膜,展示了在室温下运行的经济高效,简单而灵活的氢气传感器。主要思想是使用商用微纤维滤纸作为钯的廉价,纤维状和柔性基材。为此,沉积了厚度为21、38和54 nm的Pd薄膜,并通过掠入射X射线衍射(GIXRD)和扫描电子显微镜(SEM)进行了表征。通过氢气在0.5-10%的浓度范围内测试了气体感应行为。 GIXRD显示PdX / Pd相,而SEM显示存在许多结构纳米裂纹。需要激活过程,其中在10%H-2存在的情况下将传感器加热到110摄氏度。然后,观察到基于氢诱导的晶格膨胀(HILE)效应的,具有良好稳定性的期望的氢敏感性,其中电导增加。但是,对于低Pd厚度(21和38 nm)且H-2低于4%,观察到了相反的效果,其中电导率下降而不是增加。对于所有样品,响应时间在0.5 -4%的范围内递增,而在4-10%的范围内递减。此外,当沉积的Pd传感器向内或向外弯曲时,它们可以很好地工作。表达并讨论了支配的物理机制。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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