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A DFT-based mechanistic proposal for the light-driven insertion of dioxygen into Pt(ii)–C bonds

机译:基于DFT的光驱将双氧插入Pt(ii)-C键的机制建议

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摘要

The photocatalyzed insertion of dioxygen into the Pt(ii)–methyl bond in terpyridine platinum complexes has been shown to proceed efficiently, but its mechanism remains a challenge. In particular, there are serious counter-intuitive differences in the reactivity of structurally similar complexes. M06 calculations in solvent with a valence double-ζ basis set supplemented by polarization and diffusion shells (benchmarked against ωB97x-D calculations with a larger basis set) are able to provide a satisfactory mechanistic answer. The proposed mechanism starts with the absorption of a photon by the metal complex, which then evolves into a triplet state that reacts with the triplet dioxygen fragment. A variety of possible reaction paths have been identified, some leading to the methylperoxo product and others reverting to the reactants, and the validity of some of these paths has been confirmed by additional experiments. The balance between the barriers towards productive and unproductive paths reproduces the diverging experimental behavior of similar complexes and provides a general mechanistic picture for these processes.
机译:已经证明光催化将双氧插入到吡啶吡啶铂配合物中的Pt(ii)-甲基键中是有效的,但是其机理仍然是一个挑战。特别是,结构相似的配合物的反应性存在严重的违反直觉的差异。价双ζ基集的溶剂中的M06计算(通过极化壳和扩散壳来补充)(以更大基集的ωB97x-D计算为基准)能够提供令人满意的机理答案。所提出的机理始于金属络合物对光子的吸收,然后金属络合物演变成三线态,该三线态与三线态双氧片段反应。已经确定了多种可能的反应路径,其中一些导致甲基过氧产物,而另一些则转化为反应物,并且其中一些路径的有效性已通过其他实验得到了证实。在通向生产性路径和非生产性路径的障碍之间的平衡再现了类似配合物的不同实验行为,并为这些过程提供了一般的机理图。

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