Yue Jie-Yu, Luo Jing-Xian, Pan Zi-Xian, Xu Qing, Yang Peng, Tang Bo
Key Laboratory of Molecular and Nano Probes, Ministry of Education, Collaborative Innovation Center of Functionalized Probes for Chemical Imaging in Universities of Shandong, College of Chemistry, Chemical Engineering and Materials Science, Shandong Normal University, Jinan, 250014, P. R. China.
CAS Key Laboratory of Low-Carbon Conversion Science and Engineering, Shanghai Advanced Research Institute (SARI), Chinese Academy of Sciences (CAS), Shanghai, 201210, P. R. China.
Angew Chem Int Ed Engl. 2025 Jan 27;64(5):e202417115. doi: 10.1002/anie.202417115. Epub 2024 Nov 6.
Solar-driven HO production via the oxygen reduction reaction (ORR) and water oxidation reaction (WOR) dual channels is green and sustainable but severely restricted by the sluggish reaction kinetics. Constructing intriguing photocatalysts with effective active centers is a shortcut to breaking the kinetic bottleneck with great significance. Herein, we synthesize two novel neutral phenanthridine-based covalent organic frameworks (PD-COF1 and PD-COF2) for photosynthesizing HO. Compared to the no phenanthridine counterpart (AN-COF), the HO photosynthetic activities of PD-COF1 and PD-COF2 are markedly boosted. In air and pure water without sacrificial agents, under Xe lamp and natural sunlight, the HO photogeneration rate of PD-COF2 is 6103 and 3646 μmol g h, respectively. Further experimental and theoretical inspections demonstrate that introducing phenanthridine units into COFs smoothly modulates the charge carrier dynamics and thermodynamically favors the generation of crucial OOH* and OH* intermediates in the ORR and WOR paths, respectively. Additionally, this is the first time the neutral phenanthridine moiety serves as the photooxidation unit for 2e WOR towards HO photoproduction. The current work sheds light on exploring novel catalytic centers for high-performance HO evolution.
通过氧还原反应(ORR)和水氧化反应(WOR)双渠道实现太阳能驱动的过氧化氢生成,具有绿色可持续性,但反应动力学缓慢严重限制了该过程。构建具有有效活性中心的有趣光催化剂是突破动力学瓶颈的一条捷径,具有重要意义。在此,我们合成了两种用于光合成过氧化氢的新型中性菲啶基共价有机框架(PD-COF1和PD-COF2)。与不含菲啶的对应物(AN-COF)相比,PD-COF1和PD-COF2的过氧化氢光合活性显著提高。在没有牺牲剂的空气和纯水中,在氙灯和自然阳光下,PD-COF2的过氧化氢光生成速率分别为6103和3646 μmol g h。进一步的实验和理论研究表明,将菲啶单元引入共价有机框架可顺利调节电荷载流子动力学,并且在热力学上分别有利于在ORR和WOR路径中生成关键的OOH和OH中间体。此外,这是中性菲啶部分首次作为用于2e WOR光生成过氧化氢的光氧化单元。当前的工作为探索用于高效过氧化氢生成的新型催化中心提供了思路。