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Sol-gel synthesis of Pd doped ZnO nanorods for room temperature hydrogen sensing applications

机译:用于室温氢感测应用的Pd掺杂ZnO纳米棒的溶胶-凝胶合成

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A sol-gel spin coating technique was described for the synthesis of Pd doped ZnO nanorods for hydrogen sensing applications. The nanorods were hexagonal in shape, 50-100 nm in diameter and uniform in distribution. They exhibited homogeneous surface morphology, c-axis orientation and excellent crystalline properties. The synthesized nanorods were used to sense and detect hydrogen in a homemade gas chamber. The fabricated sensor successfully detected as low as 40 ppm hydrogen at room temperature with a very low level of power supply (16.16 μA) under a mixed background. Dynamic and repeated responses were observed with a wide range of hydrogen concentrations (40-360 ppm) at 200℃. The developed sensor was at least 25 fold more sensitive over the literature documented Pd doped ZnO nanorods in detecting hydrogen at ambient temperature. The simplicity, low-cost, high sensitivity and high stability of the sensor materials suggested that the synthesized Pd doped ZnO nanorods could be used in hydrogen and chemical sensing devices where Pd-mediated catalysis is involved.
机译:描述了一种溶胶-凝胶旋涂技术,用于氢感测应用中的Pd掺杂ZnO纳米棒的合成。纳米棒的形状为六边形,直径为50-100 nm,分布均匀。它们表现出均匀的表面形态,c轴取向和出色的结晶性能。合成的纳米棒用于检测和检测自制气体室内的氢气。在混合背景下,以非常低的电源水平(16.16μA)在室温下成功地检测出组装好的传感器,氢含量低至40 ppm。在200℃的宽范围氢浓度(40-360 ppm)下观察到动态和重复的响应。在环境温度下检测氢气时,开发的传感器的灵敏度比文献报道的Pd掺杂的ZnO纳米棒至少高25倍。传感器材料的简单,低成本,高灵敏度和高稳定性表明,合成的掺Pd的ZnO纳米棒可用于涉及Pd介导的催化作用的氢气和化学传感装置中。

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