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Luminescence properties of ZnS phosphor nanocrystals prepared by the laser-induced gas-evaporation method

机译:激光诱导气相蒸发法制备的ZnS荧光粉纳米晶体的发光特性

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摘要

Nanocrystalline particles of ZnS:(Ag, Al) semiconductor phosphor, whose sizes are mostly 3–5 nm in diameter, are prepared by the gas-evaporation method with cw CO2 laser heating. The Raman scattering spectrum as well as the transmission electron microscope observation demonstrates that the crystallization of the nanoparticles was caused successfully through the gas-phase condensation. Under irradiation of ultraviolet light, the nanoparticles exhibit blue luminescence, as in the case of the starting material of ZnS:(Ag, Al) bulk powder. The peak of the luminescence spectrum of the nanoparticles shifts to lower energy with increasing delay time and also with decreasing excitation intensity, showing that the luminescence originates from the donor–acceptor pair recombination. However, it is concluded that the luminescence of the nanoparticles is not ascribed to the blue Ag luminescence mechanism responsible for the luminescence of the bulk powder, by taking into account the spatial confinement of an electron trapped at the donor and a hole at the acceptor. It is argued that the luminescence mechanism of the nanoparticles is the so called self-activated luminescence, which involves zinc vacancies.
机译:ZnS:(Ag,Al)半导体荧光粉的纳米晶体颗粒,其直径大多为3–5 nm,是通过采用气相CO2激光加热的气体蒸发法制备的。拉曼散射光谱以及透射电子显微镜观察表明,纳米颗粒的结晶是通过气相缩合成功引起的。在ZnS:(Ag,Al)散装粉末的起始材料的情况下,在紫外线照射下,纳米颗粒显示出蓝色发光。纳米粒子的发光光谱的峰随着延迟时间的增加和激发强度的降低而转移到较低的能量,这表明发光来自供体-受体对的重组。然而,得出结论,通过考虑在给体处捕获的电子和在受体处的空穴的空间限制,纳米颗粒的发光不归因于负责散装粉末的发光的蓝色Ag发光机理。认为纳米颗粒的发光机理是所谓的自激活发光,其涉及锌空位。

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