光催化
手性(物理)
材料科学
光化学
析氧
氮化碳
共价键
组合化学
氢
化学
表面改性
分解水
纳米技术
氢键
聚合物
异质结
瓶颈
化学工程
电荷(物理)
石墨氮化碳
催化作用
制氢
氨基酸
不对称碳
有机催化
合理设计
作者
Yanfang Li,Jinhui Yang,Haoyan Zhang,Zhengfeng Zhao,Mingxu Wang,Yao Chen
摘要
ABSTRACT The spin‐dependent recombination behavior of photogenerated charges has long been overlooked in the study of photocatalytic hydrogen (H 2 ) evolution over covalent organic frameworks (COFs). Moreover, correlating the structure of COFs with the spin states of photogenerated charges to enhance photocatalytic H 2 evolution performance remains a significant challenge. Herein, we present a chiral amino acid functionalization strategy to engineer chiral TpPa‐1 COF for boosted photocatalytic H 2 evolution. Following systematic optimization, the chiral TpPa‐1 COFs showcased a ∼5‐fold enhancement in photocatalytic performance, achieving a record TOF of 9867 h −1 , alongside the second‐highest reported AQY of 66% at 475 nm and HER of 2.54 mmol h −1 among the reported state‐of‐the‐art COF‐based photocatalysts for H 2 evolution. Mechanism studies revealed that the synergistic effect between the chirality and the directional charge transfer allows efficient photo‐generated charge separation. Furthermore, Chiral TpPa‐1 assembled with polymeric carbon nitride (g‐C 3 N 4 ) in an S‐scheme heterojunction can overcome the bottleneck in photocatalytic overall water splitting on g‐C 3 N 4 without oxygen evolution co‐catalysts. In this work, we present a universal design strategy from a charge spin perspective to synthesize chiral photocatalysts for efficient photocatalytic performance.
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