The first electrochemical hydrolysis of hydrosilanes to silanols under mild and neutral reaction conditions is reported. The practical protocol employs commercially available and cheap NHPI as a hydrogen‐atom transfer (HAT) mediator and operates at room temperature with high selectivity, leading to various valuable silanols in moderate to good yields. Notably, this electrochemical method exhibits a
Single‐Atom Manganese‐Catalyzed Oxygen Evolution Drives the Electrochemical Oxidation of Silane to Silanol
作者:Hai‐Tao Tang、He‐Yang Zhou、Ying‐Ming Pan、Jia‐Lan Zhang、Fei‐Hu Cui、Wen‐Hao Li、Dingsheng Wang
DOI:10.1002/anie.202315032
日期:2024.1.15
synthesized a Mn single-atom catalyst (SAC) stabilized on N-doped carbon via thermal decomposition of a ZIF (Mn-SA@NC). By serving as an OER electrocatalyst, the Mn-SA@NC drives the electrochemical oxidation of silane to silanol. This synthesis approach not only presents a promising avenue for the utilization of electrocatalytic OER but also highlights the potential of SACs as an attractive platform for
我们通过 ZIF 的热分解合成了一种稳定在氮掺杂碳上的锰单原子催化剂(SAC)(Mn-SA@NC)。通过充当 OER 电催化剂,Mn-SA@NC 驱动硅烷电化学氧化为硅烷醇。这种合成方法不仅为电催化OER的利用提供了一条有前途的途径,而且还凸显了SAC作为有机电合成研究有吸引力的平台的潜力。