Division of Chemistry and Chemical Engineering, California Institute of Technology (Caltech), Pasadena, California 91125, United States.
J Am Chem Soc. 2022 Nov 2;144(43):20118-20125. doi: 10.1021/jacs.2c09786. Epub 2022 Oct 20.
The generation of metal hydride intermediates during reductive electrocatalysis in the presence of acid most commonly leads to the hydrogen evolution reaction (HER). Redirecting the reactivity profile of such hydride intermediates toward the reduction of unsaturated substrates is an exciting opportunity in catalysis but presents a challenge in terms of catalyst selectivity. In this study, we demonstrate that a prototypical phosphine-supported Ni-HER catalyst can be repurposed toward the electrocatalytic reduction of a model substrate, methyl phenylpropiolate, hydride transfer from a Ni-H when interfaced with a metallocene-derived proton-coupled electron transfer (PCET) mediator. Key to success is generation of the Ni-H at a potential pinned to that of the PCET mediator which is appreciably anodic of the onset of HER. Electrochemical, spectroscopic, and theoretical data point to a working mechanism where a PCET step from the metallocene-derived mediator to Ni generates Ni-H and is rate-determining; the latter Ni-H is then readily reduced to a Ni-H, which is competent for substrate reduction. Additional studies show that this tandem PCET-mediated hydride generation can afford high stereoselectivity (, >20:1 / using a phosphine-cobalt precatalyst with ethyl 2-heptynoate) and can also be used for the reduction of α,β-unsaturated ketones.
在酸性条件下进行还原电催化时,金属氢化物中间体的生成通常会导致析氢反应(HER)。将此类氢化物中间体的反应性朝着不饱和底物的还原方向重新定向是催化领域的一个令人兴奋的机会,但在催化剂选择性方面提出了挑战。在这项研究中,我们证明了一种典型的膦负载 Ni-HER 催化剂可以通过与金属茂衍生的质子耦合电子转移(PCET)介体界面上的氢化物转移,重新用于模型底物甲基苯乙烯酸酯的电催化还原。成功的关键是在 Ni-H 的生成电位被固定在 PCET 介体的电位上,该电位明显比 HER 的起始电位更正。电化学、光谱和理论数据表明,一种工作机制,其中来自金属茂衍生介体的 PCET 步骤向 Ni 生成 Ni-H 并成为速率决定步骤;然后后者的 Ni-H 很容易还原为 Ni-H,后者有能力进行底物还原。进一步的研究表明,这种串联的 PCET 介导的氢化物生成可以提供高立体选择性(,使用膦-钴前催化剂和乙基 2-庚炔酸时为 20:1 以上),并且还可用于还原α,β-不饱和酮。