材料科学
光催化
聚合物
异质结
共轭体系
无定形固体
载流子
合理设计
半导体
光电效应
电子转移
化学工程
纳米技术
催化作用
光电子学
化学物理
光化学
有机化学
化学
复合材料
工程类
作者
Binbin Wang,Xiao Wang,Bingbing Wang,Chung‐Li Dong,Yucheng Huang,Mengfei Yang,Yiming Liu,Yukun Zhu,Xiaojing Long,Dongjiang Yang,Yanzhi Xia
标识
DOI:10.1002/smtd.202300409
摘要
Linear-conjugated polymers (LCPs) are excellent semiconductor photocatalysts. However, its inherent amorphous structures and simple electron transport channels restrict efficient photoexcited charge separation and transfer. Herein, "2D conjugated engineering" is employed to design high-crystalline polymer photocatalysts with multichannel charge transport by introducing alkoxyphenyl sidechains. The electronic state structure and electron transport pathways of the LCPs are investigated using experimental and theoretical calculations. Consequently, the 2D B←N-containing polymers (2DPBN) exhibit excellent photoelectric characteristics, which enable the efficient separation of electron-hole and rapidly transfer photogenerated carriers to the catalyst surface for efficient catalytic reactions. Significantly, the further hydrogen evolution of 2DPBN-4F heterostructures can be achieved by increasing the fluorine content of the backbones. This study highlights that the rational design of LCP photocatalysts is an effective strategy to spur further interest in photofunctional polymer material applications.
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