Isolation and Diverse Reactivity of an Unsymmetrical 1,2-Bis(silylene)-Stabilized Pentacarbonyl Chromium(0) Species.
Jiawei FanYuyi WangTao ShiPeng YangGuijiang ZhouJian XuBochao SuPublished in: Inorganic chemistry (2024)
The construction of the unsymmetrical 1,2-bis(silylene) pentacarbonyl chromium(0) complex 1 was achieved through the reaction of chlorosilylene with half an equivalent of K 2 Cr(CO) 5 . X-ray diffraction analysis of 1 confirms the formation of the Si-Si bond and the coordination of one of the silicon atoms to the Cr center. Density functional theory (DFT) calculations disclose that highest occupied molecular orbital (HOMO) mainly corresponds to the lone pair of electrons on the silicon atom and the σ-bonding interaction between two Si atoms. Based on its unique electronic structure, its diverse reactivity toward the transition metal compounds and small molecules was investigated in detail. The reactions of 1 with Fe 2 (CO) 9 or CuCl yielded the 1,2-bis(silylene)-stabilized heterobimetallic complex 2 or oxidized product 3 , respectively. Additionally, treatments of 1 with selenium, CO 2 , or Me 3 SiN 3 led to the formation of the corresponding selenium-, oxo-, and nitrogen-bridged complexes 4-7 . All compounds were characterized by multinuclear NMR spectroscopy and X-ray crystallography.
Keyphrases
- density functional theory
- transition metal
- molecular dynamics
- ionic liquid
- room temperature
- high resolution
- electron microscopy
- dual energy
- electron transfer
- magnetic resonance imaging
- atomic force microscopy
- single molecule
- metal organic framework
- molecular dynamics simulations
- aqueous solution
- high density
- magnetic resonance