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Understanding on the selective carbon monoxide sensing characteristics of copper oxide-zinc oxide composite thin films

机译:了解氧化铜-氧化锌复合薄膜的选择性一氧化碳传感特性

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In the present work we have demonstrated CuO-ZnO composite thin film with optimized CuO content selectively sense carbon monoxide gas. The 'n'-type gas sensing characteristics of these composite films are changed to 'p'-type beyond 8.0 mol% CuO contents. Through the analyses of photoluminescence spectra in conjunction with XPS we have demonstrated that up to 33.0 mol% CuO contents the gas sensing characteristics of the composite films are controlled by the type of point defects (oxygen vacancies, zinc interstitials, and copper vacancies) in CuO and ZnO grains. We have hypothesized that these point defects help to chemi-absorb oxygen and CO preferentially on ZnO and CuO grains respectively to yield selective carbon monoxide sensing of ZnO-CuO composite film with 7.0 mol% CuO contents. Beyond 33.0 mol% CuO contents the effect of point defects diminishes and the gas sensing characteristic are grossly controlled by the nature of the CuO grains covering ZnO grains in the composite films. Our work provides comprehensive insight towards the understanding of the gas sensing characteristics of hetero-composite thin films deposited using a mixed precursor sol.
机译:在目前的工作中,我们已经证明了具有优化的CuO含量的CuO-ZnO复合薄膜可以选择性地感应一氧化碳气体。这些复合膜的“ n”型气体感测特性在CuO含量超过8.0 mol%时变为“ p”型。通过结合XPS进行的光致发光光谱分析,我们证明了CuO含量高达33.0 mol%时,复合膜的气敏特性受CuO中点缺陷类型(氧空位,锌间隙和铜空位)的控制。和ZnO晶粒。我们假设这些点缺陷有助于分别在ZnO和CuO晶粒上优先化学吸收氧气和CO,从而产生具有7.0 mol%CuO含量的ZnO-CuO复合膜的选择性一氧化碳传感。超过33.0mol%的CuO含量,点缺陷的影响减小,并且通过覆盖复合膜中的ZnO晶粒的CuO晶粒的性质来严格控制气体感测特性。我们的工作为了解使用混合前体溶胶沉积的异质复合薄膜的气体传感特性提供了全面的见解。

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