光催化
砜
氢键
材料科学
苯并噻吩
抗坏血酸
分子
光化学
化学
催化作用
有机化学
高分子化学
食品科学
噻吩
作者
Xunliang Hu,Xiaoju Yang,Bingyi Song,Zhen Zhan,Ruixue Sun,Yantong Guo,Li‐Ming Yang,Xuan Yang,Chun Zhang,Irshad Hussain,Xiaoyan Wang,Bien Tan
出处
期刊:SusMat
[Wiley]
日期:2024-06-01
卷期号:4 (3)
摘要
Abstract Highly crystalline organic semiconductors are ideal materials for photocatalytic hydrogen evolution in water splitting. However, the instability and complex synthesis processes of most reported organic molecule‐based photocatalysts restrict their applications. In this study, we introduce benzo [1,2‐b:4,5‐bʹ] bis [1] benzothiophene‐3,9‐dicarboxylic acid, 5,5,11,11‐tetraoxide (FSOCA), a highly crystalline, stable molecular crystal that is easy to synthesize and serves as an efficient photocatalyst for the hydrogen evolution reaction. FSOCA exhibits high efficiency in sacrificial hydrogen evolution reaction (760 µmol h −1 , 76 mmol g −1 h −1 at 330 mW cm −2 ; 570 µmol h −1 , 57 mmol g −1 h −1 at 250 mW cm −2 ), and FSOCA remains stable during photocatalysis for up to 400 h. Experiments and theoretical studies confirmed the presence of hydrogen bonds between the sulfone group and the sacrificial agent (ascorbic acid). This interaction significantly improved the oxidation reaction kinetics and boosted the photocatalytic performance. This study presents a scalable and convenient approach to synthesize highly crystalline, active, and stable organic photocatalysts with potential applications in large‐scale photocatalysis.
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