West Julian G, Huang David, Sorensen Erik J
Department of Chemistry, Princeton University, Princeton, New Jersey 08544, USA.
Nat Commun. 2015 Dec 11;6:10093. doi: 10.1038/ncomms10093.
The dehydrogenation of unactivated alkanes is an important transformation both in industrial and biological systems. Recent efforts towards this reaction have revolved around high temperature, organometallic C-H activation by noble metal catalysts that produce alkenes and hydrogen gas as the sole products. Conversely, natural desaturase systems proceed through stepwise hydrogen atom transfer at physiological temperature; however, these transformations require a terminal oxidant. Here we show combining tetra-n-butylammonium decatungstate (TBADT) and cobaloxime pyridine chloride (COPC) can catalytically dehydrogenate unactivated alkanes and alcohols under near-UV irradiation at room temperature with hydrogen as the sole by-product. This noble metal-free process follows a nature-inspired pathway of high- and low-energy hydrogen atom abstractions. The hydrogen evolution ability of cobaloximes is leveraged to render the system catalytic, with cooperative turnover numbers up to 48 and yields up to 83%. Our results demonstrate how cooperative base metal catalysis can achieve transformations previously restricted to precious metal catalysts.
未活化烷烃的脱氢反应在工业和生物体系中都是重要的转化过程。近期针对该反应的研究主要围绕高温下由贵金属催化剂进行的有机金属C-H活化展开,反应生成烯烃和氢气作为唯一产物。相反,天然去饱和酶系统在生理温度下通过逐步氢原子转移进行反应;然而,这些转化需要终端氧化剂。在此,我们展示了将四正丁基铵十钨酸盐(TBADT)和氯化吡啶钴肟(COPC)相结合,能够在室温下近紫外光照射下催化未活化的烷烃和醇脱氢,氢气是唯一的副产物。这个无贵金属的过程遵循了受自然启发的高能和低能氢原子提取途径。利用钴肟的析氢能力使该系统具有催化活性,协同周转数高达48,产率高达83%。我们的结果表明,协同贱金属催化如何能够实现以前仅限于贵金属催化剂的转化。