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不同基于镍(II)-二酮卟啉的金属-配体八面体配合物中单重态-三重态自旋跃迁的理论建模

Theoretical modeling of the singlet-triplet spin transition in different Ni(II)-diketo-pyrphyrin-based metal-ligand octahedral complexes.

作者信息

Farcaş Alex-Adrian, Bende Attila

机构信息

Faculty of Physics, "Babeş-Bolyai" University, Mihail Kogalniceanu Street No. 1, Ro-400084 Cluj-Napoca, Romania.

Molecular and Biomolecular Physics Department, National Institute for Research and Development of Isotopic and Molecular Technologies, Donat Street, No. 67-103, Ro-400293 Cluj-Napoca, Romania.

出版信息

Phys Chem Chem Phys. 2021 Mar 4;23(8):4784-4795. doi: 10.1039/d0cp05366j.

Abstract

The structural stability, charge transfer effects and strength of the spin-orbit couplings in different Ni(ii)-ligand complexes have been studied at the DFT (B3LYP and CAM-B3LYP) and coupled cluster (DLPNO-CCSD(T)) levels of theory. Accordingly, two different, porphyrin- and diketo-pyrphyrin-based four-coordination macrocycles as planar ligands as well as pyridine (or pyrrole) and mesylate anion molecular groups as vertical ligands were considered in order to build metal-organic complexes with octahedral coordination configurations. For each molecular system, the identification of equilibrium geometries and the intersystem crossing (the minimum energy crossing) points between the potential energy surfaces of the singlet and triplet spin states is followed by computing the spin-orbit couplings between the two spin states. Structures, based on the diketo-pyrphyrin macrocycle as the planar ligand, show stronger six-coordination metal-organic complexes due to the extra electrostatic interaction between the positively charged central metal cation and the negatively charged vertical ligands. The results also show that the magnitude of the spin-orbit coupling is influenced by the atomic positions of deprotonations of the ligands, and implicitly the direction of the charge transfer between the ligand and the central metal ion.

摘要

在密度泛函理论(DFT,包括B3LYP和CAM - B3LYP)以及耦合簇理论(DLPNO - CCSD(T))水平上,研究了不同Ni(ii)-配体配合物的结构稳定性、电荷转移效应和自旋 - 轨道耦合强度。因此,考虑了两种不同的、基于卟啉和二酮卟啉的四配位大环作为平面配体,以及吡啶(或吡咯)和甲磺酸根阴离子分子基团作为垂直配体,以构建具有八面体配位构型的金属有机配合物。对于每个分子体系,在确定单重态和三重态自旋态的势能面之间的平衡几何构型和系间窜越(最小能量交叉)点之后,计算两个自旋态之间的自旋 - 轨道耦合。基于二酮卟啉大环作为平面配体的结构,由于带正电的中心金属阳离子与带负电的垂直配体之间存在额外的静电相互作用,显示出更强的六配位金属有机配合物。结果还表明,自旋 - 轨道耦合的大小受配体去质子化的原子位置影响,并且隐含地受配体与中心金属离子之间电荷转移方向的影响。

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