Nance Patricia J, Thompson Niklas B, Oyala Paul H, Peters Jonas C
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, CA, 91125, USA.
Angew Chem Int Ed Engl. 2019 May 6;58(19):6220-6224. doi: 10.1002/anie.201814206. Epub 2019 Apr 1.
Species with 2-center, 3-electron (2c/3e ) σ bonds are of interest owing to their fascinating electronic structures and potential for interesting reactivity patterns. Report here is the synthesis and characterization of a pair of zerovalent (d ) trigonal pyramidal Rh and Ir complexes that feature 2c/3e σ bonds to the Si atom of a tripodal tris(phosphine)silatrane ligand. X-ray diffraction, continuous wave and pulse electron paramagnetic resonance, density-functional theory calculations, and reactivity studies have been used to characterize these electronically distinctive compounds. The data available highlight a 2c/3e bonding framework with a σ*-SOMO of metal 4- or 5d parentage that is partially stabilized by significant mixing with Si (3p ) and metal (5- or 6p ) orbitals. Metal-ligand covalency thus buffers the expected destabilization of transition-metal (TM)-silyl σ*-orbitals by d-p mixing, affording well-characterized examples of TM-main group, and hence polar, 2c/3e σ "half-bonds".
具有2中心3电子(2c/3e)σ键的物种因其迷人的电子结构和有趣的反应模式潜力而备受关注。本文报道了一对零价(d)三角锥形铑和铱配合物的合成与表征,这些配合物具有与三脚架型三(膦)硅氮烷配体的硅原子形成的2c/3e σ键。X射线衍射、连续波和脉冲电子顺磁共振、密度泛函理论计算以及反应性研究已被用于表征这些具有独特电子性质的化合物。现有数据突出了一个2c/3e键合框架,其具有金属4d或5d母体的σ*-SOMO,通过与硅(3p)和金属(5p或6p)轨道的显著混合而部分稳定。因此,金属-配体共价性缓冲了d-p混合对过渡金属(TM)-硅烷基σ*-轨道预期的去稳定作用,提供了特征明确的TM-主族2c/3e σ“半键”实例,因此也是极性的。