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Re-evaluating the Cu K pre-edge XAS transition in complexes with covalent metal–ligand interactions

机译:重新评估具有共价金属-配体相互作用的配合物中的Cu K前缘XAS过渡

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Three [Me2NN]Cu(η2-L2) complexes (Me2NN = HC[C(Me)NAr]2; L2 = PhNO (2), (3), PhCHCH2 (4); Ar = 2,6-Me2-C6H3; ArF = 3,5-(CF3)2-C6H3) have been studied by Cu K-edge X-ray absorption spectroscopy, as well as single- and multi-reference computational methods (DFT, TD-DFT, CASSCF, MRCI, and OVB). The study was extended to a range of both known and theoretical compounds bearing 2p-element donors as a means of deriving a consistent view of how the pre-edge transition energy responds in systems with significant ground state covalency. The ground state electronic structures of many of the compounds under investigation were found to be strongly influenced by correlation effects, resulting in ground state descriptions with majority contributions from a configuration comprised of a Cu(II) metal center anti-ferromagentically coupled to radical anion O2, PhNO, and ligands. In contrast, the styrene complex 4, which displays a Cu K pre-edge transition despite its formal d10 electron configuration, exhibits what can best be described as a Cu(I):(styrene)0 ground state with strong π-backbonding. The Cu K pre-edge features for these complexes increase in energy from 1 to 4, a trend that was tracked to the percent Cu(II)-character in the ground state. The unexpected shift to higher pre-edge transition energies with decreasing charge on copper (QCu) contributed to an assignment of the pre-edge features for these species as arising from metal-to-ligand charge transfer instead of the traditional Cu1s → Cu3d designation.
机译:三个[Me 2 NN] Cu(η 2 -L 2 )络合物(Me 2 NN = HC [C(Me)NAr] 2 ; L 2 = PhNO(2),(3),PhCHCH 2 (4); Ar = 2, 6-Me 2 -C 6 H 3 ; Ar F = 3,5-(CF 3 2 -C 6 H 3 )已通过Cu K-edge X-射线吸收光谱法以及单参考和多参考计算方法(DFT,TD-DFT,CASSCF,MRCI和OVB)。这项研究扩展到了带有2p元素供体的已知化合物和理论化合物的范围,以此作为对具有显着基态价态的系统中边缘前跃迁能量如何响应的一致看法。发现许多正在研究的化合物的基态电子结构受相关效应的强烈影响,从而导致基态描述的主要贡献是由Cu( II )金属中心抗铁电耦合到自由基阴离子O 2 ,PhNO和配体。相反,尽管具有d 10 形式的电子构型但仍显示Cu K前缘跃迁的苯乙烯络合物4表现出最好的Cu(< small> I ):(苯乙烯) 0 基态,具有强π回键。这些配合物的Cu K前缘特征将能量从1增加到4,这一趋势可以追溯到基态Cu( II )-字符的百分比。随着铜( Q Cu )上电荷的减少,意外地转移到较高的边缘过渡能量,这有助于边缘特征的分配这些物种是由于金属到配体的电荷转移而不是传统的Cu 1s →Cu 3d 指定。

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