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Solution-phase photochemistry of a [FeFe]hydrogenase model compound: Evidence of photoinduced isomerisation

机译:[FeFe]加氢酶模型化合物的溶液相光化学:光致异构化的证据

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The solution-phase photochemistry of the [FeFe] hydrogenase subsite model (μ-S(CH_2)_3S)Fe_2(CO)_4(PMe_3)_2 has been studied using ultrafast time-resolved infrared spectroscopy supported by density functional theory calculations. In three different solvents, n-heptane, methanol, and acetonitrile, relaxation of the tricarbonyl intermediate formed by UV photolysis of a carbonyl ligand leads to geminate recombination with a bias towards a thermodynamically less stable isomeric form, suggesting that facile interconversion of the ligand groups at the Fe center is possible in the unsaturated species. In a polar or hydrogen bonding solvent, this process competes with solvent substitution leading to the formation of stable solvent adduct species. The data provide further insight into the effect of incorporating non-carbonyl ligands on the dynamics and photochemistry of hydrogenase-derived biomimetic compounds.
机译:[FeFe]氢化酶亚位模型(μ-S(CH_2)_3S)Fe_2(CO)_4(PMe_3)_2的溶液相光化学已使用密度泛函理论计算支持的超快速时间分辨红外光谱进行了研究。在三种不同的溶剂(正庚烷,甲醇和乙腈)中,由羰基配体的紫外线光解形成的三羰基中间体的弛豫会导致Geate重组,并倾向于热力学不稳定的异构体形式,这表明配体基团易于相互转化在Fe中心的不饱和物种是可能的。在极性或氢键溶剂中,该过程与溶剂取代竞争,导致形成稳定的溶剂加合物。数据提供了进一步了解掺入非羰基配体对源自氢化酶的仿生化合物的动力学和光化学的影响。

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