共轭体系
聚合物
材料科学
氧还原
调制(音乐)
工作(物理)
还原(数学)
光催化
化学工程
电子结构
氧气
纳米技术
化学
光化学
催化作用
光电子学
电化学
作者
Zhuo-Qin Wang,Yu Zhu,Yu Hu,Zhiquan Zhang,Yanrong Yang
摘要
ABSTRACT Constructing donor–acceptor (D–A) architectures is a widely adopted strategy for modulating the global band structures of photocatalytic polymers. However, it remains challenging to apply this approach to precisely fine‐tune the local electronic environment of active sites to optimize elementary catalytic steps while preserving the overall conjugated network. In this work, pillararenes with electron‐rich cavities are introduced into D–A conjugated polymers to construct a new material named BTzAP[5], whose reaction mechanism in photocatalytic hydrogen peroxide synthesis is systematically investigated. The electron‐rich cavity of pillararene modulates adjacent imine nitrogen active sites via the extended π‐conjugated system, significantly increasing their electron density, oxygen adsorption, and activation capacities. The tailored structure promotes a rapid stepwise two‐electron ORR pathway of O 2 to H 2 O 2 , with minimal free superoxide accumulation, achieving a production rate of 4086 µmol g −1 h −1 . This work offers a new strategy for achieving synergistic optimization of overall electronic engineering and local design of active sites in D–A type conjugated polymers.
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