首页> 外文期刊>Journal of Sol-Gel Science and Technology >Effect of seed layer on the growth and the consequent gas sensing characteristics of ZnO nanorod arrays using aqueous chemical growth
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Effect of seed layer on the growth and the consequent gas sensing characteristics of ZnO nanorod arrays using aqueous chemical growth

机译:种子层对使用水性化学生长的ZnO纳米棒阵列生长及其随后的气敏特性的影响

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The ZnO nanorod arrays are grown on the sol-gel-derived seed layer through aqueous chemical growth, and then assembled as gas sensors for detecting carbon monoxide (CO). It is found that the structural and photo-luminescent properties of the ZnO nanorod arrays are different as they are grown on seed layers annealed at different temperature (300-700 °C), which is ascribed to distinct growth kinetics of nanorods on the annealed seed layer. Moreover, the correlation between the exposed surface area and the defect density of those ZnO nanorod arrays points out the intrinsic (interior) defects can dominate the green emission instead of surface defects in the present study. Furthermore, the quantities of chemisorbed oxygen on ZnO nanorod arrays can be estimated through XPS analysis. Consequently, the influence of intrinsic defects and chemisorbed oxygen on the electrical properties and gas sensitivities of ZnO nanorod arrays has been clearly elucidated. It is demonstrated that the more adsorbed oxygen and an appropriate amount of intrinsic defects is advantageous to obtain superior CO gas sensitivity for ZnO nanorod arrays.
机译:ZnO纳米棒阵列通过水性化学生长在溶胶-凝胶衍生的种子层上生长,然后组装为用于检测一氧化碳(CO)的气体传感器。发现ZnO纳米棒阵列的结构和光致发光特性不同,因为它们生长在不同温度(300-700°C)下退火的种子层上,这归因于退火后的种子上纳米棒的不同生长动力学。层。而且,在这些研究中,那些ZnO纳米棒阵列的暴露表面积和缺陷密度之间的相关性指出,本征(内部)缺陷可以主导绿色发射,而不是表面缺陷。此外,可以通过XPS分析估算ZnO纳米棒阵列上化学吸附的氧气量。因此,已经清楚地阐明了固有缺陷和化学吸附的氧对ZnO纳米棒阵列的电性能和气体敏感性的影响。结果表明,对于ZnO纳米棒阵列,吸附更多的氧气和适量的固有缺陷有利于获得优异的CO气体敏感性。

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