In situ electrochemical lithiation and delithiation processes inside a nanobattery consisting of an individual amorphous Si nanorod and ionic liquid were explored. Direct formation of the crystalline Li22Si5 phase due to the intercalation of Li ions was observed. In addition, the role of the electrolyte-nanorod interface was examined. It was observed that the lithiation of Si nanorods is dominated by surface diffusion. Upon the delithiation process, partial decomposition of Li22Si5 particles was observed which can explain the irreversible capacity loss that is generally seen in Si anodes. This study shows that the radial straining due to lithiation does not cause cracking in nanorods as small in diameter as 26 nm, whereas cracks were observ...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Lithiation of individual silicon nanoparticles was studied in real time with <i>in situ</i> transmis...
Recent real-time analyses have provided invaluable information on the volume expansion of silicon (S...
In situ electrochemical lithiation and delithiation processes inside a nanobattery consisting of an ...
To utilize high-capacity Si anodes in next-generation Li-ion batteries, the physical and chemical tr...
The rates of charging and discharging in lithium-ion batteries (LIBs) are critically controlled by t...
Using electron beam lithography, amorphous Si (a-Si) nanopillars were fabricated with a height of 10...
We use a unique transmission electron microscope (TEM) technique to show that Si nanowires (NWs) wit...
The crystal structure and morphology of nanosized Si particles and wires after Li-insertion/extracti...
Recent real-time analyses have provided invaluable information on the volume expansion of silicon (S...
We report the observation of lithiation/delithiation of MoS<sub>2</sub> nanosheets in a LiPF<sub>6</...
Extensive research for new energy storage materials has created a high demand for experimental techn...
Silicon is one of the most attractive anode materials for use in Li-ion batteries due to its similar...
Silicon is a promising anode material for Li-ion batteries due to its high theoretical specific capa...
Following an explosion of studies of silicon as a negative electrode for Li-ion batteries, the anoma...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Lithiation of individual silicon nanoparticles was studied in real time with <i>in situ</i> transmis...
Recent real-time analyses have provided invaluable information on the volume expansion of silicon (S...
In situ electrochemical lithiation and delithiation processes inside a nanobattery consisting of an ...
To utilize high-capacity Si anodes in next-generation Li-ion batteries, the physical and chemical tr...
The rates of charging and discharging in lithium-ion batteries (LIBs) are critically controlled by t...
Using electron beam lithography, amorphous Si (a-Si) nanopillars were fabricated with a height of 10...
We use a unique transmission electron microscope (TEM) technique to show that Si nanowires (NWs) wit...
The crystal structure and morphology of nanosized Si particles and wires after Li-insertion/extracti...
Recent real-time analyses have provided invaluable information on the volume expansion of silicon (S...
We report the observation of lithiation/delithiation of MoS<sub>2</sub> nanosheets in a LiPF<sub>6</...
Extensive research for new energy storage materials has created a high demand for experimental techn...
Silicon is one of the most attractive anode materials for use in Li-ion batteries due to its similar...
Silicon is a promising anode material for Li-ion batteries due to its high theoretical specific capa...
Following an explosion of studies of silicon as a negative electrode for Li-ion batteries, the anoma...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
Lithiation of individual silicon nanoparticles was studied in real time with <i>in situ</i> transmis...
Recent real-time analyses have provided invaluable information on the volume expansion of silicon (S...