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Prof. Dr. Shichun Mu's group
State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology
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Current Location :> Home > News
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Mu''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''...
Ionothermal Route to Phase-Pure RuB2 Catalysts for Efficient Oxy-gen Evolution and Water Splitting in Acid Media
Ru-doped 3D flower-like bimetallic phosphide with a climbing effect on overall water splitting
Ionothermal Route to Phase-Pure RuB2 Catalysts for Efficient Oxygen Evolution and Water Splitting in Acid Media
ZIF-8/LiFePO4 Derived Fe-N-P Co-doped Carbon Nanotube Encapsulated Fe2P Nanoparticles for Efficient Oxygen Reduction...
MaterialsViewsChina: Ultralow Ru loading transition metal phosphides as high-efficient bifunctional electrocatalyst ...
Ultralow Ru Loading Transition Metal Phosphides as High‐Efficient Bifunctional Electrocatalyst for a Solar‐to‐Hyd...
Ultralow Ru loading transition metal phosphide s as high-efficient bifunctional electrocatalyst for a solar-to-hydro...
Ultralow Ru Loading Transition Metal Phosphides as High‐Efficient Bifunctional Electrocatalyst for a Solar‐to‐Hyd...
Defect Engineering in the Carbon‐Based Electrocatalysts: Insight into the Intrinsic Carbon Defects
Professor Mu Shichun has made important progress in the research of non precious metal electrolytic water catalyst
Defect engineering in the carbon-based electrocatalysts: Insight into the intrinsic carbon defects. Advanced Functio...
Defect Engineering in the Carbon-Based Electrocatalysts: Insight into the Intrinsic Carbon Defects
Wiley能源催化领域最新进展
【催化前沿】| 俞书宏、冯新亮、付宏刚、木士春、王双印、邓德会、谷猛、王连洲等催化研究最新成果速览
Defect Engineering for Fuel‐Cell Electrocatalysts
Nitrogen-Doped Carbon Coupled FeNi3 Intermetallic Compound as Advanced Bifunctional Electrocatalyst for OER, ORR and...
A universal synthesis strategy for P-rich noble metal diphosphide-based electrocatalysts for the hydrogen evolution ...
About Intrinsic Pentagon Defects
Hot papers in the electrocatalysis (2019)
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