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Atom centered potentials for the description and the design of chemical compounds within density functional theory

机译:以原子为中心的势能,用于描述和设计密度泛函理论中的化合物

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摘要

Within the Born-Oppenheimer picture of the electronic Schrödinger equation the external potential due to the nuclei influences the resulting expectation values during the self consistent field procedure. In this thesis, the optimization and the benefit of atom centered potentials for an improved description and design of molecules is studied using density functional theory (DFT). It is shown that atom centered potentials can be used to increase the accuracy of the description of molecular properties as well as to generally explore chemical space rationally for structures which exhibit desired properties. The wide range of possible applications is illustrated by addressing several issues. First, an automated procedure is proposed for the design of optimal link pseudopotentials for quantum mechanics/molecular mechanics calculations. Secondly, it is shown how to tune variationally atom centered potentials within density functional perturbation theory in order to minimize the deviation in electron density from an arbitrary reference density. Here, a reference density has been chosen which results from the use of a different exchange-correlation potential. Thirdly, London dispersion interactions are mimicked with dispersion corrected atom centered potentials. Fourthly, the transferability of these dispersion corrected atom centered potentials is assessed. Fifthly, an expression for the molecular nuclear chemical potential is derived within the context of conceptual DFT. It offers the possibility to develop a general formulation for rational compound design via gradient based minimization of a property-penalty functional in chemical space.
机译:在电子Schrödinger方程的Born-Oppenheimer图片中,由于原子核造成的外部电势在自洽场过程中影响所得的期望值。本文利用密度泛函理论(DFT)研究了原子中心势的优化及其对分子描述和设计的改进。结果表明,以原子为中心的电势可用于提高描述分子性质的准确性,并通常合理地探索具有所需性质的结构的化学空间。通过解决几个问题,说明了可能的广泛应用。首先,提出了一种自动程序,用于设计量子力学/分子力学计算的最佳链接伪势。其次,显示了如何在密度泛函微扰理论中调整原子中心电势的变化,以使电子密度与任意参考密度的偏差最小。在此,已经选择了参考密度,该参考密度是由于使用了不同的交换相关电位而产生的。第三,伦敦色散相互作用用色散校正的原子中心势模拟。第四,评估这些分散校正的原子居中电位的可转移性。第五,在概念DFT的背景下得出分子核化学势的表达。它提供了通过基于梯度的化学空间中的特性-罚函数的最小化为合理的化合物设计开发通用配方的可能性。

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