As a high-voltage spinel, LiNi0.5Mn1.5O4 (LNMO) is a promising candidate for high energy density cathodes in lithium-ion batteries (LiBs). The material has not yet achieved any commercial success, as there remain problems with capacity fade after extended charge and discharge cycling. In order to enable improvements, it is necessary to understand the fundamental underlying processes in the material. In this experimental study, we present operando Raman measurements to investigate the potential-resolved structural evolution of ordered LNMO as a cathode material during the charging and discharging process. Using the method of Raman spectroscopy, only two phases can be unequivocally distinguished in the case of ordered LNMO, namely, LiNi0.5Mn1...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
The relationship between structure and electrochemical performance of lithium- and manganese-rich ca...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceLithium-ion batteries are commonly used for electrical energy storage in porta...
Lithium manganese-based cathodes are widely used in rechargeable batteries due to their low cost, sa...
Lithium manganese-based cathodes are widely used in rechargeable batteries due to their low cost, sa...
The ever increasing demand for better-performing Li-ion batteries (LIBs) motivates substantial resea...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
The relationship between structure and electrochemical performance of lithium- and manganese-rich ca...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceLithium-ion batteries are commonly used for electrical energy storage in porta...
Lithium manganese-based cathodes are widely used in rechargeable batteries due to their low cost, sa...
Lithium manganese-based cathodes are widely used in rechargeable batteries due to their low cost, sa...
The ever increasing demand for better-performing Li-ion batteries (LIBs) motivates substantial resea...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...
The relationship between structure and electrochemical performance of lithium- and manganese-rich ca...
International audienceDue to its great theoretical capacity (147 mAh g−1) and high operating potenti...