Baoqiang Lai, Haonan Qin, Haoyuan Lv, Qiangqiang Lu, Zhimeng Wang, Jilong Yin, Xiaofeng Lai, Haifen Ding, Haitao Lei, Jiwu Zhao, Wei Zhang, Rui Cao
Selective aqueous CO2 reduction is limited by hydrogen evolution. Three cobalt porphyrins with distinct meso-site substituents were synthesized and immobilized on carbon nanotubes. The benzene-substituted CoPh/CNT delivered >92% CO faradaic efficiency. Theoretical studies reveal that moderate electronic effects of the substituents balance CO2 binding and CO release, offering a catalyst design principle.