Li+ solvation structures have a decisive influence on the electrode/electrolyte interfacial properties and battery performances. Reduced salt concentration may result in an organic rich solid electrolyte interface (SEI) and catastrophic cycle stability, which makes low concentration electrolytes (LCEs) rather challenging. Solvents with low solvating power bring in new chances to LCEs due to the weak salt-solvent interactions. Herein, an LCE with only 0.25 mol L-1 salt is prepared with fluoroethylene carbonate (FEC) and 1,1,2,2-tetrafluoroethyl-2,2,3,3-tetrafluoropropylether (D-2). Molecular dynamics simulations and experiments prove that the low solvating power solvent FEC not only renders reduced desolvation energy to Li+ and improves the ...
The reduction in the usage of fossil fuels can be achieved by focusing on the development of high-en...
Lithium–sulfur batteries are attractive for automobile and grid applications due to their high theor...
Electrolytes play pivotal roles in the stabilization of Li metal surface and operation at high volta...
Li+ solvation structures have a decisive influence on the electrode/electrolyte interfacial properti...
© 2022 American Chemical Society. All rights reserved.A variety of electrolyte engineering strategie...
Lithium metal battery has attracted tremendous attention because of its superior energy density. How...
Electrolytes play pivotal roles in the stabilization of Li metal surface and operation at high volta...
The unstable electrode/electrolyte interface is one of the key obstacles for practical Ah-level Li m...
Nonaqueous carbonate electrolytes are commonly used in commercial lithium-ion battery (LIB). However...
Lithium batteries have been widely used in various fields such as portable electronic devices, elect...
As the world faces a growing need to electrify and reduce carbon emissions, batteries offer much nee...
The activity of lithium ions in electrolytes depends on their solvation structures. However, the und...
There is an ever increasing demand for fossil fuels. Lithium ion batteries (LIBs) can effectively re...
The electrolyte is a crucial part of any lithium battery, strongly affecting longevity and safety. I...
Localized high-concentration electrolytes (LHCEs) provide a new way to expand multifunctional electr...
The reduction in the usage of fossil fuels can be achieved by focusing on the development of high-en...
Lithium–sulfur batteries are attractive for automobile and grid applications due to their high theor...
Electrolytes play pivotal roles in the stabilization of Li metal surface and operation at high volta...
Li+ solvation structures have a decisive influence on the electrode/electrolyte interfacial properti...
© 2022 American Chemical Society. All rights reserved.A variety of electrolyte engineering strategie...
Lithium metal battery has attracted tremendous attention because of its superior energy density. How...
Electrolytes play pivotal roles in the stabilization of Li metal surface and operation at high volta...
The unstable electrode/electrolyte interface is one of the key obstacles for practical Ah-level Li m...
Nonaqueous carbonate electrolytes are commonly used in commercial lithium-ion battery (LIB). However...
Lithium batteries have been widely used in various fields such as portable electronic devices, elect...
As the world faces a growing need to electrify and reduce carbon emissions, batteries offer much nee...
The activity of lithium ions in electrolytes depends on their solvation structures. However, the und...
There is an ever increasing demand for fossil fuels. Lithium ion batteries (LIBs) can effectively re...
The electrolyte is a crucial part of any lithium battery, strongly affecting longevity and safety. I...
Localized high-concentration electrolytes (LHCEs) provide a new way to expand multifunctional electr...
The reduction in the usage of fossil fuels can be achieved by focusing on the development of high-en...
Lithium–sulfur batteries are attractive for automobile and grid applications due to their high theor...
Electrolytes play pivotal roles in the stabilization of Li metal surface and operation at high volta...