The application of high voltage cathode electrode materials is an effective way to increase the energy density of batteries. However, the development and design of a stable electrolyte at high voltages needs to be further addressed. Herein, we developed a non-flammable dual-salt deep eutectic solvent (DES) as a safe electrolyte containing LiTFSI, LiDFOB, and succinonitrile in different molar ratios. This non-flammable DES provides high ionic conductivity (4.23 mS cm−1) at 25 °C, high Li+ transference number (0.75), and wide electrochemical stability (>5.5 V). When using the designed DES electrolytes in high voltage LiCoO2||Li cells, superior electrochemical performance was achieved at cut-off voltages of 3.0–4.45 V and 3.0–4.6 V, even at a ...
The development of high safety lithium-ion batteries (LIBs) is greatly impeded by the flammability a...
The electrolyte is a crucial part of any lithium battery, strongly affecting longevity and safety. I...
Developing a long-term stable electrolyte is one of the most enormous challenges for Li–O<sub>2</sub...
International audienceHerein we present a study on the physical/chemical properties of a new Deep Eu...
International audienceIn this work, we present a study on the physical and electrochemical propertie...
In this work, a dual-lithium salt was proposed for constructing an electrolyte for high energy densi...
Simply mixing several lithium salts in one electrolyte to obtain blended salt electrolytes has been ...
The development of lithium-metal batteries is limited by the low thermodynamic and/or low voltage st...
The safety issues of lithium-ion batteries require the substitution of volatile and flammable organi...
We have developed novel non-flammable high voltage electrolytes for lithium ion batteries. The optim...
The combination of Li-metal anode and high-voltage cathode is regarded as a solution for the next-ge...
The key to realize long-life high energy density lithium batteries is to exploit functional electrol...
Finding a viable electrolyte for next-generation 5 V-class lithium-ion batteries is of primary impor...
peer reviewedSodium-ion batteries are alternatives for lithium-ion batteries in applications where c...
The development of electrolytes with high safety, high ionic conductivity, and the ability to inhibi...
The development of high safety lithium-ion batteries (LIBs) is greatly impeded by the flammability a...
The electrolyte is a crucial part of any lithium battery, strongly affecting longevity and safety. I...
Developing a long-term stable electrolyte is one of the most enormous challenges for Li–O<sub>2</sub...
International audienceHerein we present a study on the physical/chemical properties of a new Deep Eu...
International audienceIn this work, we present a study on the physical and electrochemical propertie...
In this work, a dual-lithium salt was proposed for constructing an electrolyte for high energy densi...
Simply mixing several lithium salts in one electrolyte to obtain blended salt electrolytes has been ...
The development of lithium-metal batteries is limited by the low thermodynamic and/or low voltage st...
The safety issues of lithium-ion batteries require the substitution of volatile and flammable organi...
We have developed novel non-flammable high voltage electrolytes for lithium ion batteries. The optim...
The combination of Li-metal anode and high-voltage cathode is regarded as a solution for the next-ge...
The key to realize long-life high energy density lithium batteries is to exploit functional electrol...
Finding a viable electrolyte for next-generation 5 V-class lithium-ion batteries is of primary impor...
peer reviewedSodium-ion batteries are alternatives for lithium-ion batteries in applications where c...
The development of electrolytes with high safety, high ionic conductivity, and the ability to inhibi...
The development of high safety lithium-ion batteries (LIBs) is greatly impeded by the flammability a...
The electrolyte is a crucial part of any lithium battery, strongly affecting longevity and safety. I...
Developing a long-term stable electrolyte is one of the most enormous challenges for Li–O<sub>2</sub...