In order to meet the sophisticated demands for large-scale applications such as electro-mobility, next generation energy storage technologies require advanced electrode active materials with enhanced gravimetric and volumetric capacities to achieve increased gravimetric energy and volumetric energy densities. However, most of these materials suffer from high 1st cycle active lithium losses, e.g., caused by solid electrolyte interphase (SEI) formation, which in turn hinder their broad commercial use so far. In general, the loss of active lithium permanently decreases the available energy by the consumption of lithium from the positive electrode material. Pre-lithiation is considered as a highly appealing technique to compensate for active li...
Lithium-ion batteries (LIBs) have revolutionized many facets of our everyday life, enabling devices ...
International audiencePrelithiation of silicon/graphite-based composite anodes is a promising strate...
International audienceLi-Ion batteries are the technology of choice for most of today’s applications...
In order to meet the sophisticated demands for large-scale applications such as electro-mobility, ne...
Owing to its exceptionally high specific capacity, silicon anode is a promising up-and-coming candid...
Silicon (Si) is one of the most promising anode candidates to further push the energy density of lit...
The next generation of lithium ion batteries requires the use of high capacity cathode and anode mat...
One key factor for the breakthrough of electric mobility are high energy lithium ion batteries. One ...
Abstract Next‐generation Li‐ion batteries (LIBs) with higher energy density adopt some novel anode m...
Loss of lithium in the initial cycles appreciably reduces the energy density of lithium-ion batterie...
Because of its high specific capacity, silicon is regarded as the most promising candidate to be inc...
Rechargeable lithium-ion batteries (LIBs) with high energy and power density are urgently required f...
The effect of pre-lithiation on the electrochemical performance of Si negative electrodes for lithiu...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
We report a new electrochemical procedure to suppress the irreversible capacity loss (ICL) from high...
Lithium-ion batteries (LIBs) have revolutionized many facets of our everyday life, enabling devices ...
International audiencePrelithiation of silicon/graphite-based composite anodes is a promising strate...
International audienceLi-Ion batteries are the technology of choice for most of today’s applications...
In order to meet the sophisticated demands for large-scale applications such as electro-mobility, ne...
Owing to its exceptionally high specific capacity, silicon anode is a promising up-and-coming candid...
Silicon (Si) is one of the most promising anode candidates to further push the energy density of lit...
The next generation of lithium ion batteries requires the use of high capacity cathode and anode mat...
One key factor for the breakthrough of electric mobility are high energy lithium ion batteries. One ...
Abstract Next‐generation Li‐ion batteries (LIBs) with higher energy density adopt some novel anode m...
Loss of lithium in the initial cycles appreciably reduces the energy density of lithium-ion batterie...
Because of its high specific capacity, silicon is regarded as the most promising candidate to be inc...
Rechargeable lithium-ion batteries (LIBs) with high energy and power density are urgently required f...
The effect of pre-lithiation on the electrochemical performance of Si negative electrodes for lithiu...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
We report a new electrochemical procedure to suppress the irreversible capacity loss (ICL) from high...
Lithium-ion batteries (LIBs) have revolutionized many facets of our everyday life, enabling devices ...
International audiencePrelithiation of silicon/graphite-based composite anodes is a promising strate...
International audienceLi-Ion batteries are the technology of choice for most of today’s applications...