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首页> 外文期刊>Surface review and letters >SYNTHESIS OF HIGHLY STABLE SILVER-LOADED VERTICAL ZnO NANOWIRES ARRAY AND ITS ACETYLENE SENSING PROPERTIES
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SYNTHESIS OF HIGHLY STABLE SILVER-LOADED VERTICAL ZnO NANOWIRES ARRAY AND ITS ACETYLENE SENSING PROPERTIES

机译:高度稳定的银负载垂直ZnO纳米线阵列的合成及其对乙炔的传感性能

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A silver-loaded one-dimensional (1D) vertical ZnO nanowires (NWs) array synthesized by a facile seed mediated hydrothermal-RF magnetron sputtering method has been investigated for the fabrication of a highly stable and reproducible acetylene (C2H2) gas sensor. Successful immobilization of silver nanoparticles (NPs) as a sensitizer on the ZnO NWs array significantly enhanced the C2H2 sensing properties and showed a stable sensing performance. The grown structure exhibited high response magnitude (30.8 at 1000 ppm), short response time (43 s) and excellent selectivity at 220 degrees C. The enhanced performance can probably be accounted for the effect of combining the highly orientated ZnO NWs and catalytically active silver-based network. The superior sensing features toward C2H2 along with broad detection range (1-1000 ppm), outstanding stability and excellent reproducibility indicate that the sensor is a promising candidate for practical applications.
机译:研究了一种通过简便的种子介导的水热-RF磁控溅射方法合成的载银一维(1D)垂直ZnO纳米线(NWs)阵列,用于制造高度稳定且可重现的乙炔(C2H2)气体传感器。成功地将银纳米颗粒(NPs)作为敏化剂固定在ZnO NWs阵列上,显着增强了C2H2感测性能,并显示了稳定的感测性能。生长的结构表现出高响应强度(1000 ppm时为30.8),响应时间短(43 s)和在220摄氏度下具有出色的选择性。增强的性能可能可以归因于高度取向的ZnO NW和催化活性银的结合作用基于网络。对C2H2的出色传感功能以及宽广的检测范围(1-1000 ppm),出色的稳定性和出色的重现性表明该传感器是实际应用的有希望的候选者。

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