Silicon is considered as a promising anode material for the next-generation lithium-ion battery (LIB) due to its high capacity at nanoscale. However, silicon expands up to 300% during lithiation, which induces high stresses and leads to fractures. To design silicon nanostructures that could minimize fracture, it is important to understand and characterize stress states in the silicon nanostructures during lithiation. Synchrotron X-ray microdiffraction has proven to be effective in revealing insights of mechanical stress and other mechanics considerations in small-scale crystalline structures used in many important technological applications, such as microelectronics, nanotechnology, and energy systems. In the present study, an in situ synch...
The rates of charging and discharging in lithium-ion batteries (LIBs) are critically controlled by t...
Silicon is considered to be a promising anode material for lithium-ion batteries with very high ener...
We use a unique transmission electron microscope (TEM) technique to show that Si nanowires (NWs) wit...
Silicon is considered as a promising anode material for the next-generation lithium-ion battery (LIB...
<p>Silicon is considered as a promising anode material for the next-generation lithium-ion battery (...
Silicon is a promising material for lithium-ion batteries. However, it expands by 300% on lithiation...
Silicon is a promising material for lithium-ion batteries. However, it expands by 300% on lithiation...
Silicon is a promising anode material for Li-ion batteries due to its high theoretical specific capa...
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...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Extensive research for new energy storage materials has created a high demand for experimental techn...
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...
The rates of charging and discharging in lithium-ion batteries (LIBs) are critically controlled by t...
Silicon is considered to be a promising anode material for lithium-ion batteries with very high ener...
We use a unique transmission electron microscope (TEM) technique to show that Si nanowires (NWs) wit...
Silicon is considered as a promising anode material for the next-generation lithium-ion battery (LIB...
<p>Silicon is considered as a promising anode material for the next-generation lithium-ion battery (...
Silicon is a promising material for lithium-ion batteries. However, it expands by 300% on lithiation...
Silicon is a promising material for lithium-ion batteries. However, it expands by 300% on lithiation...
Silicon is a promising anode material for Li-ion batteries due to its high theoretical specific capa...
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...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Extensive research for new energy storage materials has created a high demand for experimental techn...
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...
The rates of charging and discharging in lithium-ion batteries (LIBs) are critically controlled by t...
Silicon is considered to be a promising anode material for lithium-ion batteries with very high ener...
We use a unique transmission electron microscope (TEM) technique to show that Si nanowires (NWs) wit...