Won-Jin Kwak
0000-0002-9807-1434
Hanyang University
22 papers found
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Lithium–Oxygen Batteries and Related Systems: Potential, Status, and Future
Controllable and stable organometallic redox mediators for lithium oxygen batteries
Mutual Conservation of Redox Mediator and Singlet Oxygen Quencher in Lithium–Oxygen Batteries
Deactivation of redox mediators in lithium-oxygen batteries by singlet oxygen
A dendrite- and oxygen-proof protective layer for lithium metal in lithium–oxygen batteries
2,4-Dimethoxy-2,4-dimethylpentan-3-one: An Aprotic Solvent Designed for Stability in Li–O2 Cells
Optimized Bicompartment Two Solution Cells for Effective and Stable Operation of Li-O2 Batteries
Large-Scale LiO2Pouch Type Cells for Practical Evaluation and Applications
Sodium oxygen batteries: one step further with catalysis by ruthenium nanoparticles
Feasibility of Full (Li-Ion)–O2 Cells Comprised of Hard Carbon Anodes
Iron–cobalt bimetal decorated carbon nanotubes as cost-effective cathode catalysts for Li–O2batteries
Li–O2cells with LiBr as an electrolyte and a redox mediator
Understanding problems of lithiated anodes in lithium oxygen full-cells
Fluorine-doped porous carbon-decorated Fe3O4-FeF2 composite versus LiNi0.5Mn1.5O4 towards a full battery with robust capability
A Mo2C/Carbon Nanotube Composite Cathode for Lithium–Oxygen Batteries with High Energy Efficiency and Long Cycle Life
ChemInform Abstract: A Sustainable Iron-Based Sodium Ion Battery of Porous Carbon-Fe3O4/Na2FeP2O7with High Performance.
Nanoconfinement of low-conductivity products in rechargeable sodium–air batteries
Understanding the behavior of Li–oxygen cells containing LiI
An Advanced Lithium-Air Battery Exploiting an Ionic Liquid-Based Electrolyte
Lithiation of an Iron Oxide-Based Anode for Stable, High-Capacity Lithium-Ion Batteries of Porous Carbon–Fe3O4/Li[Ni0.59Co0.16Mn0.25]O2
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