Department of Chemistry and Biochemistry, University of Mississippi University, Mississippi, 38677, USA.
ChemSusChem. 2021 Jan 21;14(2):662-670. doi: 10.1002/cssc.202001940. Epub 2020 Nov 18.
A series of molecular Mn catalysts featuring aniline groups in the second-coordination sphere has been developed for electrochemical and photochemical CO reduction. The arylamine moieties were installed at the 6 position of 2,2'-bipyridine (bpy) to generate a family of isomers in which the primary amine is located at the ortho- (1-Mn), meta- (2-Mn), or para-site (3-Mn) of the aniline ring. The proximity of the second-sphere functionality to the active site is a critical factor in determining catalytic performance. Catalyst 1-Mn, possessing the shortest distance between the amine and the active site, significantly outperformed the rest of the series and exhibited a 9-fold improvement in turnover frequency relative to parent catalyst Mn(bpy)(CO) Br (901 vs. 102 s , respectively) at 150 mV lower overpotential. The electrocatalysts operated with high faradaic efficiencies (≥70 %) for CO evolution using trifluoroethanol as a proton source. Notably, under photocatalytic conditions, a concentration-dependent shift in product selectivity from CO (at high [catalyst]) to HCO H (at low [catalyst]) was observed with turnover numbers up to 4760 for formic acid and high selectivities for reduced carbon products.
一系列具有第二配位球苯胺基团的分子 Mn 催化剂已被开发用于电化学和光化学 CO 还原。芳胺部分被安装在 2,2'-联吡啶(bpy)的 6 位,生成了一组异构体,其中伯胺位于苯胺环的邻位(1-Mn)、间位(2-Mn)或对位(3-Mn)。第二配位球功能基与活性位点的接近程度是决定催化性能的关键因素。催化剂 1-Mn 具有胺和活性位点之间最短的距离,明显优于其他系列,在 150 mV 更低的过电势下,相对于母体催化剂 Mn(bpy)(CO) Br(901 比 102 s-1)的周转频率提高了 9 倍。电催化剂在使用三氟乙醇作为质子源时,对 CO 演化具有高法拉第效率(≥70%)。值得注意的是,在光催化条件下,观察到产物选择性从 CO(在高[催化剂])到 HCO H(在低[催化剂])的浓度依赖性变化,对于甲酸,周转数高达 4760,并且对还原碳产物具有高选择性。