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Publications (14)
- High-Temperature Treatment of Li-Rich Cathode Materials with Ammonia: Improved Capacity and Mean Voltage Stability during Cycling Save
- Studies of Spinel-to-Layered Structural Transformations in LiMn<inf>2</inf>O<inf>4</inf>Electrodes Charged to High Voltages Save
- Stabilizing nickel-rich layered cathode materials by a high-charge cation doping strategy: Zirconium-doped LiNi<inf>0.6</inf>Co<inf>0.2</inf>Mn<inf>0.2</inf>O<inf>2</inf> Save
- Improvement of the electrochemical characteristics of lithium and manganese rich layered cathode materials: Effect of surface coating Save
- Li+-Ion Extraction/Insertion of Ni-Rich Li<inf>1+x</inf>(Ni<inf>y</inf>Co<inf>z</inf>Mn<inf>z</inf>)<inf>w</inf>O<inf>2</inf>(0.005<x<0.03; y: Z=8:1, w≈1) Electrodes: In Situ XRD and Raman Spectroscopy Study Save
- Studies of aluminum-doped LiNi<inf>0.5</inf>Co<inf>0.2</inf>Mn<inf>0.3</inf>O<inf>2</inf>: Electrochemical behavior, aging, structural transformations, and thermal characteristics Save
- Electrochemical characteristics of xLi<inf>2</inf>MnO<inf>3</inf>-(1-x) Li(Mn<inf>0.375</inf>Ni<inf>0.375</inf>Co<inf>0.25</inf>)O<inf>2</inf>(0.0 ≤ x ≤ 1.0) composite cathodes: Effect of particle and Li<inf>2</inf>MnO<inf>3</inf>domain size Save
- Electrochemical performances of 0.9Li<inf>2</inf>MnO<inf>3</inf>-0. 1Li(Mn<inf>0.375</inf>Ni<inf>0.375</inf>Co<inf>0.25</inf>)O<inf>2</inf>cathodes: Role of the cycling induced layered to spinel phase transformation Save
- New horizons for conventional lithium ion battery technology Save
- Synthesis and electrochemical characteristics of x Li<inf>2</inf>MnO<inf>3</inf>-(1-x)Li(Mn<inf>0.375</inf>Ni<inf>0.375</inf>Co<inf>0.25</inf>)O<inf>2</inf>(0.0 ≤ x ≤ 1.0) thin film cathode for lithium rechargeable micro batteries Save