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单核和寡聚胺硼 sigma-配合物铑。胺硼烷催化脱氢反应的中间体。

Monomeric and oligomeric amine-borane sigma-complexes of rhodium. intermediates in the catalytic dehydrogenation of amine-boranes.

机构信息

Department of Chemistry, Inorganic Chemisty Laboratories, University of Oxford, Oxford OX1 3QR, UK.

出版信息

J Am Chem Soc. 2009 Oct 28;131(42):15440-56. doi: 10.1021/ja906070r.

Abstract

A combined experimental/quantum chemical investigation of the transition metal-mediated dehydrocoupling reaction of H(3)B.NMe(2)H to ultimately give the cyclic dimer H(2)BNMe(2) is reported. Intermediates and model complexes have been isolated, including examples of amine-borane sigma-complexes of Rh(I) and Rh(III). These come from addition of a suitable amine-borane to the crystallographically characterized precursor [Rh(eta(6)-1,2-F(2)C(6)H(4))(P(i)Bu(3))(2)][BAr(F)(4)] [Ar(F) = 3,5-(CF(3))(2)C(6)H(3)]. The complexes [Rh(eta(2)-H(3)B.NMe(3))(P(i)Bu(3))(2)][BAr(F)(4)] and [Rh(H)(2)(eta(2)-H(3)B.NHMe(2))(P(i)Bu(3))(2)][BAr(F)(4)] have also been crystallographically characterized. Other intermediates that stem from either H(2) loss or gain have been characterized in solution by NMR spectroscopy and ESI-MS. These complexes are competent in the catalytic dehydrocoupling (5 mol %) of H(3)B.NMe(2)H. During catalysis the linear dimer amine-borane H(3)B.NMe(2)BH(2).NHMe(2) is observed which follows a characteristic intermediate time/concentration profile. The corresponding amine-borane sigma-complex, [Rh(P(i)Bu(3))(2)(eta(2)-H(3)B.NMe(2)BH(2).NHMe(2))][BAr(F)(4)], has been isolated and crystallographically characterized. A Rh(I) complex of the final product, [Rh(P(i)Bu(3))(2){eta(2)-(H(2)BNMe(2))(2)}][BAr(F)(4)], is also reported, although this complex lies outside the proposed catalytic cycle. DFT calculations show that the first proposed dehydrogenation step, to give H(2)B horizontal lineNMe(2), proceeds via two possible routes of essentially the same energy barrier: BH or NH activation followed by NH or BH activation, respectively. Subsequent to this, two possible low energy routes that invoke either H(2)/H(2)B horizontal lineNMe(2) loss or H(2)B horizontal lineNMe(2)/H(2) loss are suggested. For the second dehydrogenation step, which ultimately affords H(2)BNMe(2), a number of experimental observations suggest that a simple intramolecular route is not operating: (i) the isolated complex [Rh(P(i)Bu(3))(2)(eta(2)-H(3)B.NMe(2)BH(2).NHMe(2))][BAr(F)(4)] is stable in the absence of amine-boranes; (ii) addition of H(3)B.NMe(2)BH(2).NHMe(2) to [Rh(P(i)Bu(3))(2)(eta(2)-H(3)B.NMe(2)BH(2).NHMe(2))][BAr(F)(4)] initiates dehydrocoupling; and (iii) H(2)B horizontal lineNMe(2) is also observed during this process.

摘要

报告了一种通过实验/量子化学联合研究的过渡金属介导的 H(3)B.NMe(2)H 的脱氢偶联反应,最终得到环状二聚体H(2)BNMe(2)。已经分离出中间体和模型配合物,包括 Rh(I)和 Rh(III)的胺-硼烷σ-配合物的实例。这些是通过将合适的胺-硼烷添加到结晶学上表征的前体[Rh(eta(6)-1,2-F(2)C(6)H(4))(P(i)Bu(3))(2)][BAr(F)(4)] [Ar(F) = 3,5-(CF(3))(2)C(6)H(3)]中得到的。[Rh(eta(2)-H(3)B.NMe(3))(P(i)Bu(3))(2)][BAr(F)(4)]和[Rh(H)(2)(eta(2)-H(3)B.NHMe(2))(P(i)Bu(3))(2)][BAr(F)(4)]的配合物也已通过晶体学进行了表征。其他源于 H(2)损失或获得的中间体通过 NMR 光谱和 ESI-MS 在溶液中进行了表征。这些配合物在 H(3)B.NMe(2)H 的催化脱氢偶联(5 mol %)中具有催化活性。在催化过程中,观察到线性二聚体胺-硼烷 H(3)B.NMe(2)BH(2).NHMe(2),其遵循特征的中间体时间/浓度曲线。相应的胺-硼烷σ-配合物[Rh(P(i)Bu(3))(2)(eta(2)-H(3)B.NMe(2)BH(2).NHMe(2))][BAr(F)(4)]已被分离并进行了晶体学表征。还报道了最终产物[Rh(P(i)Bu(3))(2){eta(2)-(H(2)BNMe(2))(2)}][BAr(F)(4)]的 Rh(I)配合物,尽管该配合物不在所提出的催化循环内。DFT 计算表明,第一个提出的脱氢步骤,生成 H(2)B horizontal lineNMe(2),通过两种本质上相同的能量势垒的两条可能途径进行:BH 或 NH 活化,随后分别是 NH 或 BH 活化。在此之后,提出了两种可能的低能途径,涉及 H(2)/H(2)B horizontal lineNMe(2)损失或 H(2)B horizontal lineNMe(2)/H(2)损失。对于最终生成H(2)BNMe(2)的第二步脱氢反应,许多实验观察表明,并不是简单的分子内途径在起作用:(i) 分离出的配合物[Rh(P(i)Bu(3))(2)(eta(2)-H(3)B.NMe(2)BH(2).NHMe(2))][BAr(F)(4)]在没有胺-硼烷的情况下是稳定的;(ii) 添加 H(3)B.NMe(2)BH(2).NHMe(2)到[Rh(P(i)Bu(3))(2)(eta(2)-H(3)B.NMe(2)BH(2).NHMe(2))][BAr(F)(4)]会引发脱氢偶联;(iii) 在这个过程中也观察到 H(2)B horizontal lineNMe(2)。

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