Si is an important anode material for the next generation of Li ion batteries. Here the energetics and dynamics of Li atoms in bulk Si have been studied at different Li concentrations on the basis of first principles calculations. It is found that Li prefers to occupy an interstitial site as a shallow donor rather than a substitutional site. The most stable position is the tetrahedral (T(d)) site. The diffusion of a Li atom in the Si lattice is through a T(d)-Hex-T(d) trajectory, where the Hex site is the hexagonal transition site with an energy barrier of 0.58 eV. We have also systematically studied the local structural transition of a Li(x)Si alloy with x varying from 0 to 0.25. At low doping concentration (x = 0-0.125), Li atoms prefer t...
The rate performance of lithium-ion secondary batteries depends critically on the kinetic transport ...
Silicon is of special interest in lithium-ion batteries (LIBs) since it has large theoretical specif...
Silicon nanowires (SiNWs) have recently been shown to be promising as high capacity lithium battery ...
Silicon-based materials are promising candidates to replace commercial graphite-based anodes in lith...
Silicon is viewed as an excellent electrode material for lithium batteries due to its high lithium s...
We perform large-scale density functional theory calculations of various amorphous LixSi (a-LixSi)mo...
The ultrahigh specific lithium ion storage capacity of Si nanowires (SiNWs) has been demonstrated re...
Silicon (Si)-based materials have recently emerged as a promising candidate for anodes in lithium-io...
Nanostructured Si is the most promising high-capacity anode material to substantially increase the e...
The guest‐free, type‐II Si clathrate (Si136) is an open cage polymorph of Si with structural feature...
The energy density of Li-ion batteries depends critically on the specific charge capacity of the con...
The volume expansion of silicon is the most important feature for electrochemical operations of high...
Using molecular dynamics method, we investigate the diffusion property of lithium in different silic...
AbstractWe study the effect of strain on the lithium diffusion barrier in diamond cubic Si using nud...
For the practical use of silicon nanowires (Si NWs) as anodes for Li-ion batteries, understanding th...
The rate performance of lithium-ion secondary batteries depends critically on the kinetic transport ...
Silicon is of special interest in lithium-ion batteries (LIBs) since it has large theoretical specif...
Silicon nanowires (SiNWs) have recently been shown to be promising as high capacity lithium battery ...
Silicon-based materials are promising candidates to replace commercial graphite-based anodes in lith...
Silicon is viewed as an excellent electrode material for lithium batteries due to its high lithium s...
We perform large-scale density functional theory calculations of various amorphous LixSi (a-LixSi)mo...
The ultrahigh specific lithium ion storage capacity of Si nanowires (SiNWs) has been demonstrated re...
Silicon (Si)-based materials have recently emerged as a promising candidate for anodes in lithium-io...
Nanostructured Si is the most promising high-capacity anode material to substantially increase the e...
The guest‐free, type‐II Si clathrate (Si136) is an open cage polymorph of Si with structural feature...
The energy density of Li-ion batteries depends critically on the specific charge capacity of the con...
The volume expansion of silicon is the most important feature for electrochemical operations of high...
Using molecular dynamics method, we investigate the diffusion property of lithium in different silic...
AbstractWe study the effect of strain on the lithium diffusion barrier in diamond cubic Si using nud...
For the practical use of silicon nanowires (Si NWs) as anodes for Li-ion batteries, understanding th...
The rate performance of lithium-ion secondary batteries depends critically on the kinetic transport ...
Silicon is of special interest in lithium-ion batteries (LIBs) since it has large theoretical specif...
Silicon nanowires (SiNWs) have recently been shown to be promising as high capacity lithium battery ...