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The effect of Mn~(2+) doping on strcuture and photoluminescence of ZnO nanofilms synthesized by sol-gel method

机译:Mn〜(2+)掺杂对溶胶-凝胶法合成ZnO纳米薄膜的结构和光致发光的影响

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摘要

Mn-doped ZnO nanocrystallite thin films with different Mn contents were synthesized by sol-gel method. Thermal annealing processes in N_2 ambient at 500 ℃ were employed to improve the film quality. Physical properties were investigated using XRD, PL and EPR. XRD spectra show all the films are hexagonal wurtzite structures and diffraction peaks shift to the big angle with increasing Mn content, which indicates that Mn has entered the ZnO lattice and substituted the Zn site. Small quantity of manganese oxide phase also presents in the spectra. Room-temperature photoluminescence spectra show the ultraviolet emission shift to low-energy side with the increasing Mn content, and the defect-related emissions were passivated by manganese oxide. EPR pattern indicates that Mn~(2+) exist in ZnMnO system.
机译:通过溶胶-凝胶法合成了不同Mn含量的Mn掺杂ZnO纳米微晶薄膜。在500℃的N_2环境下进行热退火处理以提高薄膜质量。使用XRD,PL和EPR研究了物理性能。 XRD谱图表明,所有薄膜均为六方纤锌矿结构,随着Mn含量的增加,衍射峰向大角度偏移,表明Mn已进入ZnO晶格并取代了Zn位点。光谱中也存在少量的氧化锰相。室温光致发光光谱显示,随着Mn含量的增加,紫外线发射向低能侧移动,并且与缺陷有关的发射被氧化锰钝化。 EPR图谱表明ZnMnO体系中存在Mn〜(2+)。

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