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Time-resolved investigation of bright visible wavelength luminescence from sulfur-doped ZnO nanowires and micropowders

机译:硫掺杂ZnO纳米线和微粉的可见光可见光的时间分辨研究

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摘要

Sulfur-doped zinc oxide (ZnO) nanowires grown on gold-coated silicon substrates inside a horizontal tube furnace exhibit remarkably strong visible wavelength emission with a quantum efficiency of 30%, an integrated intensity 1600 times stronger than band edge ultraviolet emission, and a spectral distribution that closely matches the dark-adapted human eye response. By comparatively studying sulfur-doped and undoped ZnO micropowders, we clarify how sulfur doping and nanostructuring affect the visible luminescence and the underlying energy transfer mechanisms.
机译:在水平管式炉内镀金的硅基板上生长的掺杂硫的氧化锌(ZnO)纳米线表现出非常强的可见光发射,量子效率为30%,积分强度比带边紫外发射强1600倍,并且光谱分布与暗适应的人眼反应非常接近。通过比较研究硫掺杂和未掺杂的ZnO微粉,我们阐明了硫掺杂和纳米结构如何影响可见光和潜在的能量转移机制。

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