选择性
蒽
光催化
光化学
材料科学
单体
聚合物
二苯并噻吩
共轭体系
化学吸附
氮气
制氢
化学
光诱导电子转移
化学工程
反应速率
电子供体
氢
电子转移
电子受体
组合化学
有机化学
氧化还原
作者
Jian Gao,Xiao Bai,Lixin Shan,Yongbo Su,Bowen Cao,Yim Cheung,Xianghua Kong,Mingxin Liu
出处
期刊:Small
[Wiley]
日期:2026-01-23
卷期号:22 (15): e13453-e13453
标识
DOI:10.1002/smll.202513453
摘要
Donor-acceptor (D-A) structured organic photocatalysts have garnered considerable attention for artificial NH3 photosynthesis under ambient conditions. Nevertheless, their N2 photo-fixation efficiency is constrained by insufficient chemisorption and selectivity towards N2. Herein, we rationally designed a series of conjugated polymers with varying donor-to-acceptor molar ratios using anthracene and dibenzothiophene sulfone (BTSO) as electron-donor and electron-acceptor units. The production rate of the nitrogen reduction reaction (NRR) increases progressively with higher anthracene content. Notably, AnSO-6, featuring a 1:1 donor-to-acceptor molar ratio, achieves a remarkable NH3 production rate of 1645.25 µmol g-1 h-1 under full-spectrum irradiation without sacrificial agents. This enhancement stems from the superior N2 chemisorption capability, high electron transfer activity, and efficient charge separation endowed by the unique D-A structure. By contrast, the photocatalytic hydrogen evolution reaction (HER) exhibits an inverse trend, indicating the feasibility of tuning HER/NRR selectivity via donor-to-acceptor ratio adjustment. Additionally, the generality of the BTSO-based D-A platform was validated by substituting anthracene with diverse electron donors, demonstrating broad applicability for efficient photocatalytic N2 fixation. This research establishes a promising approach to boost photocatalytic NH3 production and offers novel insights into modulating the equilibrium between NRR and HER through precise regulation of the donor-to-acceptor monomer ratio.
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