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The Luminescence Properties of ZnO:AI Nanopowders Obtained by Sol-gel, Plasma and Vaporization-condensation Methods

机译:ZnO:溶胶 - 凝胶,等离子体和汽化缩合方法获得的ZnO:Ai纳米孔的发光性能

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ZnO nanocrystals were synthesized and characterized by XRD and SEM methods. The luminescence spectra and decay kinetics were studied under pulsed laser excitation (266 nm, 8 ns). ZnO and ZnO:Al powders were prepared by sol-gel and plasma chemical synthesis. These powders were used as a raw material for the SPVD (Solar Physical Vapour Deposition) process. In this way, the vaporisation-condensation phenomenon (VC) led to the formation of ZnO whiskers and nanopowders. The luminescence properties of the VC nanopowders were studied and compared to those displayed by the raw material. The Al dopant, present in the raw powders as a solid solution and ZnAl_2O_4 precipitates, was only present as Al ions in the nanopowders after the SPVD. The blue luminescence intensity increased considerably after SPVD. The whiskers type microstructures showed nonlinear blue luminescence dependent on the excitation pulse density.
机译:通过XRD和SEM方法合成ZnO纳米晶体和特征。在脉冲激光激发(266nm,8ns)下研究了发光光谱和衰减动力学。 ZnO和ZnO:通过溶胶 - 凝胶和血浆化学合成制备Al粉末。将这些粉末用作SPVD(太阳能气相沉积)方法的原料。以这种方式,蒸发 - 冷凝现象(Vc)导致ZnO晶须和纳米粉末的形成。研究了VC纳米粉粉的发光性质,并与原料显示的那些相比。作为固溶体和ZNAL_2O_4沉淀物的原料粉末中存在的Al掺杂剂仅在SPVD之后仅作为Al离子存在于纳米粉末中。 SPVD后,蓝色发光强度显着增加。晶须类型微结构显示非线性蓝色发光,取决于激发脉冲密度。

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