In this work, the nucleation and growth of InAs nanowires on patterned SiO2/Si(111) substrates is studied. It is found that the nanowire yield is strongly dependent on the size of the etched holes in the SiO2, where openings smaller than 180 nm lead to a substantial decrease in nucleation yield, while openings larger than View the MathML source promote nucleation of crystallites rather than nanowires. We propose that this is a result of indium particle formation prior to nanowire growth, where the size of the indium particles, under constant growth parameters, is strongly influenced by the size of the openings in the SiO2 film. Nanowires overgrowing the etched holes, eventually leading to a merging of neighboring nanowires, shed light into ...
We report on the heterogeneous nucleation of catalyst-free InAs nanowires on Si(111) substrates by c...
We report on the heterogeneous nucleation of catalyst-free InAs nanowires on Si(111) substrates by c...
Semiconductor nanowires are nanometre-sized structures offering a wealth of unique and novel propert...
AbstractIn this work, the nucleation and growth of InAs nanowires on patterned SiO2/Si(111) substrat...
AbstractIn this work, the nucleation and growth of InAs nanowires on patterned SiO2/Si(111) substrat...
We report on the nucleation and growth mechanism of self-catalyzed InAs nanowires (NWs) grown on Si ...
We investigate a growth mechanism which allows for the fabrication of catalyst-free InAs nanowires o...
We have studied the nucleation and growth of InAs nanowires (NWs) on SiO2/Si substrates by organomet...
We demonstrate the self‐catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self‐catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self-catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self‐catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self-catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self‐catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self‐catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We report on the heterogeneous nucleation of catalyst-free InAs nanowires on Si(111) substrates by c...
We report on the heterogeneous nucleation of catalyst-free InAs nanowires on Si(111) substrates by c...
Semiconductor nanowires are nanometre-sized structures offering a wealth of unique and novel propert...
AbstractIn this work, the nucleation and growth of InAs nanowires on patterned SiO2/Si(111) substrat...
AbstractIn this work, the nucleation and growth of InAs nanowires on patterned SiO2/Si(111) substrat...
We report on the nucleation and growth mechanism of self-catalyzed InAs nanowires (NWs) grown on Si ...
We investigate a growth mechanism which allows for the fabrication of catalyst-free InAs nanowires o...
We have studied the nucleation and growth of InAs nanowires (NWs) on SiO2/Si substrates by organomet...
We demonstrate the self‐catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self‐catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self-catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self‐catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self-catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self‐catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We demonstrate the self‐catalyst growth of vertically aligned InAs nanowires on bare Si(111) by drop...
We report on the heterogeneous nucleation of catalyst-free InAs nanowires on Si(111) substrates by c...
We report on the heterogeneous nucleation of catalyst-free InAs nanowires on Si(111) substrates by c...
Semiconductor nanowires are nanometre-sized structures offering a wealth of unique and novel propert...