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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Computational Characterization of Redox Non-Innocence in Cobalt-Bis(Diaryldithiolene)-Catalyzed Proton Reduction
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Computational Characterization of Redox Non-Innocence in Cobalt-Bis(Diaryldithiolene)-Catalyzed Proton Reduction

机译:钴-双(二芳基二硫代烯)催化的质子还原中氧化还原非纯的计算表征

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Localized orbital bonding analysis (LOBA) was employed to probe the oxidation state in cobalt-bis(diaryldithiolene)-catalyzed proton reduction in nonaqueous media. LOBA calculations provide both the oxidation state and chemically intuitive views of bonding in cobalt-bis(diaryldithiolene) species and therefore allow characterization of the role of the redox non-innocent dithiolene ligand. LOBA results show that the reduction of the monoanion species [1Br](-) is metal-centered and gives a cobalt(II) ion species, [1Br](2-), coordinated to two dianionic ene-1,2-dithiolates. This electronic configuration is in agreement with the solution magnetic moment observed for the analogous salt [1F](2-) (mu(eff) = 2.39 mu(B)). Protonation of [1Br](2-) yields the cobalt(III)-hydride [1Br(CoH)](-) species in which the Co-H bond is computed to be highly covalent (Lowdin populations close to 0.50 on cobalt and hydrogen atoms). Further reduction of [1Br(CoH)](-) forms a more basic cobalt(II)-H intermediate [1Br(CoH)](2-) (S = 0) from which protonation at sulfur gives a S-H bond syn to the Co-H bond. Formation of a cobalt-dihydrogen [1Br(CoH2)](-) intermediate is calculated to occur via a homocoupling (H-center dot + H-center dot -> H-2) step with a free energy of activation of 5.9 kcal/mol in solution (via C-PCM approach).
机译:局部轨道键合分析(LOBA)用于探测非水介质中钴-双(二芳基二硫代烯烃)催化的质子还原中的氧化态。 LOBA计算提供了钴-双(二芳基二硫代烯)物种中键的氧化态和化学直观视图,因此可以表征氧化还原非纯二硫代烯配体的作用。 LOBA结果表明,单阴离子物种[1Br](-)的还原是以金属为中心的,并给出了钴(II​​)离子物种[1Br](2-),与两个双阴离子烯-1,2-二硫代酸酯配位。该电子构型与类似盐[1F](2-)的溶液磁矩一致(mu(eff)= 2.39 mu(B))。 [1Br](2-)的质子化生成氢化钴(III)[1Br(CoH)](-)物种,其中计算出的Co-H键具有很高的共价性(钴和氢中的Lowdin群体接近0.50原子)。 [1Br(CoH)](-)的进一步还原形成更碱性的钴(II)-H中间体[1Br(CoH)](2-)(S = 0),硫原子上的质子化使该中间体形成一个SH键syn氢键钴-二氢[1Br(CoH2)](-)中间体的形成经计算是通过均聚物偶联(H中心点+ H中心点-> H-2)步骤进行的,其活化能为5.9 kcal /溶液中的摩尔(通过C-PCM方法)。

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