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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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Fe-S Dually modulated Adsorbate Evolution and Lattice Oxygen Compatible Mechanism for Water Oxidation
Oxygen Octahedral Void-confined Iodine Single-site RuO2 Catalysts for Water Reduction
Hydrogen Evolution Reactivity of Pentagonal Carbon Rings and p-d Orbital Hybridization Effect with Ru
Hydrogen Evolution Reactivity of Pentagonal Carbon Rings and p-d Orbital Hybridization Effect with Ru
武汉理工大学木士春团队Angew: 碳五元环的本征析氢活性及其与Ru的p-d轨道杂化效应
团队学术声誉
Hydrogen Evolution Reactivity of Pentagonal Carbon Rings and p‐d Orbital Hybridization Effect with Ru
Hydrogen Evolution Reactivity of Pentagonal Carbon Rings and p-d Orbital Hybridization Effect with Ru
Hydrogen Evolution Reactivity of Pentagonal Carbon Rings and p‐d Orbital Hybridization Effect with Ru
Molten Salt-assisted Synthesis of Catalysts for Energy Conversion
Hollow Structure Derived Phosphide Nanosheets for Water Oxidation
Robust water/seawater-electrolysis hydrogen production at industrial-scale current densities by modulating built-in-...
Entropy-Increased LiMn2O4-Based Positive Electrodes for Fast-Charging Lithium Metal Batteries
Bicontinuous RuO2 nanoreactors for acidic water oxidation
Entropy-Increased LiMn2O4-Based Positive Electrodes for Fast-Charging Lithium Metal Batteries
Entropy-increased LiMn2O4-based positive electrodes for fast-charging lithium metal batteries
Entropy-increased LiMn2O4-based positive electrodes for fast-charging lithium metal batteries
Entropy-increased LiMn2O4-based positive electrodes for fast charging lithium metal batteries
Entropy-increased LiMn2O4-based positive electrodes for fast charging lithium metal batteries
Entropy-increased LiMn?O?-based positive electrodes for fast-charging lithium metal batteries
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