化学
炔烃
氢化物
镍
机制(生物学)
催化作用
光化学
联吡啶
2,2'-联吡啶
组合化学
金属
有机化学
认识论
晶体结构
哲学
作者
Gabriel Durin,Mi-Young Lee,Martina A. Pogany,Thomas Weyhermüller,Nicolas Kaeffer,Walter Leitner
摘要
Hydrogenation reactions of carbon-carbon unsaturated bonds are central in synthetic chemistry. Efficient catalysis of these reactions classically recourses to heterogeneous or homogeneous transition-metal species. Whether thermal or electrochemical, C-C multiple bond catalytic hydrogenations commonly involve metal hydrides as key intermediates. Here, we report that the electrocatalytic alkyne semihydrogenation by molecular Ni bipyridine complexes proceeds without the mediation of a hydride intermediate. Through a combined experimental and theoretical investigation, we disclose a mechanism that primarily involves a nickelacyclopropene resting state upon alkyne binding to a low-valent Ni(0) species. A following sequence of protonation and electron transfer steps
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