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采用多组态短程密度泛函理论线性响应方法的可极化嵌入。

Polarizable embedding with a multiconfiguration short-range density functional theory linear response method.

作者信息

Hedegård Erik Donovan, Olsen Jógvan Magnus Haugaard, Knecht Stefan, Kongsted Jacob, Jensen Hans Jørgen Aagaard

机构信息

Laboratorium fur Physikalische Chemie, ETH Zürich, Vladimir Prelog Weg 2, CH-8093 Zürich, Switzerland.

Laboratory of Computational Chemistry and Biochemistry, Ecole Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.

出版信息

J Chem Phys. 2015 Mar 21;142(11):114113. doi: 10.1063/1.4914922.

Abstract

We present here the coupling of a polarizable embedding (PE) model to the recently developed multiconfiguration short-range density functional theory method (MC-srDFT), which can treat multiconfigurational systems with a simultaneous account for dynamical and static correlation effects. PE-MC-srDFT is designed to combine efficient treatment of complicated electronic structures with inclusion of effects from the surrounding environment. The environmental effects encompass classical electrostatic interactions as well as polarization of both the quantum region and the environment. Using response theory, molecular properties such as excitation energies and oscillator strengths can be obtained. The PE-MC-srDFT method and the additional terms required for linear response have been implemented in a development version of Dalton. To benchmark the PE-MC-srDFT approach against the literature data, we have investigated the low-lying electronic excitations of acetone and uracil, both immersed in water solution. The PE-MC-srDFT results are consistent and accurate, both in terms of the calculated solvent shift and, unlike regular PE-MCSCF, also with respect to the individual absolute excitation energies. To demonstrate the capabilities of PE-MC-srDFT, we also investigated the retinylidene Schiff base chromophore embedded in the channelrhodopsin protein. While using a much more compact reference wave function in terms of active space, our PE-MC-srDFT approach yields excitation energies comparable in quality to CASSCF/CASPT2 benchmarks.

摘要

我们在此展示了可极化嵌入(PE)模型与最近开发的多组态短程密度泛函理论方法(MC-srDFT)的耦合,该方法能够处理多组态系统,同时兼顾动态和静态相关效应。PE-MC-srDFT旨在将对复杂电子结构的高效处理与周围环境效应的纳入相结合。环境效应包括经典静电相互作用以及量子区域和环境的极化。利用响应理论,可以获得诸如激发能和振子强度等分子性质。PE-MC-srDFT方法以及线性响应所需的附加项已在Dalton的开发版本中实现。为了根据文献数据对PE-MC-srDFT方法进行基准测试,我们研究了均溶于水溶液中的丙酮和尿嘧啶的低能电子激发。PE-MC-srDFT结果在计算的溶剂位移方面是一致且准确的,并且与常规的PE-MCSCF不同,在单个绝对激发能方面也是如此。为了展示PE-MC-srDFT的能力,我们还研究了嵌入通道视紫红质蛋白中的视黄叉席夫碱发色团。虽然在活性空间方面使用了更为紧凑的参考波函数,但我们的PE-MC-srDFT方法产生的激发能质量与CASSCF/CASPT2基准相当。

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