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ZnO 及其掺杂团簇的理论研究。

Theoretical investigation of ZnO and its doping clusters.

机构信息

Advanced Photonics Center, School of Electronic Science and Engineering, Southeast University, Nanjing 210096, China.

出版信息

J Mol Model. 2011 May;17(5):1075-80. doi: 10.1007/s00894-010-0814-5. Epub 2010 Jul 28.

Abstract

Four clusters of ZnO, O-Zn-SR (-SR = ligand) and doping ZnO structures (with Cr, Cu, Al atoms) were investigated using density functional theory at theB3LYP/Lanl2dz level. The characteristics of Zn(3)O(3) and Zn(4)O(4) structures, which are the units of experimental wurtzite and zinc blende structures, were found to be similar to those of experimental ZnO nanocrystals. Moreover, the calculated Raman and IR spectra of ZnO clusters were almost consistent with experimental results. Raman spectra were observed to shift to higher frequencies with decreasing numbers of atoms. Both ligands and solvent make the wavelength of absorption peaks shift to blue. All transitions of absorption peaks for these pure clusters were from d to p orbitals. Finally, doping clusters and experimental doping nanocrystals were similar in character. The doping of metal changed the orbital of ZnO nanocrystals. The transitions in doping clusters (Cr-ZnO, Cu-ZnO) are from d to d orbitals, while Al-ZnO clusters have s-p transitions.

摘要

采用密度泛函理论(B3LYP/Lanl2dz 水平)研究了 ZnO、O-Zn-SR(-SR=配体)和掺杂 ZnO 结构(Cr、Cu、Al 原子掺杂)的四个簇。Zn(3)O(3)和 Zn(4)O(4)结构(实验 wurtzite 和 zincblende 结构的单元)的特征与实验 ZnO 纳米晶体的特征相似。此外,计算的 ZnO 簇的拉曼和红外光谱与实验结果几乎一致。拉曼光谱观察到随着原子数的减少而向更高频率移动。配体和溶剂都使吸收峰的波长向蓝移。这些纯簇的所有吸收峰跃迁都是从 d 轨道到 p 轨道。最后,掺杂簇和实验掺杂纳米晶体的性质相似。金属掺杂改变了 ZnO 纳米晶体的轨道。掺杂簇(Cr-ZnO、Cu-ZnO)中的跃迁是从 d 轨道到 d 轨道,而 Al-ZnO 簇则有 s-p 跃迁。

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