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[1]Guiding Sulfur Conversion Toward Favored Speciation via Fe Single Atom/Cluster Synergistic Catalysis in Lithium Sulfur Batteries.Advanced Functional Materials, 2026, 36: e32156.
[2]Vacancy-induced asymmetric coordination of single-atom bismuth for selective photoelectrochemical oxidation of glycerol to dihydroxyacetone.Journal of Materials Chemistry A, 2026, 14(22): 13471-13481.
[3]Frontier advances in high-entropy electrolytes for alkali metal and multivalent metal batteries.Journal of Power Sources, 2026, 662: 238725.
[4]Recent Advances on Transition Metal Sulfides for Key Components of Lithium–Sulfur Batteries.Advanced Science, 2025, 12(40): e12191.
[5]A volcano correlation between catalytic activity and d band center regulated by the positions of P doping in Co SACs.Chemical Engineering Journal, 2025, 522: 168102.
[6]Large-Scale Floating Polyacrylonitrile Hybrid Micro-/Nanofiber Membrane Achieves Efficient H/D Isotope Separation via Photocatalytic Proton Transport.Journal of Membrane Science, 2025, 713: 123336.
[7]Multi-orbital synergy in medium-entropy chalcogenide catalysts accelerating sulfur redox kinetic for high-rate lithium-sulfur batteries.Chemical Engineering Journal, 2025, 521: 167190.
[8]Insight into Bi-Sb alloys and their chalcogenide compounds for sodium/potassium ion battery (SIB/PIB) anodes.Progress in Solid State Chemistry, 2025, 80: 100545.
[9]N-doped carbon-coated MoSe2/N-C hollow nanotubes as high-performance anodes for potassium-ion batteries with enhanced cycling stability and rate capability.Materials Today Energy, 2025, 53: 102050.
[10]Photolysis-driven separation of Li/Fe in deep eutectic solvent recycling of spent LiFePO4 batteries: High-efficiency leaching and sustainable regeneration.Journal of Environmental Chemical Engineering, 2025, 13: 120368.
[11]Cutting-edge advances for the positive electrode in aqueous K-ion batteries: exploring electrochemical properties, structural designs, and applicable perspectives.Journal of Materials Chemistry A, 2025, 13: 18146.
[12]Understanding the operation and failure mechanism of a stable, safety-critical, electrodeposited lithium-aluminium alloy anode for lithium-sulfur batteries.Journal of Power Sources, 2025, 629: 236028.
[13]Single-Atomic-Site Platinum Steers Middle Hydroxyl Selective Oxidation on Amorphous/Crystalline Homojunction for Photoelectrochemical Glycerol Oxidation Coupled with Hydrogen Generation.Adv. Funct. Mater. 2024: 2316238.
[14]Enhanced Solar-to-Hydrogen Conversion and Hydrogen Isotope Separation through Interfacial Hydrogen-Bond Engineering and Homolytic O-H Cleavage on Multianionic Sulfides in Large-Scale Floating Nanocomposites.ACS Catalysis, 2024, 14(11): 9077-9092.
[15]Developing Rapid-Charging Li-S Batteries via “Target Catalysis” of Cations and Anions Modified Electrocatalyst.Small, 2024: 202406863.
[16]Enhanced photoelectrochemical oxidation of glycerol to dihydroxyacetone coupled with hydrogen generation via accelerative middle hydroxyl dehydrogenation over a Bi0/Bi3+ interface of a cascade heterostructure.J. Mater. Chem. A, 2023, 11: 20242-20253.
[17]Strengthened d-p Orbital-Hybridization of Single Atoms with Sulfur Species Induced Bidirectional Catalysis for Lithium–Sulfur Batteries.Adv. Funct. Mater. 2023, 33: 2306049.
[18]Effects of soft sparking on micro/nano structure and bioactive components of microarc oxidation coatings on selective laser melted Ti6Al4V alloy.Surface & Coatings Technology, 2023, 462: 129478.
[19]Engineering the Near-Surface Structure of WO3 by an Amorphous Layer with Trivalent Ni and Self-Adapting Oxygen Vacancies for Efficient Photocatalytic and Photoelectrochemical Acidic Oxygen Evolution Reaction.ACS Appl. Mater. Interfaces, 2022, 14: 54769-54780.
[20]Bioactive submicron-pore design of microarc oxidation coating on Ti6Al4V alloy prepared by selective laser melting method.Surface & Coatings Technology, 2022, 444: 128696.
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