Reviving Aged Lithium‐Ion Batteries and Prolonging their Cycle Life by Sinusoidal Waveform Charging Strategy

[1]  Ralph E. White,et al.  Capacity Fade Mechanisms and Side Reactions in Lithium‐Ion Batteries , 1998 .

[2]  Tsair-Rong Chen,et al.  Sinusoidal-Ripple-Current Charging Strategy and Optimal Charging Frequency Study for Li-Ion Batteries , 2013, IEEE Transactions on Industrial Electronics.

[3]  孙世刚,et al.  Diagnosis of Electrochemical Impedance Spectroscopy in Lithium Ion Batteries , 2010 .

[4]  Joeri Van Mierlo,et al.  Lithium-ion batteries: Evaluation study of different charging methodologies based on aging process , 2015 .

[5]  Chaoyang Wang,et al.  Cycle-Life Characterization of Automotive Lithium-Ion Batteries with LiNiO2 Cathode , 2009 .

[6]  Petr Novák,et al.  The influence of the local current density on the electrochemical exfoliation of graphite in lithium-ion battery negative electrodes , 2011 .

[7]  Thangavel Sangeetha,et al.  Moderate Energy for Charging Li-Ion Batteries Determined by First-Principles Calculations , 2018, Batteries & Supercaps.

[8]  Shengbo Zhang The effect of the charging protocol on the cycle life of a Li-ion battery , 2006 .

[9]  Xiaosong Hu,et al.  Optimal Charging of Li-Ion Batteries With Coupled Electro-Thermal-Aging Dynamics , 2017, IEEE Transactions on Vehicular Technology.

[10]  M. Broussely,et al.  Aging mechanism in Li ion cells and calendar life predictions , 2001 .

[11]  T. Chan,et al.  O-Glycosidic bond exocyclic cleavage of difructose led by acidic proton migration: Density functional theory calculation study , 2012 .

[12]  Xiaosong Hu,et al.  Charging optimization in lithium-ion batteries based on temperature rise and charge time , 2017 .