Ríos Pablo, Martín-de la Calle Rocío, Vidossich Pietro, Fernández-de-Córdova Francisco José, Lledós Agustí, Conejero Salvador
Instituto de Investigaciones Químicas (IIQ), Departamento de Química Inorgánica, CSIC and Universidad de Sevilla, Centro de Innovación en Química Avanzada (ORFEO-CINQA) C/ Américo Vespucio 49 Sevilla 41092 Spain
Molecular Modeling & Drug Discovery Laboratory, Istituto Italiano di Tecnologia Via Morego 30 16163 Genoa Italy.
Chem Sci. 2020 Nov 10;12(5):1647-1655. doi: 10.1039/d0sc05522k.
A reversible carbon-boron bond formation has been observed in the reaction of the coordinatively unsaturated, cyclometalated, Pt(ii) complex [Pt(I BuPr')(I BuPr)][BAr], , with tricoordinated boranes HBR. X-ray diffraction studies provided structural snapshots of the sequence of reactions involved in the process. At low temperature, we observed the initial formation of the unprecedented σ-BH complexes [Pt(HBR)(I BuPr')(I BuPr)][BAr], one of which has been isolated. From -15 to +10 °C, the σ-BH species undergo a carbon-boron coupling process leading to the platinum hydride derivative [Pt(H)(I BuPr-BR)(I BuPr)][BAr], . Surprisingly, these compounds are thermally unstable undergoing carbon-boron bond cleavage at room temperature that results in the 14-electron Pt(ii) boryl species [Pt(BR)(I BuPr)][BAr], . This unusual reaction process has been corroborated by computational methods, which indicate that the carbon-boron coupling products are formed under kinetic control whereas the platinum boryl species , arising from competitive C-H bond coupling, are thermodynamically more stable. These findings provide valuable information about the factors governing productive carbon-boron coupling reactions at transition metal centers.
在配位不饱和的环金属化铂(II)配合物[Pt(I BuPr')(I BuPr)][BAr]与三配位硼烷HBR的反应中,观察到了可逆的碳 - 硼键形成。X射线衍射研究提供了该过程中涉及的反应序列的结构快照。在低温下,我们观察到前所未有的σ - BH配合物[Pt(HBR)(I BuPr')(I BuPr)][BAr]的初始形成,其中一种已被分离出来。从-15到+10°C,σ - BH物种经历碳 - 硼偶联过程,生成氢化铂衍生物[Pt(H)(I BuPr - BR)(I BuPr)][BAr]。令人惊讶的是,这些化合物热不稳定,在室温下会发生碳 - 硼键断裂,生成14电子的铂(II)硼基物种[Pt(BR)(I BuPr)][BAr]。这种不寻常的反应过程已通过计算方法得到证实,计算结果表明碳 - 硼偶联产物是在动力学控制下形成的,而由竞争性C - H键偶联产生的铂硼基物种在热力学上更稳定。这些发现为过渡金属中心有效碳 - 硼偶联反应的控制因素提供了有价值的信息。