Single‐Atom Ligation of Four Different Alcohols at One Silicon Center: Methodology Development and Proof of Concept
Abstract
Abstract While critical and indispensable in diversified areas, organosilicon compounds are not naturally occurring and all rely on chemical synthesis. The de novo synthesis of them via quadruple substitutions of tetrachlorosilane was one of the most straightforward and common practices but confronted over‐substitution challenges for heteroleptic silanes, especially the ones with four different substituents. Although selective and iterative substitutions at silicon have achieved notable achievements, methods for fully heteroleptic tetraalkoxysilanes are still lacking. Herein, we established the key dephenylative etherification reaction coupling phenylsilanes and alcohols to alkoxysilanes and then developed triphenylchlorosilane (Ph 3 SiCl) as the surrogate to tetrachlorosilane for the iterative and controllable ligation of four different alcohols to one silicon center as fully heteroleptic tetraalkoxysilanes. Mechanistic studies revealed the unusual transformations of Wheland intermediates into both silicon cations and silylated phenylhalonium ions in low and comparable activation barriers.
Article Details
Authors (7)
Chao Wang
Xin Xu
Xinyu Zhang
Haifeng Lin
Jie Wang
State Key Laboratory of Molecular Oncology, Beijing Key Laboratory, CAMS Key Laboratory of Translational Research on Lung Cancer, Department of Medical Oncology Cancer Hospital, Chinese Academy of Medical Sciences Beijing China
Pathan Mosim Amin
School of Chemistry, Xi'an Key Laboratory of Sustainable Energy Materials Chemistry Xi'an Jiaotong University (XJTU) Xi'an 710049 P.R. China
Youliang Wang
School of Chemistry and Chemical Engineering Nanchang University Nanchang 330031 China