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首页> 外文期刊>The Journal of Chemical Physics >Direct role of surface oxygen vacancies in visible light emission of tin dioxide nanowires
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Direct role of surface oxygen vacancies in visible light emission of tin dioxide nanowires

机译:表面氧空位在二氧化锡纳米线可见光发射中的直接作用

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摘要

Tin dioxide (SnO2) nanowires exhibit a strong visible photoluminescence that is not observed in bulk crystalline SnO2. To explain such effect, oxygen vacancies are often invoked without clarifying if they represent the direct origin of luminescence or if their presence triggers other radiative processes. Here we report an investigation of the nature of the visible light emission in SnO2 nanowires, showing that both experimental and theoretical ab initio analyses support the first hypothesis. On the basis of photoluminescence quenching analysis and of first-principles calculations we show that surface bridging oxygen vacancies in SnO2 lead to formation of occupied and empty surface bands whose transition energies are in strong agreement with luminescence features and whose luminescence activity can be switched off by surface adsorption of oxidizing molecules. Finally, we discuss how such findings may explain the decoupling between "electrical-active" and "optical-active" states in SnO2 gas nanosensors G. Faglia , Appl. Phys. Lett. 86, 011923 (2005).
机译:二氧化锡 (SnO2) 纳米线表现出强烈的可见光致发光,这在块状结晶 SnO2 中是没有观察到的。为了解释这种效应,氧空位经常被调用,而没有澄清它们是否代表发光的直接来源,或者它们的存在是否触发了其他辐射过程。在这里,我们报告了对 SnO2 纳米线中可见光发射性质的研究,表明实验和理论从头开始分析都支持第一个假设。在光致发光猝灭分析和第一性原理计算的基础上,我们发现SnO2中的表面桥接氧空位导致占据和空的表面带的形成,其转变能与发光特征高度吻合,其发光活性可以通过氧化分子的表面吸附来关闭。最后,我们讨论了这些发现如何解释SnO2气体纳米传感器中“电活性”和“光活性”状态之间的解耦[G. Faglia,Appl. Phys. Lett. 86,011923(2005)]。

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