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2022[1]
Sulfuration of Li-Rich Mn-Based Cathode Materials for Multianionic Redox and Stabilized Coordination Environment,
ADVANCED MATERIALS,
2022,
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2022[2]
A strongly complexed solid polymer electrolyte enables a stable solid state high-voltage lithium metal battery,
ENERGY & ENVIRONMENTAL SCIENCE,
2022,
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2022[3]
Entropy Stabilization Strategy for Enhancing the Local Structural Adaptability of Li-Rich Cathode Materials,
ADVANCED MATERIALS,
2022,
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2023[4]
PtFeCoNiCu high-entropy solid solution alloy as highly efficient electrocatalyst for the oxygen reduction reaction,
ISCIENCE,
2023,
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2023[5]
Regulating the Potential of Anion Redox to Reduce the Voltage Hysteresis of Li-Rich Cathode Materials,
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY,
2023,
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2023[6]
Engineering Structurally Ordered High-Entropy Intermetallic Nanoparticles with High-Activity Facets for Oxygen Reduction in Practical Fuel Cells,
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY,
2023,
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2023[7]
Unlocking the Potential of Li-Rich Mn-Based Oxides for High-Rate Rechargeable Lithium-Ion Batteries,
ADVANCED MATERIALS,
2023,
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2023[8]
Building Better Full Manganese-Based Cathode Materials for Next-Generation Lithium-Ion Batteries,
ELECTROCHEMICAL ENERGY REVIEWS,
2023,
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2024[9]
Constructing Fully-Active and Ultra-Active Sites in High-Entropy Alloy Nanoclusters for Hydrazine Oxidation-Assisted Electrolytic Hydrogen Production,
ADVANCED MATERIALS,
2024,
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2024[10]
An Ultrasmall Ordered High-Entropy Intermetallic with Multiple Active Sites for the Oxygen Reduction Reaction,
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY,
2024,