The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than nine-fold increase in gravimetric storage capacity compared to conventional graphite anodes. However, full lithiation of Si induces the volume to increase by approximately 300%. Such enormous volume expansion causes large mechanical stress, resulting in non-elastic deformation and crack formation. This ultimately leads to anode failure and strong decrease in cycle life. This problem can be resolved by making use of structured anodes with small dimensions. Particularly honeycomb-shaped microstructures turned out to be beneficial in this respect. In the present paper, finite element modeling was applied to describe the experimentally observed ...
Silicon is regarded as one of the most promising next generation lithium-ion battery anodes due to i...
Although crystalline silicon (c-Si) anodes promise very high energy densities in Li-ion batteries, t...
Large anisotropic volume expansion during lithiation leads to the electrochemical performance degrad...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more tha...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
\u3cp\u3eA silicon-based anode in lithium-ion battery exhibits several times higher gravimetric ener...
A silicon-based anode in lithium-ion battery exhibits several times higher gravimetric energy storag...
A silicon-based anode in lithium-ion battery exhibits several times higher gravimetric energy storag...
As the need for smaller, lighter, and longer lasting energy storage increases, silicon (Si) rises as...
Silicon (Si) is widely regarded as one of the most promising anode materials for Li ion battery due ...
Silicon (Si) is widely regarded as one of the most promising anode materials for Li ion battery due ...
Silicon is regarded as one of the most promising next generation lithium-ion battery anodes due to i...
Although crystalline silicon (c-Si) anodes promise very high energy densities in Li-ion batteries, t...
Large anisotropic volume expansion during lithiation leads to the electrochemical performance degrad...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more tha...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
\u3cp\u3eA silicon-based anode in lithium-ion battery exhibits several times higher gravimetric ener...
A silicon-based anode in lithium-ion battery exhibits several times higher gravimetric energy storag...
A silicon-based anode in lithium-ion battery exhibits several times higher gravimetric energy storag...
As the need for smaller, lighter, and longer lasting energy storage increases, silicon (Si) rises as...
Silicon (Si) is widely regarded as one of the most promising anode materials for Li ion battery due ...
Silicon (Si) is widely regarded as one of the most promising anode materials for Li ion battery due ...
Silicon is regarded as one of the most promising next generation lithium-ion battery anodes due to i...
Although crystalline silicon (c-Si) anodes promise very high energy densities in Li-ion batteries, t...
Large anisotropic volume expansion during lithiation leads to the electrochemical performance degrad...