Junxiong Wang
0000-0001-6998-0711
32 papers found
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Sustainable upcycling of mixed spent cathodes to a high-voltage polyanionic cathode material
Toward Direct Regeneration of Spent Lithium-Ion Batteries: A Next-Generation Recycling Method
Subtractive transformation of cathode materials in spent Li-ion batteries to a low-cobalt 5 V-class cathode material
Topotactic Transformation of Surface Structure Enabling Direct Regeneration of Spent Lithium-Ion Battery Cathodes
Adaptable Eutectic Salt for the Direct Recycling of Highly Degraded Layer Cathodes
Suppressed Lattice Oxygen Release via Ni/Mn Doping from Spent LiNi0.5Mn0.3Co0.2O2 toward High-Energy Layered-Oxide Cathodes
Efficient Extraction of Lithium from Anode for Direct Regeneration of Cathode Materials of Spent Li-Ion Batteries
Lithium Fluoride in Electrolyte for Stable and Safe Lithium‐Metal Batteries
High-Performance Lithium Metal Batteries with a Wide Operating Temperature Range in Carbonate Electrolyte by Manipulating Interfacial Chemistry
Ammonia chloride assisted air-chlorination recovery of tin from pyrometallurgical slag of spent lead-acid battery
A green strategy to synthesize two-dimensional lead halide perovskite via direct recovery of spent lead-acid battery
Rational design of functional binder systems for high-energy lithium-based rechargeable batteries
Effect of particle size on phase transitions of positive active materials made from novel leady oxide during soaking process and its influence on lead-acid battery capacity
A closed-loop ammonium salt system for recovery of high-purity lead tetroxide product from spent lead-acid battery paste
Mechano-chemical synthesis of high-stable PbO@C composite for enhanced performance of lead-carbon battery
A low-emission strategy to recover lead compound products directly from spent lead-acid battery paste: Key issue of impurities removal
Facile and Cost-Effective Approach for Copper Recovery from Waste Printed Circuit Boards via a Sequential Mechanochemical/Leaching/Recrystallization Process
Role of Iron Impurity in Hydrometallurgical Recovery Process of Spent Lead-Acid Battery: Phase Transformation of Positive Material Made from Recovered Leady Oxide
Rapid Electrochemical Assessment of the Leady Oxide Recovered from Spent Lead Pastes: A Case Study on the Effect of Iron and Antimony Doping
Synthesis of the PbS Dendritic Nanostructure Recovered from a Spent Lead-Acid Battery via an Integrated Vacuum Chlorinating and Hydrothermal Process
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