The incorporation of additives designed to sacrificially react on the surface of cathode materials in lithium ion batteries has been investigated. Addition of low concentrations of either 2,5-dihydrofuran or γ -butyrolactone to 1 M LiPF6 in 1:1:1 ethylene carbonate/diethyl carbonate/dimethyl carbonate improves the capacity retention of Li/Li 1.17Mn0.58Ni0.25O2 cells cycled at 4.9 V vs Li. A surface analysis of the cathode materials (X-ray photoelectron spectroscopy and IR) suggests that the structure of the cathode surface film is modified by the presence of the additives resulting in a decrease in detrimental electrolyte oxidation reactions on the cathode surface. © 2009 The Electrochemical Society
This study examined the properties of 1 wt.% vinylene carbonate, vinyl ethylene carbonate, and diphe...
There is an ever increasing demand for fossil fuels. Lithium ion batteries (LIBs) can effectively re...
Thermal reactions between cathode particles (LiNi0.8Co0.2O2, LiCoO2, LiMn2O4 and LiFePO4) and ternar...
The incorporation of additives designed to sacrificially react on the surface of cathode materials i...
The incorporation of additives designed to sacrificially react on the surface of cathode materials o...
The incorporation of additives designed to sacrificially react on the surface of cathode materials o...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
Electrolyte oxidation generates polyethylene carbonate on cathode surface LiPF6 Electrolytes can dis...
Lithium-ion batteries (LIBs) are one of the most widely used portable power sources, especially for ...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years (3-5...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years. How...
We have developed novel non-flammable high voltage electrolytes for lithium ion batteries. The optim...
Lithium bis(oxalato) borate (LiBOB) is utilized as an oxidative additive to prevent the unwanted ele...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years (3-5...
The effect of the electrolyte additive fluoroethylene carbonate (FEC) for Li-ion batteries has been ...
This study examined the properties of 1 wt.% vinylene carbonate, vinyl ethylene carbonate, and diphe...
There is an ever increasing demand for fossil fuels. Lithium ion batteries (LIBs) can effectively re...
Thermal reactions between cathode particles (LiNi0.8Co0.2O2, LiCoO2, LiMn2O4 and LiFePO4) and ternar...
The incorporation of additives designed to sacrificially react on the surface of cathode materials i...
The incorporation of additives designed to sacrificially react on the surface of cathode materials o...
The incorporation of additives designed to sacrificially react on the surface of cathode materials o...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
Electrolyte oxidation generates polyethylene carbonate on cathode surface LiPF6 Electrolytes can dis...
Lithium-ion batteries (LIBs) are one of the most widely used portable power sources, especially for ...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years (3-5...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years. How...
We have developed novel non-flammable high voltage electrolytes for lithium ion batteries. The optim...
Lithium bis(oxalato) borate (LiBOB) is utilized as an oxidative additive to prevent the unwanted ele...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years (3-5...
The effect of the electrolyte additive fluoroethylene carbonate (FEC) for Li-ion batteries has been ...
This study examined the properties of 1 wt.% vinylene carbonate, vinyl ethylene carbonate, and diphe...
There is an ever increasing demand for fossil fuels. Lithium ion batteries (LIBs) can effectively re...
Thermal reactions between cathode particles (LiNi0.8Co0.2O2, LiCoO2, LiMn2O4 and LiFePO4) and ternar...