光催化
过氧化氢
材料科学
制氢
聚合物
光化学
载流子
催化作用
化学工程
质子化
纳米技术
化学
有机化学
离子
光电子学
工程类
作者
Shengdong Wang,Zhipeng Xie,Da Zhu,Shuai Fu,Yishi Wu,Hongling Yu,Chuangye Lu,Pan‐Ke Zhou,Mischa Bonn,Hai I. Wang,Qing Liao,Hong Xu,Xiong Chen,Cheng Gu
标识
DOI:10.1038/s41467-023-42720-6
摘要
Developing efficient artificial photocatalysts for the biomimetic photocatalytic production of molecular materials, including medicines and clean energy carriers, remains a fundamentally and technologically essential challenge. Hydrogen peroxide is widely used in chemical synthesis, medical disinfection, and clean energy. However, the current industrial production, predominantly by anthraquinone oxidation, suffers from hefty energy penalties and toxic byproducts. Herein, we report the efficient photocatalytic production of hydrogen peroxide by protonation-induced dispersible porous polymers with good charge-carrier transport properties. Significant photocatalytic hydrogen peroxide generation occurs under ambient conditions at an unprecedented rate of 23.7 mmol g-1 h-1 and an apparent quantum efficiency of 11.3% at 450 nm. Combined simulations and spectroscopies indicate that sub-picosecond ultrafast electron "localization" from both free carriers and exciton states at the catalytic reaction centers underlie the remarkable photocatalytic performance of the dispersible porous polymers.
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