CO2 Reduction Techniques and CatalystsChemical Looping and Thermochemical ProcessesCarbon Dioxide Capture Technologies

Shaona Wang, Yang Yang, Wenqing Xu, Zhuoshu Bai, Fabing Su, Yixi Wang, Dingrong Bai, T. Zhu

2026.1.7Carbon Neutrality

DOI: 10.1007/s43979-025-00157-4

Abstract

As an integrated CO 2 capture and utilization (ICCU) process, direct electrochemical reduction of amine captured-CO 2 reduction reaction (cCO 2 RR) has enormous advantages in energy efficiency and operating cost. The low product selectivity is an urgent issue. Here, we found that the hydroxyl (-OH) on CeO 2 can significantly enhance CO selectivity. After hydroxyl modification, the CO faraday efficiency (FE CO ) was surprisingly increased by 188% (relative increase rate). The correlation coefficient between -OH quantity and FE CO is as high as 0.98. Further study indicated that the presence of -OH can lead to a more compact electrochemical double layer (EDL) and charge transfer resistance by proton transfer. The -OH can also enhance CO 2 adsorption and stabilize the intermediate species (*COOH). DFT results further demonstrate that the rate-determining step was proton transfer from the surface -OH to MEACOO − , -OH modification can reduce the energy barrier to as low as 0.39 eV. This work provides additional insights into improving selectivity in amine-based cCO 2 RR, advancing the development of ICCU technology.

Citation format

WANG, Shaona, et al. Crucial role of hydroxyl in CO selectivity for integrated CO2 capture and electrocatalytic reduction. Carbon Neutrality, 2026, 5(1).