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Redox-Activated Amines in C(sp(3))-C(sp) and C(sp(3))-C(sp(2)) Bond Formation Enabled by Metal-Free Photoredox Catalysis

机译:氧化还原活性胺在C(SP(3)) - C(SP)和C(SP(3)) - C(SP(2))(SP(2))键合形成通过无金属的光致催化剂催化

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摘要

The amino group represents one of the most prevalent structural motifs in organic chemistry. Therefore, application of amines as alkylating agents in synthesis is highly compelling. Herein, we present a metal-free photoredox strategy for the formation of C(sp(3))-C(sp) and C(sp(3))-C(sp(2)) bonds from redox-activated primary amine derivatives. The developed reaction of 2,4,6-triphenylpyridinium salts with alkynyl p-tolylsulfones, leading to functionalized alkynes, is easily scalable and offers broad substrate scope, high chemoselectivity, and mild conditions. Its potential is also highlighted by diversification of complex molecular scaffolds. Additionally, the approach is also suitable for synthesis of (E)-alkenes from vinyl phenyl sulfones. Mechanistic studies contribute to the elucidation of unexpected differences in reactivity of primary and secondary alkyl substituted pyridinium salts.
机译:氨基代表有机化学中最普遍的结构基序之一。 因此,在合成中施加胺作为烷基化试剂的施加高度引人注目。 在此,我们介绍了用于形成C(SP(3)) - C(SP)和C(SP(3)) - C(SP(2))键的无金属的光毒策略(SP(3)) - C(SP(2))键,来自氧化还原活化的伯胺衍生物 。 2,4,6-三苯基吡啶鎓盐与炔基对苯甲砜含量的发育反应,导致官能化炔烃,易于缩放,具有宽的基材范围,高化学选择性和温和的条件。 它的潜力也被复杂的分子支架的多样化突出显示。 另外,该方法也适用于来自乙烯基苯基砜的(E) - 烷基烷基。 机械研究有助于阐明初级烷基取代吡啶盐的反应性意外差异。

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