The regulation of solid electrolyte interface (SEI) on electrode material surface is one of the most crucial fundamental issues in lithium ion batteries. A desired SEI film is characterized by high homogeneity, flexibility and ductility, which is able to stand up with the volume change of the active material during repeated electrochemical cycles. More than 10% volume change of graphite particle is easy to cause brittle fracture and rearrangement of the SEI film, resulting in continuous consumption of the active Li ion and capacity decline of the cell. Herein, we proposed an in situ development of elastic SEI film via nanoregulation and self-polymerization of sodium itaconate (SI) on graphite surface. The nanotuned uniform SI nanolayer on t...
To employ Li-based batteries to their full potential in a wide range of energy-storage applications,...
The complexity of the solid electrolyte interphase (SEI) in lithium-ion batteries with graphitic ele...
Li-ion batteries (LIB) have been successfully commercialized after the identification of ethylene-ca...
Low coulombic efficiency and poor cyclic stability are two common problems for silicon anodes. There...
The interfacial decomposition products forming the so-called solid–electrolyte interphase (SEI) sign...
The overall electrochemical performance of natural graphite is intimately associated with the solid ...
Stable solid electrolyte interface (SEI) is heavily investigated due to its role in improving lithiu...
Electrochemical degradation on silicon (Si) anodes prevents them from being successfully used in lit...
Understanding the electrochemical reactions at the interface between a Si anode and a solid sulfide ...
AbstractDuring the operation of Li-ion batteries (LIBs), solvent and electrolyte decomposition takes...
Nowadays, the demand for high energy density, fast-charging and wide-temperature range lithium-ion b...
Understanding the formation of SEI films on Li4Ti5O12 (LTO) anodes offers a major benefit to large-s...
The current commercial lithium ion battery utilizes “host-guest” electrodes that allow for the inter...
Silicon is a promising negative electrode for secondary lithium-based batteries, but the electrochem...
A study on the interfacial properties between a solid glassy electrolyte, LiI-Li3PS4 (LPSI), and gra...
To employ Li-based batteries to their full potential in a wide range of energy-storage applications,...
The complexity of the solid electrolyte interphase (SEI) in lithium-ion batteries with graphitic ele...
Li-ion batteries (LIB) have been successfully commercialized after the identification of ethylene-ca...
Low coulombic efficiency and poor cyclic stability are two common problems for silicon anodes. There...
The interfacial decomposition products forming the so-called solid–electrolyte interphase (SEI) sign...
The overall electrochemical performance of natural graphite is intimately associated with the solid ...
Stable solid electrolyte interface (SEI) is heavily investigated due to its role in improving lithiu...
Electrochemical degradation on silicon (Si) anodes prevents them from being successfully used in lit...
Understanding the electrochemical reactions at the interface between a Si anode and a solid sulfide ...
AbstractDuring the operation of Li-ion batteries (LIBs), solvent and electrolyte decomposition takes...
Nowadays, the demand for high energy density, fast-charging and wide-temperature range lithium-ion b...
Understanding the formation of SEI films on Li4Ti5O12 (LTO) anodes offers a major benefit to large-s...
The current commercial lithium ion battery utilizes “host-guest” electrodes that allow for the inter...
Silicon is a promising negative electrode for secondary lithium-based batteries, but the electrochem...
A study on the interfacial properties between a solid glassy electrolyte, LiI-Li3PS4 (LPSI), and gra...
To employ Li-based batteries to their full potential in a wide range of energy-storage applications,...
The complexity of the solid electrolyte interphase (SEI) in lithium-ion batteries with graphitic ele...
Li-ion batteries (LIB) have been successfully commercialized after the identification of ethylene-ca...