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掺锂、钠和钾的立方氧化锌及其与氧化镁固溶体的高压合成

High-Pressure Synthesis of Cubic ZnO and Its Solid Solutions with MgO Doped with Li, Na, and K.

作者信息

Taibarei Nikolai O, Kytin Vladimir G, Konstantinova Elizaveta A, Kulbachinskii Vladimir A, Savilov Serguei V, Mukhanov Vladimir A, Solozhenko Vladimir L, Brazhkin Vadim V, Baranov Andrei N

机构信息

Department of Chemistry, Lomonosov Moscow State University, 119991 Moscow, Russia.

Department of Physics, Lomonosov Moscow State University, 119991 Moscow, Russia.

出版信息

Materials (Basel). 2023 Jul 29;16(15):5341. doi: 10.3390/ma16155341.

Abstract

The possibility of doping ZnO in its metastable rock salt structure with Li, Na, and K intended to act as acceptor dopants was investigated. For the first time, MgZnO alloys and pure ZnO with a rock salt structure doped with Li, Na, and K metals was obtained by high-pressure synthesis from pure oxides with the addition of carbonates or acetates of the corresponding metals as dopant sources. Successful stabilization of the metastable rock salt structure and phase purity were confirmed by X-ray diffraction. Transmission electron microscopy was used to study the particle size of nanocrystalline precursors, while the presence of Li, Na, and K metals in rock salt ZnO was detected by electron energy-loss spectroscopy and X-ray photoelectron spectroscopy in MgZnO alloys. Electron paramagnetic resonance measurements revealed the acceptor behavior of Li, Na, and K dopants based on the influence of the latter on native defects and natural impurities in ZnO-MgO alloys. In addition, diffuse reflectance spectroscopy was used to derive band gaps of quenched rock salt ZnO and its alloys with MgO.

摘要

研究了在亚稳岩盐结构的ZnO中掺杂Li、Na和K作为受主掺杂剂的可能性。首次通过高压合成,以纯氧化物为原料,添加相应金属的碳酸盐或醋酸盐作为掺杂源,获得了具有岩盐结构的MgZnO合金和掺杂Li、Na和K金属的纯ZnO。通过X射线衍射证实了亚稳岩盐结构的成功稳定和相纯度。利用透射电子显微镜研究了纳米晶前驱体的粒径,同时通过电子能量损失谱和X射线光电子能谱检测了MgZnO合金中岩盐ZnO中Li、Na和K金属的存在。电子顺磁共振测量揭示了Li、Na和K掺杂剂的受主行为,这是基于它们对ZnO-MgO合金中固有缺陷和天然杂质的影响。此外,利用漫反射光谱法得出了淬火岩盐ZnO及其与MgO合金的带隙。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41f5/10420218/316d72625a24/materials-16-05341-g001.jpg

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