化学
芳基
催化作用
组合化学
硫黄
选择性
磺酰胺
齿合度
金属转移
功能群
铜
烷基
有机化学
金属
天然橡胶
硫化
聚合物
作者
Qingjin Liang,Lucille A. Wells,Kaiming Han,Shufeng Chen,Marisa C. Kozlowski,Tiezheng Jia
摘要
Herein, an unprecedented synthetic route to sulfilimines via a copper-catalyzed Chan–Lam-type coupling of sulfenamides is presented. A key to success in this novel transformation is the chemoselective S-arylation of S(II) sulfenamides to form S(IV) sulfilimines, overriding the competitive, and more thermodynamically favored, C–N bond formation that does not require a change in the sulfur oxidation state. Computations reveal that the selectivity arises from a selective transmetallation event where bidentate sulfenamide coordination through the sulfur and oxygen atoms favors the S-arylation pathway. The mild and environmentally benign catalytic conditions enable broad functional group compatibility, allowing a variety of diaryl or alkyl aryl sulfilimines to be efficiently prepared. The Chan–Lam coupling procedure could also tolerate alkenylboronic acids as coupling partners to afford alkenyl aryl sulfilimines, a class of scaffolds that cannot be directly synthesized via conventional imination strategies. The benzoyl-protecting groups could be conveniently removed from the product, which, in turn, could be readily transformed into several S(IV) and S(VI) derivatives.
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