Computational Investigation of the Spin-Density Asymmetry in Photosynthetic Reaction Center Models from First Principles

被引:14
作者
Artiukhin, Denis G. [1 ]
Eschenbach, Patrick [2 ,3 ]
Neugebauer, Johannes [2 ,3 ]
机构
[1] Aarhus Univ, Dept Chem, DK-8000 Aarhus, Denmark
[2] Westfalische Wilhelms Univ Munster, Organ Chem Inst, Theoret Organ Chem, Corrensstr 40, D-48149 Munster, Germany
[3] Westfalische Wilhelms Univ Munster, Ctr Multiscale Theory & Simulat, Corrensstr 40, D-48149 Munster, Germany
基金
欧盟地平线“2020”;
关键词
PRIMARY ELECTRON-DONOR; DYNAMIC NUCLEAR-POLARIZATION; GAUSSIAN-BASIS SETS; CIDNP MAS NMR; PHOTOSYSTEM-I; TRIPLE-RESONANCE; RADICAL CATIONS; CRYSTAL-STRUCTURE; SINGLE-CRYSTALS; KINETIC-ENERGY;
D O I
10.1021/acs.jpcb.0c02827
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We present a computational analysis of the spin-density asymmetry in cation radical states of reaction center models from photosystem I, photosystem II, and bacteria from Synechococcus elongatus, Thermococcus vulcanus, and Rhodobacter sphaeroides, respectively. The recently developed frozen-density embedding (FDE)-diab methodology [J. Chem. Phys., 2018, 148, 214104] allowed us to effectively avoid the spin-density overdelocalization error characteristic for the standard Kohn-Sham density functional theory and to reliably calculate spin-density distributions and electronic couplings for a number of molecular systems ranging from inner pairs of (bacterio)chlorophyll a molecules in vacuum to large proteins including up to about 2000 atoms. The calculated spin densities show a good agreement with available experimental results and were used to validate reaction center models reported in the literature. Here, we demonstrate that the applied theoretical approach is very sensitive to changes in molecular structures and the relative orientation of molecules. This makes FDE-diab a valuable tool for electronic structure calculations of large photosynthetic models effectively complementing the existing experimental techniques.
引用
收藏
页码:4873 / 4888
页数:16
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