乙酰化物
分子内力
催化作用
部分
镍
共轭体系
光催化
光化学
吸附
化学
电子转移
材料科学
组合化学
有机化学
聚合物
作者
Yingying Qin,Yang Wang,Jian Lü,Linli Xu,Wai‐Yeung Wong
出处
期刊:Angewandte Chemie
[Wiley]
日期:2024-10-04
卷期号:64 (6): e202418269-e202418269
被引量:21
标识
DOI:10.1002/anie.202418269
摘要
Abstract The incorporation of transition‐metal single atoms as molecular functional entities into the skeleton of graphdiyne (GDY) to construct novel two‐dimensional (2D) metal‐acetylide frameworks, known as metalated graphynes (MGYs), is a promising strategy for developing efficient catalysts, which can combine the tunable charge transfer of GDY frameworks, the catalytic activity of metal and the precise distribution of single metallic centers. Herein, four highly conjugated MGY photocatalysts based on Ni II , Pd II , Pt II , and Hg II were synthesized for the first time using the ‘bottom‐up’ strategy through the use of M−C bonds (−C≡C−M−C≡C−). Remarkably, the Ni II ‐based graphyne (TEPY‐Ni‐GY) exhibited the highest CO generation rate of 18.3 mmol g −1 h −1 and a selectivity of 98.8 %. This superior performance is attributed to the synergistic effects of pyrenyl and −C≡C−Ni(PBu 3 ) 2 −C≡C– moieties. The pyrenyl block functions as an intramolecular π‐conjugation channel, facilitating kinetically favorable electron transfer, while the −C≡C−Ni(PBu 3 ) 2 −C≡C− moiety serves as the catalytic site that enhances CO 2 adsorption and activation, thereby suppressing competitive hydrogen evolution. This study provides a new perspective on MGY‐based photocatalysts for developing highly active and low‐cost catalysts for CO 2 reduction.
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