Jing Yang
0000-0002-3731-368X
Tianjin University
25 papers found
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Cu-based bubble and ion sieve for ampere-level hydrogen evolution
Construction of Co–Se–W at Interfaces of Phase‐Mixed Cobalt Selenide via Spontaneous Phase Transition for Platinum‐Like Hydrogen Evolution Activity and Long‐Term Durability in Alkaline and Acidic Media
Dislocation-Activated Low Platinum-Loaded PtCu Nanoparticles Welded onto the Substrate for Practical Acidic Hydrogen Generation
Regulating H2/CO Ratios in Syngas via CO2 Electroreduction with the Silver–Nickel Bimetallic Electrocatalyst in a Solid-Electrolyte Membrane Electrode Assembly
Amorphous/Crystalline Phases Mixed Nanosheets Array Rich in Oxygen Vacancies Boost Oxygen Evolution Reaction of Spinel Oxides in Alkaline Media
Nanoporous Bismuth Induced by Surfactant-Modified Dealloying for Efficient Electrocatalytic Reduction of CO2 to Formic Acid
Copper Nanoparticles with Abundant Defects as a pH-Universal Catalyst for Hydrogen Evolution Reaction
Silver Clusters with Adatoms as a Catalyst for the Oxygen Reduction Reaction
A Strongly Coupled Ag(S)@NiO/Nickel Foam Electrode Induced by Laser Direct Writing for Hydrogen Evolution at Ultrahigh Current Densities with Long‐Term Durability
Plasmonic Aluminum Nanostructures Synergizing with Oxygen Vacancies in Zinc Oxides for Enhanced Photoelectrocatalysis
Activating self-supported NiPd electrodes by laser-direct-writing for efficient hydrogen evolution reaction
Clean Synthesis of Bismuth Porous Nanosheets for Efficient CO2 Electroreduction
Mechanically processing copper plate into active catalyst for electrochemical hydrogen production
Polycrystalline CoO−Co9S8 Heterostructure Nanoneedle Arrays as Bifunctional Catalysts for Efficient Overall Water Splitting
Promoting the activity and selectivity of Ni sites via chemical coordination with pyridinic nitrogen for CO2-to-CO electrochemical catalysis
Activating Edge-Mo of 2H-MoS2 via Coordination with Pyridinic N–C for pH-Universal Hydrogen Evolution Electrocatalysis
Dominating Role of Interfacial N–Ni Coordination in Spinel Nickel Ferrite/N‐Doped Graphene Hybrids for Boosting Reversible Oxygen Electrocatalysis
Optimizing the electronic structure of cobalt via synergized oxygen vacancy and Co-N-C to boost reversible oxygen electrocatalysis for rechargeable Zn-air batteries
Engineering Electronic Structures of Nickel Cobalt Phosphide via Iron Doping for Efficient Overall Water Splitting
Ultrafine SmMn2O5-δ electrocatalysts with modest oxygen deficiency for highly-efficient pH-neutral magnesium-air batteries
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