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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Quantum chemical modeling of magnetically bistable metal coordination compounds. Synchronization of spin crossover, valence tautomerism and charge transfer induced spin transition mechanisms
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Quantum chemical modeling of magnetically bistable metal coordination compounds. Synchronization of spin crossover, valence tautomerism and charge transfer induced spin transition mechanisms

机译:磁性双稳态金属配位化合物的量子化学建模。自旋交叉,价互变异构和电荷转移引起的自旋跃迁机制的同步

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摘要

It has been shown that the computationally designed bimetallic complexes formed as the adducts of Co-II diketonates and salicylaldiminates with Fe-II chelates of 1,10-phenanthroline-5,6-dione are susceptible to the synchronized thermally induced intramolecular rearrangements between their etectromeric forms Co-Ls(III)-SQ-Fe-Ls(II), Co-Ls(II)-SQ-Fe-HS(II), Co-HS(II)-BQ-Fe-Ls(II), Co-HS(II)-BQ-Fe-HS(II) and also Co-HS(II)-SQ-Fe-Ls(II), which are governed by the spin-crossover (SCO), valence tautomerism (VT) and charge-transfer-induced spin transition (CTIST) mechanisms of spin-state switching. Stability of the adducts with respect to dissociation into components, relative energies and magnetic properties of the etectromers and energy barriers against VT and unprecedented one-step (SCO + VT) rearrangements (estimated as minimum energy crossing points on the seams of the intersection of the corresponding potential energy surfaces) were calculated using the DFT (B3LYP*/6-311++G(d,p)) method. The calculations showed that all these characteristics of the system as well as the energy preferred spin-state switchable mechanisms are very sensitive to the structure of the cobalt diketonate (salicylaldiminate) fragment and can be varied and interchanged by the introduction of electron withdrawing substituents into the ligands.
机译:研究表明,设计合成的双金属配合物是由Co-II二酮和水杨醛与Fe-II螯合物的1,10-菲咯啉-5,6-dione形成的加合物,易受其电异构体之间热同步引起的分子内重排的影响。形成Co-Ls(III)-SQ-Fe-Ls(II),Co-Ls(II)-SQ-Fe-HS(II),Co-HS(II)-BQ-Fe-Ls(II),Co -HS(II)-BQ-Fe-HS(II)以及Co-HS(II)-SQ-Fe-Ls(II),它们受自旋交联(SCO),价互变异构(VT)和自旋状态切换的电荷转移诱导自旋跃迁(CTIST)机制。加合物在离解,离解剂的相对能量和磁性能以及对VT的能垒和前所未有的单步(SCO + VT)重排方面的稳定性(估计为在交点的接缝处的最小能量交叉点)使用DFT(B3LYP * / 6-311 ++ G(d,p))方法计算相应的势能面)。计算表明,系统的所有这些特征以及能量优选的自旋态可转换机制对二酮酸钴(水杨基铝二甲酸酯)片段的结构非常敏感,并且可以通过将吸电子取代基引入分子中而改变和互换。配体。

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