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The role of neutral and ionized oxygen defects in the emission of tin oxide nanocrystals for near white light application

机译:中性和离子化氧缺陷在近白光应用的氧化锡纳米晶体发射中的作用

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摘要

Tin oxide (SnO2) nanocrystals (NCs) based phosphor was synthesized by a green chemistry microwave-assisted hydrothermal method at different reactor pressures. The x-ray diffraction analysis showed that a single rutile SnO2 phase with a tetragonal lattice structure was formed. The photoluminescence emission was measured for He-Cd laser excitation at 325 nm and it showed a broad band emission from 400 to 800 nm for all the synthesized reactor pressures. The broad emission spectra were due to the creation of various oxygen and tin defects as confirmed by x-ray photoelectron spectroscopy data. The origin of the emission in the SnO2 NCs is discussed with the help of an energy band diagram. Analysis suggests that the visible emission of SnO2 NCs is due to a transition of an electron from a level close to the conduction band edge to a deeply trapped hole in the SnO2 NCs. The NCs were found to be suitable for warm near white light emission device applications.
机译:通过绿色化学微波辅助水热法在不同反应器压力下合成了基于氧化锡(SnO2)纳米晶体(NCs)的荧光粉。 X射线衍射分析表明,形成具有四方晶格结构的单一金红石SnO 2相。对于在325 nm处的He-Cd激光激发,测量了光致发光发射,并且在所有合成的反应器压力下,它都显示了从400至800 nm的宽带发射。宽的发射光谱是由于X射线光电子能谱数据证实的各种氧和锡缺陷的产生。借助能带图讨论了SnO2 NCs中发射的起源。分析表明,SnO2 NCs的可见光发射是由于电子从接近导带边缘的能级过渡到SnO2 NCs中的深陷空穴。发现NC适用于暖白光发射设备。

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