Boosting Electrochemical CO<sub>2</sub> Reduction via Surface Hydroxylation over Cu-Based Electrocatalysts
Congcong Li(Ludong University), Zhongliang Liu(East China Normal University), Minghui Zhu(East China University of Science and Technology), Jialin Cui(Qingdao University of Science and Technology), Zhongyuan Guo(East China University of Science and Technology), Tingting Zhang(Northeast Normal University), Huihui Li(East China University of Science and Technology), Hao Li(University of Science and Technology of China), Haojun Shi(Macau University of Science and Technology), Chunzhong Li(East China University of Science and Technology), Ling Zhang(East China University of Science and Technology)
Cited by 73
Related Papers
Insights into the activity of nickel boride/nickel heterostructures for efficient methanol electrooxidation
|Nature Communications|2022|444
Defect‐Rich Adhesive Molybdenum Disulfide/rGO Vertical Heterostructures with Enhanced Nanozyme Activity for Smart Bacterial Killing Application
|Advanced Materials|2020|306
Application of Artificial Neural Networks for Catalysis: A Review
|Catalysts|2017|227
A polymer tethering strategy to achieve high metal loading on catalysts for Fenton reactions
|Nature Communications|2023|164