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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Heisenberg Exchange in Dinuclear Manganese Complexes:A Density Functional Theory Study
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Heisenberg Exchange in Dinuclear Manganese Complexes:A Density Functional Theory Study

机译:双核锰配合物中的海森堡交换:密度泛函理论研究

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This work presents a systematic investigation of the performance of broken symmetry density functional theory for the evaluation of Heisenberg exchange constants.We study dinuclear Mn~(IV)-Mn~(IV) complexes with bis(mu-oxo),bis(mu-oxo)(mu-carboxylato),and tris(mu-oxo) cores for this purpose,as these are of fundamental biological interest as well as being potential precursors for molecular magnets based on manganese complexes,the so-called Mn_(12) magnets.The obtained results indicate that quantitative agreement with available experimental data for the Heisenberg exchange constants can be achieved for most of the investigated complexes but also that there are significant failures for some compounds.We evaluate factors influencing the accuracy of obtained results and examine effects of different mappings between broken symmetry and Heisenberg Hamiltonian states in an attempt to formulate a reliable recipe for the evaluation of magnetic coupling in these complexes.An assessment of the bonding situation in the molecular system under investigation is found crucial in choosing the appropriate scheme for evaluation of the Heisenberg exchange constants.
机译:这项工作对破坏对称对称泛函理论用于评估海森堡交换常数的性能进行了系统的研究。我们研究了双核Mn〜(IV)-Mn〜(IV)与bis(mu-oxo),bis(mu-羰基)和三(羰基)核,因为它们具有重要的生物学意义,并且是基于锰配合物的分子磁体(即Mn_(12)磁体)的潜在前体所得结果表明,大多数所研究的配合物均可实现与海森堡交换常数的现有实验数据的定量一致性,但某些化合物也存在重大失败。我们评估了影响所得结果准确性的因素并检验了打破对称性和海森堡哈密顿状态之间的不同映射,以试图为评估这些复合物中的磁耦合制定可靠的配方。发现所研究分子系统中的情况对于选择合适的方案评估海森堡交换常数至关重要。

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