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Fabrication of ZnO nanorod-based hydrogen gas nanosensor

机译:ZnO纳米棒基氢气纳米传感器的制备

摘要

The nanofabrication of a hydrogen gas nanosensor device from single straight and branched, tripod shaped ZnO nanorods using in-situ lift-out technique, performed in the chamber of a focused ion beam (FIB) system is disclosed. Self-assembled ZnO branched nanorods have been grown by a cost-effective and fast synthesis route using an aqueous solution deposition method and rapid thermal processing. The properties of the ZnO nanorod structures were analyzed by X-ray diffraction, scanning electron microscopy, energy dispersion X-ray spectroscopy, transmission electron microscopy and micro-Raman spectroscopy. High quality ZnO nanorods were obtained with a 90% success rate for building nanodevices. The fabricated nanosensor can gauge 150 ppm hydrogen gas in the air at room temperature. The nanosensor has selectivity for other gases such as oxygen, methane, carbon monoxide and liquid propane gas. The ZnO nanorod sensors of the present invention also operate at low power of less than 5 microwatts.
机译:公开了使用聚焦的离子束(FIB)系统的腔室中的原位提离技术,由单个直的和分支的,三脚架形的ZnO纳米棒对氢气纳米传感器装置的纳米制造。自组装的ZnO支化纳米棒已经通过使用水溶液沉积方法和快速热处理的经济有效且快速的合成途径进行了生长。通过X射线衍射,扫描电子显微镜,能量色散X射线光谱,透射电子显微镜和显微拉曼光谱分析了ZnO纳米棒结构的性质。获得了高质量的ZnO纳米棒,用于构建纳米器件的成功率为90%。所制造的纳米传感器可以在室温下测量空气中150 ppm的氢气。纳米传感器对其他气体(例如氧气,甲烷,一氧化碳和液态丙烷气体)具有选择性。本发明的ZnO纳米棒传感器还以小于5微瓦的低功率工作。

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