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手性金属和配体中心的顺式-[Ru(diphosphine)2(H)2]的选择性光化学:制备、NMR、固态和激光闪光研究。

Selective photochemistry at stereogenic metal and ligand centers of cis-[Ru(diphosphine)2(H)2]: preparative, NMR, solid state, and laser flash studies.

机构信息

Department of Chemistry, University of York , York YO10 5DD, UK.

出版信息

J Am Chem Soc. 2012 Feb 22;134(7):3480-97. doi: 10.1021/ja210568t. Epub 2012 Feb 13.

Abstract

Three ruthenium complexes Λ-[cis-Ru((R,R)-Me-BPE)(2)(H)(2)] Λ-R,R-Ru1H(2), Δ-[cis-Ru((S,S)-Me-DuPHOS)(2)(H)(2)] Δ-S,S-Ru2H(2), and Λ-[cis-Ru((R,R)-Me-DuPHOS)(2)(H)(2)] Λ-R,R-Ru2H(2) (1 = (Me-BPE)(2), 2 = (Me-DuPHOS)(2)) were characterized by multinuclear NMR and CD spectroscopy in solution and by X-ray crystallography. The chiral ligands allow the full control of stereochemistry and enable mechanistic studies not otherwise available. Oxidative addition of E-H bonds (E = H, B, Si, C) was studied by steady state and laser flash photolysis in the presence of substrates. Steady state photolysis shows formation of single products with one stereoisomer. Solid state structures and circular dichroism spectra reveal a change in configuration at ruthenium for some Δ-S,S-Ru2H(2)/Λ-R,R-Ru2H(2) photoproducts from Λ to Δ (or vice versa) while the configuration for Λ-R,R-Ru1H(2) products remains unchanged as Λ. The X-ray structure of silyl hydride photoproducts suggests a residual H(1)···Si(1) interaction for Δ-[cis-Ru((R,R)-Me-DuPHOS)(2)(Et(2)SiH)(H)] and Δ-[cis-Ru((R,R)-Me-DuPHOS)(2)(PhSiH(2))(H)] but not for their Ru(R,R-BPE)(2) analogues. Molecular structures were also determined for Λ-[cis-Ru((R,R)-Me-BPE)(2)(Bpin)(H)], Λ-[Ru((S,S)-Me-DuPHOS)(2)(η(2)-C(2)H(4))], Δ-[Ru((R,R)-Me-DuPHOS)(2)(η(2)-C(2)H(4))], and trans-[Ru((R,R)-Me-DuPHOS)(2)(C(6)F(5))(H)]. In situ laser photolysis in the presence of p-H(2) generates hyperpolarized NMR spectra because of magnetically inequivalent hydrides; these experiments and low temperature photolysis with D(2) reveal that the loss of hydride ligands is concerted. The reaction intermediates [Ru(DuPHOS)(2)] and [Ru(BPE)(2)] were detected by laser flash photolysis and have spectra consistent with approximate square-planar Ru(0) structures. The rates of their reactions with H(2), D(2), HBpin, and PhSiH(3) were measured by transient kinetics. Rate constants are significantly faster for [Ru(BPE)(2)] than for [Ru(DuPHOS)(2)] and follow the substrate order H(2) > D(2) > PhSiH(3) > HBpin.

摘要

三种钌配合物 Λ-[顺式-Ru((R,R)-Me-BPE)(2)(H)(2)] Λ-R,R-Ru1H(2)、Δ-[顺式-Ru((S,S)-Me-DuPHOS)(2)(H)(2)] Δ-S,S-Ru2H(2)和 Λ-[顺式-Ru((R,R)-Me-DuPHOS)(2)(H)(2)] Λ-R,R-Ru2H(2)(1 = (Me-BPE)(2),2 = (Me-DuPHOS)(2))通过多核 NMR 和 CD 光谱在溶液中和通过 X 射线晶体学进行了表征。手性配体允许对立体化学进行完全控制,并能够进行否则无法进行的机理研究。通过稳态和激光闪光光解研究了 E-H 键(E = H、B、Si、C)的氧化加成,在底物存在下进行。稳态光解表明形成了具有一种立体异构体的单一产物。固态结构和圆二色光谱表明,对于某些 Δ-S,S-Ru2H(2)/Λ-R,R-Ru2H(2)光产物,从 Λ 到 Δ(或反之亦然),钌的构型发生变化,而 Λ-R,R-Ru1H(2)产物的构型保持不变为 Λ。硅烷化物光产物的 X 射线结构表明,对于 Δ-[顺式-Ru((R,R)-Me-DuPHOS)(2)(Et2SiH)(H)]和 Δ-[顺式-Ru((R,R)-Me-DuPHOS)(2)(PhSiH2)(H)],仍存在残余的 H(1)···Si(1)相互作用,但对于其 Ru(R,R-BPE)(2)类似物则不然。也确定了 Λ-[顺式-Ru((R,R)-Me-BPE)(2)(Bpin)(H)]、Λ-[Ru((S,S)-Me-DuPHOS)(2)(η2-C2H4)]、Δ-[Ru((R,R)-Me-DuPHOS)(2)(η2-C2H4)]和 trans-[Ru((R,R)-Me-DuPHOS)(2)(C6F5)(H)]的分子结构。在 p-H2 存在下的原位激光光解会产生由于磁不等价氢化物而产生的超极化 NMR 谱;这些实验和低温光解与 D2 的实验表明,氢化物配体的损失是协同的。通过激光闪光光解检测到反应中间体 [Ru(DuPHOS)(2)]和 [Ru(BPE)(2)],它们的光谱与近似平面四方 Ru(0)结构一致。通过瞬态动力学测量了它们与 H2、D2、HBpin 和 PhSiH3 的反应的反应速率常数。[Ru(BPE)(2)]的反应速率明显快于[Ru(DuPHOS)(2)],并遵循底物顺序 H2 > D2 > PhSiH3 > HBpin。

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