Poor cycling performance for many high voltage lithium ion batteries (LIB) has been attributed to damage of the anode solid electrolyte interphase (SEI) resulting from crossover reactions. Transition-metal ion crossover has been proposed as a primary source of SEI damage and capacity loss, especially for high-voltage spinel cathodes. However, deposition of transition metals on the anode SEI may not be the primary source of SEI degradation. This investigation focuses on the oxidative decomposition of LiPF6 in ethylene carbonate (EC)-based carbonate electrolytes to generate acidic species which subsequently cross over to the anode and degrade the anode SEI components. The generation of the strong acid, difluorophosphoric acid (F2PO2H), has be...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
The continued development of energy storage technology is of high importance in order to facilitate ...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
Poor cycling performance for many high voltage lithium ion batteries (LIB) has been attributed to da...
Layered metal oxides with high nickel content are commonly used cathode materials in commercial lith...
High-capacity Ni-rich layered metal oxide cathodes are highly desirable to increase the energy densi...
Layered metal oxides with high nickel content are commonly used cathode materials in commercial lith...
The increase of specific energy of current Li ion batteries via further increase of the cell voltage...
Lithium ion batteries are widely used as energy storage devices in a variety of products such as sma...
For advancing lithium-ion battery (LIB) technologies, a detailed understanding of battery degradatio...
An ever-growing demand for high-energy density and high-power Li-ion batteries has driven active res...
Lithium ion batteries (LIBs) have been successfully commercialized in a diverse mobile electronic de...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
The continued development of energy storage technology is of high importance in order to facilitate ...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
Poor cycling performance for many high voltage lithium ion batteries (LIB) has been attributed to da...
Layered metal oxides with high nickel content are commonly used cathode materials in commercial lith...
High-capacity Ni-rich layered metal oxide cathodes are highly desirable to increase the energy densi...
Layered metal oxides with high nickel content are commonly used cathode materials in commercial lith...
The increase of specific energy of current Li ion batteries via further increase of the cell voltage...
Lithium ion batteries are widely used as energy storage devices in a variety of products such as sma...
For advancing lithium-ion battery (LIB) technologies, a detailed understanding of battery degradatio...
An ever-growing demand for high-energy density and high-power Li-ion batteries has driven active res...
Lithium ion batteries (LIBs) have been successfully commercialized in a diverse mobile electronic de...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...
The continued development of energy storage technology is of high importance in order to facilitate ...
Today, it is common knowledge, that materials science in the field of electrochemical energy storage...