Suppr超能文献

使用破缺对称性密度泛函理论计算交换耦合过渡金属配合物的电子顺磁共振参数:应用于MnIII/MnIV模型化合物

Calculating the electron paramagnetic resonance parameters of exchange coupled transition metal complexes using broken symmetry density functional theory: application to a MnIII/MnIV model compound.

作者信息

Sinnecker Sebastian, Neese Frank, Noodleman Louis, Lubitz Wolfgang

机构信息

Max-Planck-Institut für Bioanorganische Chemie, Stiftstr. 34-36, D-45470 Mülheim an der Ruhr, Germany.

出版信息

J Am Chem Soc. 2004 Mar 3;126(8):2613-22. doi: 10.1021/ja0390202.

Abstract

The capability of the density functional broken symmetry approach for the calculation of various EPR parameters of exchange coupled metal clusters is demonstrated by studying the experimentally well-investigated Mn(III)Mn(IV)(mu-O)(2)(mu-OAc)DTNE complex. Geometry optimizations of the complex in its broken symmetry and high spin states yielded structures with two distinct manganese sites and geometrical parameters in good agreement with the X-ray structure. Exchange coupling constants were calculated from the energy differences between the high spin and broken symmetry states using the Heisenberg spin Hamiltonian. Very good agreement between theory and experiment was achieved with the B3LYP hybrid functional. The g-tensor calculations were performed employing the coupled perturbed Kohn-Sham equations. A strategy for the computation of g-tensor site values is presented and provides single-site g-tensors that are in good agreement with the expectations for Mn(III) and Mn(IV), respectively. Spin projection gave the g-tensor of the coupled manganese complex in very good agreement with the experimental results. Complete (55)Mn hyperfine tensors, including spin-orbit contributions, were calculated and spin-projected. The source of anisotropy in this system could be traced back to the Mn(III) ion in line with the experimental results. The isotropic manganese hyperfine coupling constants were underestimated by factors between 1.4 and 2.5. It is shown that this deficiency is systematic in character and not anchored in the broken symmetry approach. Nuclear quadrupole splitting of the (55)Mn nuclei is shown to be small in this system. In addition, (14)N and (1)H ligand hyperfine data were calculated and compared well with the experimental results. The quality of the extended point-dipole model was demonstrated in application to (1)H anisotropic hyperfine coupling constants.

摘要

通过研究实验上已充分研究的Mn(III)Mn(IV)(μ - O)(2)(μ - OAc)DTNE配合物,证明了密度泛函破缺对称性方法用于计算交换耦合金属簇各种电子顺磁共振(EPR)参数的能力。对该配合物在其破缺对称性和高自旋态下进行几何优化,得到了具有两个不同锰位点的结构,其几何参数与X射线结构吻合良好。使用海森堡自旋哈密顿量,根据高自旋态和破缺对称性态之间的能量差计算交换耦合常数。采用B3LYP杂化泛函,理论与实验取得了很好的一致性。利用耦合微扰Kohn - Sham方程进行g张量计算。提出了一种计算g张量位点值的策略,得到的单位点g张量分别与Mn(III)和Mn(IV)的预期值吻合良好。自旋投影给出的耦合锰配合物的g张量与实验结果非常吻合。计算并自旋投影了完整的(55)Mn超精细张量,包括自旋 - 轨道贡献。与实验结果一致,该体系各向异性的来源可追溯到Mn(III)离子。各向同性锰超精细耦合常数被低估了1.4到2.5倍。结果表明,这种不足具有系统性,并非源于破缺对称性方法。该体系中(55)Mn核的核四极分裂较小。此外,计算了(14)N和(1)H配体超精细数据,与实验结果比较吻合。扩展点偶极模型在应用于(1)H各向异性超精细耦合常数时的质量得到了证明。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验