Peng Lan-Zhen, Liu Pei, Cheng Qing-Qing, Hu Wen-Jing, Liu Yahu A, Li Jiu-Sheng, Jiang Biao, Jia Xue-Shun, Yang Hui, Wen Ke
Department of Chemistry, Shanghai University, Shanghai 200444, China.
Chem Commun (Camb). 2018 Apr 26;54(35):4433-4436. doi: 10.1039/c8cc00957k.
Direct electrosynthesis of hydrogen peroxide (H2O2) by oxygen reduction is a green and safe strategy to replace the traditional anthraquinone process. Herein, we have designed a two-dimensional redox-active cationic covalent triazine network to be used directly as a cost-effective metal-free electrocatalyst for the oxygen reduction reaction (ORR) to form H2O2. Such a dicationic 2D polymer possesses a porous structure with pore diameters of 2-10 nm and a total N content of 13.3 wt%. The electron paramagnetic resonance experiment confirms the reduction of a viologen-based polymer to radical cations and the subsequent generation of superoxygen radicals. The radical characteristics and high N content within this polymer are the essential for the efficient ORR via a two-electron pathway. As a result, the present electrocatalyst exhibits a high ORR activity and excellent H2O2 selectivity (∼85%), thus providing a feasible possibility of designing highly selective metal-free electrocatalysts for electrocatalytic production of H2O2 from O2.
通过氧还原直接电合成过氧化氢(H2O2)是一种绿色安全的策略,可替代传统的蒽醌法。在此,我们设计了一种二维氧化还原活性阳离子共价三嗪网络,直接用作具有成本效益的无金属电催化剂,用于氧还原反应(ORR)以形成H2O2。这种双阳离子二维聚合物具有孔径为2-10nm的多孔结构,总氮含量为13.3wt%。电子顺磁共振实验证实了基于紫精的聚合物还原为自由基阳离子以及随后超氧自由基的产生。该聚合物中的自由基特性和高氮含量对于通过双电子途径进行高效ORR至关重要。因此,本电催化剂表现出高ORR活性和优异的H2O2选择性(约85%),从而为设计用于从O2电催化生产H2O2的高选择性无金属电催化剂提供了可行的可能性。