胶体溶液中制备稀土掺杂ZnO纳米晶体的光学和结构特性

Photochem Pub Date : 2022-07-02 DOI:10.3390/photochem2030036
M. Toma, O. Selyshchev, Y. Havryliuk, A. Pop, D. Zahn
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引用次数: 7

摘要

采用软化学方法在环境气氛中合成了掺Nd、Gd和Er的ZnO纳米晶体。获得了纤锌矿相的假球形和六边形纳米晶体(NC),平均尺寸为(7.4±1.7)nm。通过X射线荧光(XRF)光谱证实了稀土(RE)掺杂剂的存在。ZnO纳米晶体同时表现出窄激子和宽陷阱/表面相关光致发光(PL),这两者都受到RE原子掺杂的影响。掺杂降低了总PL强度,比宽带PL更大程度地抑制了激子发射。此外,掺杂导致陷阱/表面相关发射的蓝移,而激子峰的能量保持不变。共振拉曼光谱还证实了ZnO NCs的纤锌矿相,并揭示了掺杂时A1-LO模式向较低频率的移动,这可能是由RE原子的质量效应、点缺陷和电荷载流子浓度的增加引起的。光谱与Voigt剖面的拟合显示,先前理论预测的纤锌矿-ZnO相的两种表面光学(SO)声子模式具有更好的结果。RE掺杂对PL和拉曼光谱的影响可以通过将RE离子掺入ZnO纳米结构来解释,其中掺杂剂充当非辐射缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical and Structural Characteristics of Rare Earth-Doped ZnO Nanocrystals Prepared in Colloidal Solution
ZnO nanocrystals doped with Nd, Gd, and Er were synthesized using a soft chemical process in ambient atmosphere. Pseudospherical and hexagonal nanocrystals (NC) of the wurtzite phase with a mean size of (7.4 ± 1.7) nm were obtained. The presence of rare earth (RE) dopants was confirmed by X-ray fluorescence (XRF) spectroscopy. The ZnO nanocrystals exhibited simultaneously narrow excitonic- and broad trap/surface-related photoluminescence (PL), both of which were affected by doping with RE atoms. Doping reduced the total PL intensity, suppressing the excitonic emission by a greater extent than the broad band PL. Also, doping resulted in a blue shift of the trap/surface-related emission, while the energy of the excitonic peak remained unchanged. Resonant Raman spectra additionally confirmed the wurtzite phase of ZnO NCs and revealed a shift of the A1-LO mode towards lower frequency upon doping that could be caused by the mass effect of RE atoms, point defects, and increases in charge carrier concentration. Fitting of the spectra with Voigt profiles showed better results with two surface optical (SO) phonon modes that were previously theoretically predicted for the wurtzite ZnO phase. The influence of RE doping on PL and Raman spectra can be explained by the incorporation of RE ions into the ZnO nanostructures, where the dopants act as non-radiative defects.
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CiteScore
3.60
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