ABSTRACT The ultrahigh specific lithium ion storage capacity of Si nanowires (SiNWs) has been demonstrated recently and has opened up exciting opportunities for energy storage. However, a systematic theoretical study on lithium insertion in SiNWs remains a challenge, and as a result, understanding of the fundamental interaction and microscopic dynamics during lithium insertion is still lacking. This paper focuses on the study of single Li atom insertion into SiNWs with different sizes and axis orientations by using full ab initio calculations. We show that the binding energy of interstitial Li increases as the SiNW diameter grows. The binding energies at different insertion sites, which can be classified as surface, intermediate, and core s...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
International audienceThe atomistic mechanisms during lithiation and delithiation of amorphous Si na...
For the practical use of silicon nanowires (Si NWs) as anodes for Li-ion batteries, understanding th...
The ultrahigh specific lithium ion storage capacity of Si nanowires (SiNWs) has been demonstrated re...
Silicon nanowires (SiNWs) have recently been shown to be promising as high capacity lithium battery ...
Silicon is viewed as an excellent electrode material for lithium batteries due to its high lithium s...
The energy density of Li-ion batteries depends critically on the specific charge capacity of the con...
Si is an important anode material for the next generation of Li ion batteries. Here the energetics a...
We report a first-principles investigation of Li adsorption and diffusion in single-walled Si nanotu...
ABSTRACT: Silicon is a promising anode material for high-capacity Li-ion batteries. Recent experimen...
Silicon-based materials are promising candidates to replace commercial graphite-based anodes in lith...
The rates of charging and discharging in lithium-ion batteries (LIBs) are critically controlled by t...
Silicon (Si)-based materials have recently emerged as a promising candidate for anodes in lithium-io...
We computationally explore an alternative to stabilize one-dimensional (1D) silicon-lithium nanowire...
The guest‐free, type‐II Si clathrate (Si136) is an open cage polymorph of Si with structural feature...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
International audienceThe atomistic mechanisms during lithiation and delithiation of amorphous Si na...
For the practical use of silicon nanowires (Si NWs) as anodes for Li-ion batteries, understanding th...
The ultrahigh specific lithium ion storage capacity of Si nanowires (SiNWs) has been demonstrated re...
Silicon nanowires (SiNWs) have recently been shown to be promising as high capacity lithium battery ...
Silicon is viewed as an excellent electrode material for lithium batteries due to its high lithium s...
The energy density of Li-ion batteries depends critically on the specific charge capacity of the con...
Si is an important anode material for the next generation of Li ion batteries. Here the energetics a...
We report a first-principles investigation of Li adsorption and diffusion in single-walled Si nanotu...
ABSTRACT: Silicon is a promising anode material for high-capacity Li-ion batteries. Recent experimen...
Silicon-based materials are promising candidates to replace commercial graphite-based anodes in lith...
The rates of charging and discharging in lithium-ion batteries (LIBs) are critically controlled by t...
Silicon (Si)-based materials have recently emerged as a promising candidate for anodes in lithium-io...
We computationally explore an alternative to stabilize one-dimensional (1D) silicon-lithium nanowire...
The guest‐free, type‐II Si clathrate (Si136) is an open cage polymorph of Si with structural feature...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
International audienceThe atomistic mechanisms during lithiation and delithiation of amorphous Si na...
For the practical use of silicon nanowires (Si NWs) as anodes for Li-ion batteries, understanding th...