Chuan Zhao
0000-0001-7007-5946
47 papers found
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Suppressed Manganese Oxides Shuttling in Acidic Electrolytes Extends Shelf‐Life of Electrolytic Proton Batteries
Low‐Electronegativity Mn‐Contraction of PtMn Nanodendrites Boosts Oxygen Reduction Durability
Operando investigations of proton exchange membrane fuel cells performance during air interruptions in dry and humidified conditions
Highly Ordered Hierarchical Porous Single‐Atom Fe Catalyst with Promoted Mass Transfer for Efficient Electroreduction of CO2
Atomically Dispersed Cu–Au Alloy for Efficient Electrocatalytic Reduction of Carbon Monoxide to Acetate
Large-scale physically accurate modelling of real proton exchange membrane fuel cell with deep learning
Operando monitoring of the evolution of triple-phase boundaries in proton exchange membrane fuel cells
Monometallic interphasic synergy via nano-hetero-interfacing for hydrogen evolution in alkaline electrolytes
Co‐insertion of Water with Protons into Organic Electrodes Enables High‐Rate and High‐Capacity Proton Batteries
Operando deconvolution of the degradation mechanisms of iron–nitrogen–carbon catalysts in proton exchange membrane fuel cells
From bulk metals to single-atoms: design of efficient catalysts for the electroreduction of CO2
Operando monitoring of gas bubble evolution in water electrolysis by single high-frequency impedance
Operando detection of oxygen reduction reaction kinetics of Fe–N–C catalysts in proton exchange membrane fuel cells
Hydrogen‐Bond Disrupting Electrolytes for Fast and Stable Proton Batteries
Electronic Regulation of Nickel Single Atoms by Confined Nickel Nanoparticles for Energy‐Efficient CO2 Electroreduction
Fe–N–C/Fe nanoparticle composite catalysts for the oxygen reduction reaction in proton exchange membrane fuel cells
Cosynergistic Molybdate Oxo‐Anionic Modification of FeNi‐Based Electrocatalysts for Efficient Oxygen Evolution Reaction
Sulfur‐Dopant‐Promoted Electroreduction of CO2 over Coordinatively Unsaturated Ni‐N2 Moieties
Nitrogen Vacancy Induced Coordinative Reconstruction of Single‐Atom Ni Catalyst for Efficient Electrochemical CO2 Reduction
“Water‐in‐Sugar” Electrolytes Enable Ultrafast and Stable Electrochemical Naked Proton Storage
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