Area of research
Electrical and Electronic Engineering · Catalysis
Research interest
Research interests include Electrolyte, Materials science, Electrochemistry, Lithium (medication), Ammonia, and Faraday efficiency.
Multivariate covalent organic frameworks with tailored electrostatic potential promote nitrate electroreduction to ammonia in acid
Intensified ion-to-channel interactions within pyridinic covalent organic framework membranes towards exclusive lithium-ion sieving
Weakened ionization electrolyte with n-hexane additive enabling high activity of lithium-mediated nitrogen fixation
Facet-governed Zn homoepitaxy <i>via</i> lattice potential regulation
Optimizing Si─O Conjugation to Enhance Interfacial Kinetics for Low‐Temperature Rechargeable Lithium‐Ion Batteries
Molecular Dynamics Simulations for Electrocatalytic CO<sub>2</sub> Reduction: Bridging Macroscopic Experimental Observations and Microscopic Explanatory Mechanisms
Principles and Design of Biphasic Self‐Stratifying Batteries Toward Next‐Generation Energy Storage
Reshaping hydrogen bond network in aqueous-aprotic hybrid electrolyte to achieve highly selective ambient ammonia synthesis
General corrosion endowed by electrolyte engineering enhancing Lithium-Mediated nitrogen fixation
Solvent‐in‐Gas System for Promoted Photocatalytic Ammonia Synthesis on Porous Framework Materials
Strong Replaces Weak: Design of H-Bond Interactions Enables Cryogenic Aqueous Zn Metal Batteries
Molecular Imprinting Technology Enables Proactive Capture of Nitrogen for Boosted Ammonia Synthesis under Ambient Conditions
High‐entropy alloys for accessing hydrogen economy via sustainable production of fuels and direct application in fuel cells
Excluding the Trouble from Interfacial Water by Covalent Organic Polymer to Realize Extremely Reversible Zn Anode
Nonafluorobutane‐1‐Sulfonic Acid Induced Local High Concentration Additive Interface for Robust SEI Formation of High‐Voltage (5 V‐Class) Lithium Metal Batteries
Eliminating Concentration Polarization with Cationic Covalent Organic Polymer to Promote Effective Overpotential of Nitrogen Fixation
Exploiting nonaqueous self-stratified electrolyte systems toward large-scale energy storage
Achieving Rapid Ultralow-Temperature Ion Transfer via Constructing Lithium–Anion Nanometric Aggregates to Eliminate Li<sup>+</sup>–Dipole Interactions
Extending Ring‐Chain Coupling Empirical Law to Lithium‐Mediated Electrochemical Ammonia Synthesis
Eliminating Concentration Polarization with Cationic Covalent Organic Polymer to Promote Effective Overpotential of Nitrogen Fixation
Unity of Opposites between Soluble and Insoluble Lithium Polysulfides in Lithium–Sulfur Batteries
Weakening Li<sup>+</sup> De‐solvation Barrier for Cryogenic Li–S Pouch Cells
Advanced In Situ Characterization Techniques for Direct Observation of Gas‐Involved Electrochemical Reactions
Advancing the Electrochemistry of Gas‐Involved Reactions through Theoretical Calculations and Simulations from Microscopic to Macroscopic
Interfacial Microextraction Boosting Nitrogen Feed for Efficient Ambient Ammonia Synthesis in Aqueous Electrolyte
Cationic Covalent Organic Framework with Ultralow HOMO Energy Used as Scaffolds for 5.2 V Solid Polycarbonate Electrolytes
Processing robust lithium metal anode for high-security batteries: A minireview
New Type of Dynamically “Solid–Liquid” Interconvertible Electrolyte for High-Rate Zn Metal Battery
Surpassing the Redox Potential Limit of Organic Cathode Materials via Extended p−π Conjugation of Dioxin
Excluding false positives: A perspective toward credible ammonia quantification in nitrogen reduction reaction