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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Tuning the electronic coupling in Mo_2–Mo_2 systems by variation of the coordinating atoms of the bridging ligands
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Tuning the electronic coupling in Mo_2–Mo_2 systems by variation of the coordinating atoms of the bridging ligands

机译:通过改变桥联配体的配位原子来调节Mo_2–Mo_2系统中的电子耦合

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Three novel [Mo_2]–bridge–[Mo_2] complexes were synthesized by a convergent assembling reaction of the dimetal precursor Mo_2(DAniF)_3(O_2CCH_3) (DAniF = N,N’-di(p-anisyl)formamidinate) with the bridging ligands terephthalamidine, terephthalamide and dithioterephthalamide. The structures of these compounds, [Mo_2(DAniF)_3]_2[μ-1,4-{C(E)NH}_2-C_6H_4] (E = NH (1), O (2) or S (3)), were determined, either by X-ray crystallography or ~1H NMR spectroscopy, to be the analogues of the terephthalate bridged dimolybdenum dimer. These compounds are structurally and electronically closely related by having the same structural skeleton and similar bonding parameters, which allowed us to analyze the differences between N, O and S atoms on the bridging ligand in promoting electronic interaction between the two [Mo_2] units. In the electronic spectra, the metal to ligand charge transfer absorption bands, attributed to the HOMO (dδ) → LUMO (pπ~*) transition, was red shifted as the variable atoms change from N to O to S. The mixedvalence species 1~+, 2~+ and 3~+, generated by one-electron oxidation of the neutral precursors and measured in situ, exhibited characteristic intervalence absorption bands, for which the energy and halfheight bandwidth decreased from 1~+ to 3~+. Therefore, in comparison to O atoms, S atoms are capable of enhancing the electronic coupling between the two [Mo_2] units, and the incorporation of N atoms to the bridging ligands slightly diminished the metal–metal interaction. The molecular structures and spectroscopic properties of these compounds were simulated by theoretical calculations at DFT level on the simplified models, which gave results consistent with the experimental observations.
机译:通过双金属前体Mo_2(DAniF)_3(O_2CCH_3)(DAniF = N,N'-di(p-茴香基)甲酰胺基)的收敛组装反应,合成了三种新颖的[Mo_2] –桥– [Mo_2]配合物配体对苯二甲idine,对苯二甲酰胺和二硫代对苯二甲酰胺。这些化合物[Mo_2(DAniF)_3] _2 [μ-1,4-{C(E)NH} _2-C_6H_4]的结构(E = NH(1),O(2)或S(3))通过X-射线晶体学或〜1H NMR光谱法确定的是,是对苯二甲酸酯桥连的二钼二聚体的类似物。这些化合物通过具有相同的结构骨架和相似的键合参数在结构上和电子上紧密相关,这使我们能够分析桥接配体上N,O和S原子之间促进两个[Mo_2]单元之间电子相互作用的差异。在电子光谱中,当可变原子从N变为O到S时,归因于HOMO(dδ)→LUMO(pπ〜*)跃迁的金属到配体的电荷转移吸收带发生了红移。混合价态1〜由中性前体的单电子氧化产生并在原位测量的+,2〜+和3〜+表现出特征性的间隔吸收带,其能量和半高带宽从1〜+降低到3〜+。因此,与O原子相比,S原子能够增强两个[Mo_2]单元之间的电子耦合,并且N原子与桥连配体的结合会略微减少金属与金属的相互作用。这些化合物的分子结构和光谱性质在简化模型上通过理论计算在DFT级别上进行了模拟,其结果与实验观察结果一致。

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