Multi-interfacial dendritic engineering facilitating congruous intrinsic activity of oxide-carbide/MOF nanostructured multimodal electrocatalyst for hydrogen and oxygen electrocatalysis
Author:
Funder
Ministry of Science, ICT and Future Planning
National Research Foundation of Korea
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,General Environmental Science,Catalysis
Reference56 articles.
1. Marking the decarbonization revolutions;Hanna;Nat. Energy,2021
2. Clean and affordable hydrogen fuel from alkaline water splitting: past, recent progress, and future prospects;Yu;Adv. Mater.,2021
3. Water electrolysis: from textbook knowledge to the latest scientific strategies and industrial developments;Chatenet;Chem. Soc. Rev.,2022
4. High‐alkaline water‐splitting activity of mesoporous 3D heterostructures: an amorphous‐shell@crystalline‐core nano‐assembly of Co‐Ni‐phosphate ultrathin‐nanosheets and V‐ doped cobalt‐nitride nanowires;Singh;Adv. Sci.,2022
5. Ni-nanoclusters hybridized 1T–Mn–VTe2 mesoporous nanosheets for ultra-low potential water splitting;Pan;Appl. Catal. B Environ.,2022
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