Germanium (Ge) nanowires coated with an amorphous silicon (Si) shell undergoing lithiation and delithiation were studied using in situ transmission electron microscopy (TEM). Delithiation creates pores in nanowires with diameters larger than ∼25 nm, but not in smaller diameter nanowires. The formation of pores in Ge nanowires undergoing delithiation has been observed before in in situ TEM experiments, but there has been no indication that a critical diameter exists below which pores do not form. Pore formation occurs as a result of fast lithium diffusion compared to vacancy migration. We propose that a short diffusion path for vacancies to the nanowire surface plays a role in limiting pore formation even when lithium diffusion is fast
We report the self-seeded growth of highly crystalline Ge nanowires, with a mean diameter as small a...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
High-resolution SEM images of germanium nanocrystals (Ge-nc) synthesized by ion implantation in fuse...
Germanium (Ge) nanowires coated with an amorphous silicon (Si) shell undergoing lithiation and delit...
Silicon (Si) nanowires with a silicon oxide (SiOx) shell undergoing lithiation and delithiation were...
In situ transmission electron microscopy (TEM) studies were carried out to observe directly in real ...
We use a unique transmission electron microscope (TEM) technique to show that Si nanowires (NWs) wit...
We report diffusion induced germanium nanowire growth and its dependence on the Ge evaporation flux....
bS Supporting Information Development of advanced lithium ion batteries (LIBs) re-quires new electro...
Germanium was of great interest in the 1950’s when it was used for the first transistor device. Howe...
Germanium nanowires were grown on Au coated Si substrates at 380 degrees C in a high vacuum (5 x 10(...
Germanium nanowires are produced by a novel approach, combining two well known electrochemical and ...
A significant amount of research is taking place to create energy storage concepts beyond the lithiu...
Based on scanning tunneling microscopy observations, we have investigated the formation and self-sta...
Germanium (Ge) is a group IV semiconductor with superior electronic properties compared with silicon...
We report the self-seeded growth of highly crystalline Ge nanowires, with a mean diameter as small a...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
High-resolution SEM images of germanium nanocrystals (Ge-nc) synthesized by ion implantation in fuse...
Germanium (Ge) nanowires coated with an amorphous silicon (Si) shell undergoing lithiation and delit...
Silicon (Si) nanowires with a silicon oxide (SiOx) shell undergoing lithiation and delithiation were...
In situ transmission electron microscopy (TEM) studies were carried out to observe directly in real ...
We use a unique transmission electron microscope (TEM) technique to show that Si nanowires (NWs) wit...
We report diffusion induced germanium nanowire growth and its dependence on the Ge evaporation flux....
bS Supporting Information Development of advanced lithium ion batteries (LIBs) re-quires new electro...
Germanium was of great interest in the 1950’s when it was used for the first transistor device. Howe...
Germanium nanowires were grown on Au coated Si substrates at 380 degrees C in a high vacuum (5 x 10(...
Germanium nanowires are produced by a novel approach, combining two well known electrochemical and ...
A significant amount of research is taking place to create energy storage concepts beyond the lithiu...
Based on scanning tunneling microscopy observations, we have investigated the formation and self-sta...
Germanium (Ge) is a group IV semiconductor with superior electronic properties compared with silicon...
We report the self-seeded growth of highly crystalline Ge nanowires, with a mean diameter as small a...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
High-resolution SEM images of germanium nanocrystals (Ge-nc) synthesized by ion implantation in fuse...