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On-chip growth of patterned ZnO nanorod sensors with PdO decoration for enhancement of hydrogen-sensing performance

机译:带有PdO装饰的图案化ZnO纳米棒传感器的片上生长以增强氢感测性能

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In this study, we used a low-temperature hydrothermal technique to fabricate arrays of sensors with ZnO nanorods grown on-chip. The sensors on the glass substrate then were sputter decorated with Pd at thicknesses of 2, 4, and 8 nm and annealed at 650 degrees C in air for an hour. Scanning electron microscopy, high resolution transmission microscopy, X-ray diffraction, and surface analysis by X-ray photoelectron spectroscopy characterization demonstrated that decoration of homogenous PdO nanoparticles on the surface of ZnO nanorods had been achieved. The sensors were tested against three reducing gases, namely hydrogen, ethanol, and ammonia, at 350, 400, and 450 degrees C. The ZnO nanorods decorated with PdO particles from the 2 and 4 nm layers showed the highest responses to H-2 at 450 and 350 degrees C, respectively. These samples also generally exhibited better selectivity for hydrogen than for ethanol and ammonia at the same concentrations and at all tested temperatures. However, the ZnO nanorods decorated with PdO particles from the 8 nm layer showed a reverse sensing behaviour compared with the first two. The sensing mechanism behind these phenomena is discussed in the light of the spillover effect of hydrogen in contact with the PdO particles as well as the negative competition of the PdO thin film formed between the sensor electrodes during sputter decoration, Pd-Zn heterojunction that forms at high temperature and thus influences the conductivity of the ZnO nanorods. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们使用了低温水热技术来制造带有在芯片上生长的ZnO纳米棒的传感器阵列。然后将玻璃基板上的传感器用Pd分别以2、4和8 nm的厚度进行溅射装饰,并在650摄氏度的空气中退火一小时。扫描电子显微镜,高分辨率透射显微镜,X射线衍射和X射线光电子能谱表征的表面分析表明,已经实现了ZnO纳米棒表面均质PdO纳米粒子的装饰。在350、400和450摄氏度下,针对三种还原性气体,即氢气,乙醇和氨,对传感器进行了测试。用来自2和4 nm层的PdO颗粒装饰的ZnO纳米棒对H-2的响应最高。 450和350摄氏度。在相同的浓度和所有测试温度下,这些样品对氢气的选择性通常也比乙醇和氨好。然而,与前两个相比,用来自8 nm层的PdO颗粒装饰的ZnO纳米棒表现出相反的传感行为。根据氢气与PdO颗粒接触的溢出效应以及溅射装饰过程中在传感器电极之间形成的PdO薄膜的负竞争,讨论了这些现象背后的感应机制,Pd-Zn异质结形成于高温,从而影响ZnO纳米棒的电导率。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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