堆积
共价键
醛
选择性
化学
吡啶
悬空债券
组合化学
化学工程
材料科学
有机化学
催化作用
硅
工程类
作者
Shuang Zheng,Zhaofeng Ouyang,Minghao Liu,Shuai Bi,Guojuan Liu,Xuewen Li,Qing Xu,Gaofeng Zeng
摘要
Abstract Covalent organic frameworks (COFs) have been utilized as the ideal candidates to preciously construct electrocatalysts. However, the highly ordered degree of COFs renders the catalytic centers closely stacked, which limits the utilization efficiency of catalytic sites. Herein, we have first constructed dangling and staggered‐stacking aldehyde (–CHO) from [4 + 3] COFs as catalytic centers for 2e − oxygen reduction reaction (ORR). The new catalytic COFs have unreacted dangling ‐CHO out of the COFs' planes, which are more easily exposed in electrolytes than the sites in the frameworks. More importantly, these –CHO adopt staggered stacking models, and thus provide larger space for mass transport than those with eclipsed stacking models. In addition, by tuning the triratopic linkers in the COFs, the catalytic properties are well modulated. The optimized COF shows high selectivity and activity for 2e − ORR, with H 2 O 2 selectivity of 91%, and mass activity of 12.2 A g −1 , respectively. The theoretical calculation further reveals the higher activity for the pyridine‐contained B18C6‐PTTA‐COF due to the promoted binding ability of the intermediate OOH* at the carbon in dangling –CHO. This work provides us with a new insight into designing electrocatalysts based on COFs.
科研通智能强力驱动
Strongly Powered by AbleSci AI