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Prediction Of Molecular Properties And Molecular Spectroscopy With Density Functional Theory: From Fundamental Theory To Exchange-coupling

机译:用密度泛函理论预测分子性质和分子光谱:从基本理论到交换耦合

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摘要

This review provides a detailed account of density functional theory (DFT) and its application to the calculation of molecular properties of inorganic compounds. After introducing some fundamental quantum mechanical concepts, the foundations of DFT and their realization in the framework of the Kohn-Sham construction are described. Following a brief exposition of the computational machinery required to carry out large-scale DFT calculations, the application of analytic derivative theory to DFT is developed in some detail. The cases covered include geometric, electric, magnetic and time-dependent perturbations. The developed theoretical apparatus is then applied to the calculations of molecular structures, vibrational energies as well as a wide variety of properties including absorption, circular dichroism, magnetic circular dichroism, resonance Raman, X-ray absorption, Moessbauer and electron paramagnetic resonance spec-troscopies. Finally, the important subjects of spin state energetics and exchange couplings in oligomeric transition metal clusters is discussed.
机译:这篇综述提供了密度泛函理论(DFT)及其在计算无机化合物分子特性中的应用的详细说明。在介绍了一些基本的量子力学概念之后,描述了DFT的基础及其在Kohn-Sham结构框架中的实现。在简要介绍了进行大规模DFT计算所需的计算机制之后,详细分析了解析导数理论在DFT中的应用。涵盖的情况包括几何,电,磁和时间相关的扰动。然后,将开发的理论仪器应用于分子结构,振动能以及各种性质的计算,包括吸收,圆二色性,磁圆二色​​性,共振拉曼,X射线吸收,Moessbauer和电子顺磁共振谱。最后,讨论了低聚过渡金属簇中自旋态能量和交换耦合的重要问题。

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