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Characterization and gas sensing performances of noble metals decorated CuO nanorods

机译:贵金属修饰的CuO纳米棒的表征和气敏性能

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In this work, hydrogen and volatile organic compounds (VOCs) gas sensing properties of Pt/Pd decorated p-type CuO nanorods were investigated. CuO nanorods were hydrothermally grown on IDEs (interdigital electrodes) fabricated via photolithography and decorations of Pt/Pd on CuO nanorods were performed by RF magnetron sputtering with three decoration times (15 s, 30 s and 42 s). Morphological and structural characterizations were carried out by X-ray diffraction (XRD), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS) and X-ray photoelectron spectroscopy (XPS). Sensor characteristics of pristine and decorated nanorods were investigated for the detection of hydrogen and some VOCs. Sensing experiments show that optimum Pt and Pd decoration substantially enhanced ethanol and hydrogen sensitivity, respectively. Sensor response of optimum Pt decorated CuO nanorods to ethanol was about 60 fold higher than that of the pristine. Gas sensing mechanism highlighting the enhanced sensitivity to ethanol and hydrogen with Pt and Pd decoration is discussed in correlation with detailed XPS studies.
机译:在这项工作中,研究了Pt / Pd装饰的p型CuO纳米棒的氢和挥发性有机化合物(VOCs)气敏特性。在通过光刻技术制作的IDE(叉指电极)上水热生长CuO纳米棒,并通过RF磁控溅射以三个装饰时间(15 s,30 s和42 s)进行Cut纳米棒上Pt / Pd的装饰。通过X射线衍射(XRD),扫描电子显微镜(SEM),能量色散X射线光谱(EDS)和X射线光电子光谱(XPS)进行了形态和结构表征。研究了原始的和装饰的纳米棒的传感器特性,用于检测氢气和一些VOC。传感实验表明,最佳的Pt和Pd装饰分别显着增强了乙醇和氢的敏感性。最佳的Pt装饰的CuO纳米棒对乙醇的传感器响应比原始的传感器响应高约60倍。与详细的XPS研究相关,讨论了气体感应机制,该机制强调了通过Pt和Pd装饰提高对乙醇和氢的敏感性。

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