Desolvation of lithium ions and diffusion of Li+ through the solid electrolyte interface (SEI) play an important role in determining the extreme fast-charging ability of graphite for electric vehicle (EV) application. For this reason, a novel aqueous borate type bio-based polymer with inherent Li ions was designed as an SEI forming binder for graphite. The low lying LUMO energy level enabled the preferential reduction of the binder prior to the degradation of the electrolyte or salt to form a thinner and highly conducting borate rich SEI. A robust boron rich SEI and a binder with inherent Li ions improved the kinetics with low activation energy for lithiation/desolvation (22.56 kJ/mol), lower SEI resistance, and a high Li+ diffusion coeffic...
Lithium-ion batteries (LIBs) have matured as a technology and serve as power sources in a wide range...
Although significant progress has been made in improving cycling performance of silicon-based electr...
Dextran was evaluated as a binder material for graphite electrode, silicon electrode, and Si/graphit...
We demonstrate here the possibility of operating both high voltage spinel and high mass loading grap...
A styrene butadiene rubber (SBR)-polyvinylidene difluoride (PVDF) based binder system has been devel...
The overall electrochemical performance of natural graphite is intimately associated with the solid ...
Lithium (Li) metal is considered as the “holy grail” of anode materials for next-generation high ene...
Abrupt Li dendrite growth and the safety hazards caused by liquid electrolytes are generally acknowl...
Graphite is the dominant anode material for commercial Li-ion batteries, whereas developing other gr...
Although graphite materials with desirable comprehensive properties dominate the anode market of com...
Rechargeable lithium-ion battery is the foremost candidate for next generation large scale energy st...
Ionic liquid electrolytes (ILEs) possess nonflammability, low volatility, good thermal stability, an...
In this thesis, electrode binders as vital components in the fabrication of composite electrodes for...
Abstract Graphite offers several advantages as an anode material, including its low cost, high theor...
Nowadays, the demand for high energy density, fast-charging and wide-temperature range lithium-ion b...
Lithium-ion batteries (LIBs) have matured as a technology and serve as power sources in a wide range...
Although significant progress has been made in improving cycling performance of silicon-based electr...
Dextran was evaluated as a binder material for graphite electrode, silicon electrode, and Si/graphit...
We demonstrate here the possibility of operating both high voltage spinel and high mass loading grap...
A styrene butadiene rubber (SBR)-polyvinylidene difluoride (PVDF) based binder system has been devel...
The overall electrochemical performance of natural graphite is intimately associated with the solid ...
Lithium (Li) metal is considered as the “holy grail” of anode materials for next-generation high ene...
Abrupt Li dendrite growth and the safety hazards caused by liquid electrolytes are generally acknowl...
Graphite is the dominant anode material for commercial Li-ion batteries, whereas developing other gr...
Although graphite materials with desirable comprehensive properties dominate the anode market of com...
Rechargeable lithium-ion battery is the foremost candidate for next generation large scale energy st...
Ionic liquid electrolytes (ILEs) possess nonflammability, low volatility, good thermal stability, an...
In this thesis, electrode binders as vital components in the fabrication of composite electrodes for...
Abstract Graphite offers several advantages as an anode material, including its low cost, high theor...
Nowadays, the demand for high energy density, fast-charging and wide-temperature range lithium-ion b...
Lithium-ion batteries (LIBs) have matured as a technology and serve as power sources in a wide range...
Although significant progress has been made in improving cycling performance of silicon-based electr...
Dextran was evaluated as a binder material for graphite electrode, silicon electrode, and Si/graphit...