脱氢
催化作用
光催化
光化学
协同生产
氢
甲苯
材料科学
制氢
吡啶
无机化学
氧化还原
氢燃料
化学
反应中间体
氢原子
氢键
活化能
吉布斯自由能
键裂
光催化分解水
反应机理
作者
Yi Tang,Zhiwen Zheng,Huanmin Liu,Wei Wang,Zhuizhui Su,Xinyu Song,Yuchen Zhou,Shule Zhou,Yanran Dong,Hongxing Li,Peng Zhou
标识
DOI:10.1002/adma.202521903
摘要
ABSTRACT Photocatalytic nonoxidative methyl activation and subsequent C─C coupling in the methyl group of arenes offer an attractive strategy for the coproduction of value‐added polycyclic aromatics and hydrogen with 100% atom economy and positive delta Gibbs free energy. However, its application remains constrained by the limited availability of highly active redox sites capable of simultaneously facilitating efficient dehydrogenation oxidation and proton reduction. Herein, a platinum‐silver dual‐atom catalyst (PtAg DAC) anchored on CdS is designed to enable a water‐assisted photocatalytic nonoxidative conversion of toluene to 1,2‐diphenylethane with hydrogen evolution. In situ infrared, ESR, and DFT analyses unveil an atomic‐scale synergy within the PtAg–S bridge unit that facilitates C( sp 3 )–H cleavage of methyl and formation of key C 7 H 7 · radical via a water‐assisted pathway, lowering the overall energy barrier from 3.02 to 1.31 eV. Consequently, the PtAg DAC yields 1,2‐diphenylethane at 32.8 µmol g −1 h −1 with 77.35% selectivity, outperforming monometallic counterparts by up to 3.1‐fold. Simultaneously, a hydrogen evolution rate of 89.8 µmol g −1 h −1 was achieved over PtAg DAC, which was 2.1‐ and 6.5‐fold higher than Pt and Ag single‐atom catalysts, respectively, resulting in a solar‐to‐chemical energy conversion due to positive ΔG .
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