催化作用
镍
材料科学
光热治疗
吸收(声学)
化学工程
热的
太阳能燃料
二氧化碳
碳纤维
光化学
多孔性
电荷(物理)
化学
无机化学
还原(数学)
能量转换效率
可见光谱
吸收率
光热效应
质子
热导率
纳米技术
作者
Longfei Liu,Dezhi Chen,Zhiru Zhang,Qianshuo Wang,Huixin Yan,Yan Zhang,Xinkui Wang,Min Wang
标识
DOI:10.1002/anie.202525685
摘要
ABSTRACT Achieving carbon dioxide (CO 2 ) reduction with water (H 2 O) on photothermal catalysts remains a major challenge. Here, we report a high‐density Ni single‐site catalyst based on a porous aromatic framework (PAF), which enables efficient CO 2 reduction in pure H 2 O under full‐spectrum illumination without the need for additives. Ni‐PAF achieves CO production rates of 25.64 mmol·g −1 ·h −1 under Xe light and 229.04 mmol·g −1 ·h −1 under concentrated sunlight, exceeding all reported results. Nitrogen‐rich groups anchor Ni single sites uniformly, serving as the active centers for the activation of CO 2 and H 2 O. Calculations and experiments show that UV–Vis light drives charge transfer, while IR absorption induces a localized temperature rise. Besides, the low thermal conductivity of PAF confines this heat, creating a thermal microenvironment that enhances charge migration and proton transfer, thereby accelerating CO 2 conversion. These synergistic effects make Ni‐PAF a highly promising catalyst for solar‐driven CO 2 reduction in H 2 O and offer new opportunities for designing efficient photothermal catalysts toward solar fuel production.
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