The electrode concept of graphite and silicon blending has recently been utilized as the anode in the current lithium-ion batteries (LIBs) industry, accompanying trials of improvement of cycling life in the commercial levels of electrode conditions such as the areal capacity of approximately 3.3 mAh/cm2 and volumetric capacity of approximately 570 mAh/cm3. However, the blending concept has not been widely explored in the academic reports which focused mainly on how much volume expansion of electrodes could be mitigated. Moreover, the limitations of the blending electrodes have not been studied in detail. Therefore, herein we investigate the graphite blending electrode with micron-sized SiOx anode material which is one of the broadly used Si...
International audiencePerformant electrochemical storage devices appear as one of the solution to fa...
Silicon-based anodes are extensively studied as an alternative to graphite for lithium ion batteries...
To increase the specific capacity of anodes for lithium-ion cells, advanced active materials, such a...
The electrode concept of graphite and silicon blending has recently been utilized as the anode in th...
The electrode concept of graphite and silicon blending has recently been utilized as the anode in th...
The electrode concept of graphite and silicon blending has recently been utilized as the anode in th...
Lithium-ion batteries (LIBs) have become the preferred power source for various consumer devices suc...
Aiming at increasing the energy density of lithium ion batteries, a Si alloy/graphite blend was used...
Mixing SiOx materials with graphite materials has become a key technology to improve their performan...
While existing carbonaceous anodes for lithium-ion batteries (LIBs) are approaching a practical capa...
Silicon is considered a most promising anode material for overcoming the theoretical capacity limit ...
It has been demonstrated that pre-treatment (impregnation) of graphite anodes in a polyether functio...
High energy energy density lithium-ion batteries have become the prime energy storage devices for la...
Silicon, while suffering from major degradation issues, has been recognized as a next promising mate...
International audiencePerformant electrochemical storage devices appear as one of the solution to fa...
Silicon-based anodes are extensively studied as an alternative to graphite for lithium ion batteries...
To increase the specific capacity of anodes for lithium-ion cells, advanced active materials, such a...
The electrode concept of graphite and silicon blending has recently been utilized as the anode in th...
The electrode concept of graphite and silicon blending has recently been utilized as the anode in th...
The electrode concept of graphite and silicon blending has recently been utilized as the anode in th...
Lithium-ion batteries (LIBs) have become the preferred power source for various consumer devices suc...
Aiming at increasing the energy density of lithium ion batteries, a Si alloy/graphite blend was used...
Mixing SiOx materials with graphite materials has become a key technology to improve their performan...
While existing carbonaceous anodes for lithium-ion batteries (LIBs) are approaching a practical capa...
Silicon is considered a most promising anode material for overcoming the theoretical capacity limit ...
It has been demonstrated that pre-treatment (impregnation) of graphite anodes in a polyether functio...
High energy energy density lithium-ion batteries have become the prime energy storage devices for la...
Silicon, while suffering from major degradation issues, has been recognized as a next promising mate...
International audiencePerformant electrochemical storage devices appear as one of the solution to fa...
Silicon-based anodes are extensively studied as an alternative to graphite for lithium ion batteries...
To increase the specific capacity of anodes for lithium-ion cells, advanced active materials, such a...