Biskup David, Schnakenburg Gregor, Boeré René T, Espinosa Ferao Arturo, Streubel Rainer K
Institut für Anorganische Chemie, Rheinische Friedrich-Wilhelms-Universität Bonn, Gerhard-Domagk-Str. 1, 53121, Bonn, Germany.
Department of Chemistry and Biochemistry, University of Lethbridge, Lethbridge, AB, T1K3M4, Canada.
Nat Commun. 2023 Oct 13;14(1):6456. doi: 10.1038/s41467-023-42127-3.
We describe nonmetal adducts of the phosphorus center of terminal phosphinidene complexes using classical C- and N-ligands from metal coordination chemistry. The nature of the L-P bond has been analyzed by various theoretical methods including a refined method on the variation of the Laplacian of electron density ∇ρ along the L-P bond path. Studies on thermal stability reveal stark differences between N-ligands such as N-methyl imidazole and C-ligands such as tert-butyl isocyanide, including ligand exchange reactions and a surprising formation of white phosphorus. A milestone is the transformation of a nonmetal-bound isocyanide into phosphaguanidine or an acyclic bisaminocarbene bound to phosphorus; the latter is analogous to the chemistry of transition metal-bound isocyanides, and the former reveals the differences. This example has been studied via cutting-edge DFT calculations leading to two pathways differently favored depending on variations in steric demand. This study reveals the emergence of organometallic from coordination chemistry of a neutral nonmetal center.
我们使用金属配位化学中的经典C配体和N配体描述了末端次膦基配合物磷中心的非金属加合物。通过各种理论方法分析了L-P键的性质,包括一种基于沿L-P键路径电子密度拉普拉斯算子∇ρ变化的精细方法。热稳定性研究揭示了N-甲基咪唑等N配体与叔丁基异腈等C配体之间的显著差异,包括配体交换反应和白磷的意外形成。一个里程碑是将与非金属结合的异腈转化为磷脒或与磷结合的无环双氨基卡宾;后者类似于与过渡金属结合的异腈的化学性质,而前者则揭示了差异。通过前沿的密度泛函理论计算研究了这个例子,结果表明根据空间需求的变化,有两条不同偏好的途径。这项研究揭示了中性非金属中心配位化学中有机金属化合物的出现。