Kotsis Konstantinos, Staemmler Volker
Lehrstuhl für Theoretische Chemie, Ruhr-Universität Bochum, 44780, Bochum, Germany.
Phys Chem Chem Phys. 2006 Apr 7;8(13):1490-8. doi: 10.1039/b515699h. Epub 2006 Feb 10.
O1s core level binding energies of oxygen atoms in bulk ZnO, at different ZnO surfaces, and in some Zn oxo compounds were calculated by means of wave function based quantum chemical ab initio methods. Initial and final state effects were obtained by Koopmans' theorem and at the DeltaSCF level, respectively. After correction for scalar relativistic effects and electron correlation, the calculated XPS peak positions are in excellent agreement with the available experimental data for all systems included in the present study. The O1s core level shifts between an isolated H2O molecule and the Zn oxo compounds or ZnO, as well as between oxygen atoms in bulk ZnO and at various ZnO surfaces, can be understood by means of Madelung potentials and electronic relaxation or screening. XPS spectra were calculated for various cluster models which are designed to describe different possibilities of stabilizing the polar O-terminated ZnO(0001) surface by the adsorption of H atoms. The experimental spectra are only compatible with the theoretical results for the fully hydroxylated H-ZnO(0001) surface exhibiting a (1x1) surface structure.
采用基于波函数的量子化学从头算方法,计算了块状ZnO、不同ZnO表面以及一些锌氧化物化合物中氧原子的O1s 芯能级结合能。初态和终态效应分别通过库普曼定理和在DeltaSCF水平上获得。在对标量相对论效应和电子关联进行校正后,计算得到的XPS峰位置与本研究中所有系统的现有实验数据高度吻合。孤立的H2O分子与锌氧化物化合物或ZnO之间,以及块状ZnO中的氧原子与各种ZnO表面之间的O1s芯能级位移,可以通过马德隆势以及电子弛豫或屏蔽来理解。针对各种团簇模型计算了XPS光谱,这些团簇模型旨在描述通过H原子吸附来稳定极性O端接的ZnO(0001)表面的不同可能性。实验光谱仅与具有(1x1)表面结构的完全羟基化H-ZnO(0001)表面的理论结果相符。