首页> 外文期刊>Journal of the American Chemical Society >19-Electron Intermediates and Cage-Effects in the Photochemical Disproportionation of [CpW(CO)_3]_2 with Lewis Bases
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19-Electron Intermediates and Cage-Effects in the Photochemical Disproportionation of [CpW(CO)_3]_2 with Lewis Bases

机译:19电子中间体和笼效应在路易斯碱的[CpW(CO)_3] _2光化学歧化中的作用

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The role of 19-electron intermediates in the photochemical disproportionation of [CpW(CO)_3]_2 (Cp = C_5H_5) with Lewis bases (PR_3; R = OMe, Bu, Ph) is investigated on the ultrafast time scale using femtosecond VIS-pump, IR-probe spectroscopy. Formation of a 19-electron (19e) species CpW(CP)_3PR_3· by coordination of PR_3 with photogenerated 17-electron (17e) radicals CpW(CO)_3· is directly observed, and equilibrium is established between the 17e radicals and the 19e intermediates favoring 19e intermediates in the order: Bu > OMe > > Ph. Steric effects dominate the 17e/19e equilibrium when the cone-angle of the Lewis base exceeds a certain limiting value (between 132° and 145°), but below this value electronic properties of the Lewis base control the 17e/19e dynamics. Disproportionation occurs in less than 200 picoseconds by electron transfer between a solvent caged 17e radical and 19e, highly reducing species. The rate and extent of ultrafast disproportionation depends on both the identity and concentration of the Lewis base. In low concentrations of PR_3 (typically 1-2 M or less) or with Lewis bases whose equilibrium heavily favors 17e radicals (e.g., PPh_3), disproportionation is rate-limited by breakdown of the solvent cage. Density functional theory calculations on vibrational frequencies and charge distributions of the various complexes support the experimental results.
机译:使用飞秒VIS-V在超快时间尺度上研究了19电子中间体在具有路易斯碱(PR_3; R = OMe,Bu,Ph)的[CpW(CO)_3] _2(Cp = C_5H_5)的光化学歧化中的作用。泵,红外探针光谱。通过直接观察PR_3与光生17电子(17e)自由基CpW(CO)_3·的配位形成19电子(19e)物种CpW(CP)_3PR_3·,并在17e自由基和19e自由基之间建立平衡中间体按以下顺序偏爱19e中间体:Bu> OMe Ph。当路易斯碱的锥角超过某个极限值(在132°和145°之间)但低于此值时,立体效应控制着17e / 19e平衡Lewis碱的电子性质控制着17e / 19e动力学。通过在溶剂笼罩的17e自由基和19e(高度还原的物种)之间进行电子转移,歧化发生在不到200皮秒的时间内。超快速歧化的速率和程度取决于路易斯碱的特性和浓度。在低浓度的PR_3(通常为1-2 M或更低)或平衡平衡有利于17e自由基的路易斯碱(例如PPh_3)时,歧化速率受溶剂笼分解的速率限制。关于各种配合物的振动频率和电荷分布的密度泛函理论计算支持了实验结果。

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