Harrison Ingham
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View article: Impact of Pyrocarbonate Additives and Salt Chemistries (LiFSI and LiPF<sub>6</sub>) on Gassing and Performance in Silicon-Containing Pouch Cells
Impact of Pyrocarbonate Additives and Salt Chemistries (LiFSI and LiPF<sub>6</sub>) on Gassing and Performance in Silicon-Containing Pouch Cells Open
Silicon (Si)-based negative electrodes are increasingly being integrated into commercial electric vehicle (EV) batteries due to their significantly higher theoretical capacity compared to graphite, enabling improved energy density. However…
View article: Investigation of the Effect of Depth of Discharge/State of Charge Limitations, C-Rate, and Temperature on the Lifetime of Nmc/Silicon-Graphite Pouch Cells
Investigation of the Effect of Depth of Discharge/State of Charge Limitations, C-Rate, and Temperature on the Lifetime of Nmc/Silicon-Graphite Pouch Cells Open
Electric vehicles are consistently being adopted by the consumer market. The associated range anxiety of purchasing an electric vehicle can be partially put at ease by looking at real driving data that shows the average driving distance in…
View article: Lithium Difluoro(dioxalato) Phosphate as an Electrolyte Additive for NMC811/Graphite Li-ion Pouch Cells
Lithium Difluoro(dioxalato) Phosphate as an Electrolyte Additive for NMC811/Graphite Li-ion Pouch Cells Open
Lithium difluoro(dioxalato)phosphate (LiDFDOP) has been systemically studied as an electrolyte additive singly and in combination with co-additives fluoroethylene carbonate (FEC) and vinylene carbonate (VC) in LiNi 0.8 Mn 0.1 Co 0.1 O 2 (N…