The growth of high-quality compound semiconductor materials on silicon substrates has long been studied to overcome the high price of compound semiconductor substrates. In this study, we successfully fabricated nanowire solar cells by utilizing high-quality hetero p-n junctions formed by growing n-type III-V nanowires on p-silicon substrates. The n-InAs0.75P0.25 nanowire array was grown by the Volmer-Weber mechanism, a three-dimensional island growth mode arising from a lattice mismatch between III-V and silicon. For the surface passivation of n-InAs0.75P0.25 core nanowires, a wide bandgap InP shell was formed. The nanowire solar cell was fabricated by benzocyclobutene (BCB) filling, exposure of nanowire tips by reactive-ion etching, electr...
The recent discovery of flexible graphene monolayers has triggered extensive research interest for t...
In this paper the fundamental properties of heterostructures based on semiconductor nanowires synthe...
In order to satisfy the growing energy needs of our planet’s population, and at the same time mitiga...
The growth of high-quality compound semiconductor materials on silicon substrates has long been stud...
AbstractThe future use of nanostructures such as silicon nanowires in solar cells will only occur if...
One-dimensional crystal growth allows the epitaxial integration of compound semiconductors on silico...
Catalyst-free, direct heteroepitaxial growth of vertical InAs nanowires on Si(111) substrates was ac...
International audienceSemiconducting nanowires are emerging as a route to combine heavily mismatched...
One-dimensional crystal growth allows the epitaxial integration of compound semiconductors on silico...
Here we demonstrate a more effective use of III–V photoconversion material to achieve an ultrahigh p...
To mitigate dangerous climate change, a transition to a new and sustainable energy system is needed....
Nanowires are high aspect ratio nanostructures with structural diameters on the order of nanometers ...
Abstract Silicon nanowires (SiNWs) show a great potential for energy applications because of the opt...
© 2015 The Royal Society of Chemistry. Single wire p+-n+ radial junction nanowire solar cell devices...
The recent discovery of flexible graphene monolayers has triggered extensive research interest for t...
The recent discovery of flexible graphene monolayers has triggered extensive research interest for t...
In this paper the fundamental properties of heterostructures based on semiconductor nanowires synthe...
In order to satisfy the growing energy needs of our planet’s population, and at the same time mitiga...
The growth of high-quality compound semiconductor materials on silicon substrates has long been stud...
AbstractThe future use of nanostructures such as silicon nanowires in solar cells will only occur if...
One-dimensional crystal growth allows the epitaxial integration of compound semiconductors on silico...
Catalyst-free, direct heteroepitaxial growth of vertical InAs nanowires on Si(111) substrates was ac...
International audienceSemiconducting nanowires are emerging as a route to combine heavily mismatched...
One-dimensional crystal growth allows the epitaxial integration of compound semiconductors on silico...
Here we demonstrate a more effective use of III–V photoconversion material to achieve an ultrahigh p...
To mitigate dangerous climate change, a transition to a new and sustainable energy system is needed....
Nanowires are high aspect ratio nanostructures with structural diameters on the order of nanometers ...
Abstract Silicon nanowires (SiNWs) show a great potential for energy applications because of the opt...
© 2015 The Royal Society of Chemistry. Single wire p+-n+ radial junction nanowire solar cell devices...
The recent discovery of flexible graphene monolayers has triggered extensive research interest for t...
The recent discovery of flexible graphene monolayers has triggered extensive research interest for t...
In this paper the fundamental properties of heterostructures based on semiconductor nanowires synthe...
In order to satisfy the growing energy needs of our planet’s population, and at the same time mitiga...