ABSTRACT: Recent independent experiments demonstrated that the lithiation-induced volume expansion in silicon nanowires, nanopillars, and microslabs is highly anisotropic, with predominant expansion along the ⟨110 ⟩ direction but negligibly small expansion along the ⟨111 ⟩ direction. The origin of such anisotropic behavior remains elusive. Here, we develop a chemomechanical model to study the phase evolution and morphological changes in lithiated silicon nanowires. The model couples the diffusive reaction of lithium with the lithiation-induced elasto-plastic deformation. We show that the apparent anisotropic swelling is critically controlled by the orientation-dependent mobility of the core−shell interface, i.e., the lithiation reaction rat...
We use a unique transmission electron microscope (TEM) technique to show that Si nanowires (NWs) wit...
Silicon (Si)-based materials hold promise as the next-generation anodes for high-energy lithium (Li)...
Although crystalline silicon (c-Si) anodes promise very high energy densities in Li-ion batteries, t...
ABSTRACT: Silicon is a promising anode material for high-capacity Li-ion batteries. Recent experimen...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Silicon is one of the most attractive anode materials for use in Li-ion batteries due to its similar...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
DoctorDrastic volume change during lithiation and delithiation gives the biggest challenge in the re...
Following an explosion of studies of silicon as a negative electrode for Li-ion batteries, the anoma...
With its high specific capacity, silicon is a promising anode material for high-energy lithium-ion b...
Surface passivation of silicon anodes is an appealing design strategy for the development of reliabl...
The rates of charging and discharging in lithium-ion batteries (LIBs) are critically controlled by t...
Surface passivation of silicon anodes is an appealing design strategy for the development of reliabl...
We use a unique transmission electron microscope (TEM) technique to show that Si nanowires (NWs) wit...
Silicon (Si)-based materials hold promise as the next-generation anodes for high-energy lithium (Li)...
Although crystalline silicon (c-Si) anodes promise very high energy densities in Li-ion batteries, t...
ABSTRACT: Silicon is a promising anode material for high-capacity Li-ion batteries. Recent experimen...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Silicon is one of the most attractive anode materials for use in Li-ion batteries due to its similar...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
DoctorDrastic volume change during lithiation and delithiation gives the biggest challenge in the re...
Following an explosion of studies of silicon as a negative electrode for Li-ion batteries, the anoma...
With its high specific capacity, silicon is a promising anode material for high-energy lithium-ion b...
Surface passivation of silicon anodes is an appealing design strategy for the development of reliabl...
The rates of charging and discharging in lithium-ion batteries (LIBs) are critically controlled by t...
Surface passivation of silicon anodes is an appealing design strategy for the development of reliabl...
We use a unique transmission electron microscope (TEM) technique to show that Si nanowires (NWs) wit...
Silicon (Si)-based materials hold promise as the next-generation anodes for high-energy lithium (Li)...
Although crystalline silicon (c-Si) anodes promise very high energy densities in Li-ion batteries, t...