Passivating lithium ion (Li) battery electrode surfaces to prevent electrolyte decomposition is critical for battery operations. Recent work on conformal atomic layer deposition (ALD) coating of anodes and cathodes has shown significant technological promise. ALD further provides well-characterized model platforms for understanding electrolyte decomposition initiated by electron tunneling through a passivating layer. First-principles calculations reveal two regimes of electron transfer to adsorbed ethylene carbonate molecules (EC, a main component of commercial electrolyte), depending on whether the electrode is alumina coated. On bare Li metal electrode surfaces, EC accepts electrons and decomposes within picoseconds. In contrast, constrai...
It is classically well perceived that cathode-air interfacial reactions, often instantaneous and the...
It is classically well perceived that cathode-air interfacial reactions, often instantaneous and the...
Although atomic layer deposition (ALD) coating strategies for active materials in lithium ion batter...
An atomic layer deposition (ALD) coating on active materials of a lithium ion battery is a more effe...
Battery electrode surfaces are generally coated with electronically insulating solid films of thickn...
One of the greatest challenges of modern society is to stabilize a consistent energy supply that wil...
Controlling the formation of the solid electrolyte interphase (SEI) layer of the future generation o...
One of the major bottlenecks to the development of alternatives to existing Li ion battery technolog...
Fluoroethylene carbonate (FEC) shows promise as an electrolyte additive for improving passivating so...
The performance and safety of lithium-ion batteries (LIBs) are dependent on interfacial processes at...
Lithium-ion batteries (LIBs) are widely used for energy-storage purposes. To meet the increasing ene...
Lithium-ion batteries (LIBs) are widely used for energy-storage purposes. To meet the increasing ene...
Surface modification of Si anodes in Li-ion batteries by deposition of a thin alucone coating has de...
In lithium ion batteries, Li<sup>+</sup> intercalation into electrodes is induced by applied voltage...
The degree of metal dissolution of cathode materials is a critical parameter in determining the perf...
It is classically well perceived that cathode-air interfacial reactions, often instantaneous and the...
It is classically well perceived that cathode-air interfacial reactions, often instantaneous and the...
Although atomic layer deposition (ALD) coating strategies for active materials in lithium ion batter...
An atomic layer deposition (ALD) coating on active materials of a lithium ion battery is a more effe...
Battery electrode surfaces are generally coated with electronically insulating solid films of thickn...
One of the greatest challenges of modern society is to stabilize a consistent energy supply that wil...
Controlling the formation of the solid electrolyte interphase (SEI) layer of the future generation o...
One of the major bottlenecks to the development of alternatives to existing Li ion battery technolog...
Fluoroethylene carbonate (FEC) shows promise as an electrolyte additive for improving passivating so...
The performance and safety of lithium-ion batteries (LIBs) are dependent on interfacial processes at...
Lithium-ion batteries (LIBs) are widely used for energy-storage purposes. To meet the increasing ene...
Lithium-ion batteries (LIBs) are widely used for energy-storage purposes. To meet the increasing ene...
Surface modification of Si anodes in Li-ion batteries by deposition of a thin alucone coating has de...
In lithium ion batteries, Li<sup>+</sup> intercalation into electrodes is induced by applied voltage...
The degree of metal dissolution of cathode materials is a critical parameter in determining the perf...
It is classically well perceived that cathode-air interfacial reactions, often instantaneous and the...
It is classically well perceived that cathode-air interfacial reactions, often instantaneous and the...
Although atomic layer deposition (ALD) coating strategies for active materials in lithium ion batter...