The opportunity to engineer III–V nanowires in wurtzite and zinc blende crystal structure allows for exploring properties not conventionally available in the bulk form as well as opening the opportunity for use of additional degrees of freedom in device fabrication. However, the fundamental understanding of the nature of polytypism in III–V nanowire growth is still lacking key ingredients to be able to connect the results of modeling and experiments. Here we show InP nanowires of both pure wurtzite and pure zinc blende grown simultaneously on the same InP [100]-oriented substrate. We find wurtzite nanowires to grow along ⟨1̅1̅1̅⟩B and zinc blende counterparts along ⟨111⟩A. Further, we discuss the nucleation, growth, and polytypism of our na...
We report single crystal phase and non-tapered wurtzite (WZ) and zincblende twinning superlattice (Z...
We report single crystal phase and non-tapered wurtzite (WZ) and zincblende twinning superlattice (Z...
We report single crystal phase and non-tapered wurtzite (WZ) and zincblende twinning superlattice (Z...
The opportunity to engineer III-V nanowires in wurtzite and zinc blende crystal structure allows for...
Controlling the crystallographic phase purity of III-V nanowires is notoriously difficult, yet this ...
Controlling the crystallographic phase purity of III-V nanowires is notoriously difficult, yet this ...
Controlling the crystallographic phase purity of III-V nanowires is notoriously difficult, yet this ...
We present results that provide fundamental insights on how to experimentally tailor the planar defe...
International audienceGold-catalyzed ZnTe nanowires were grown at low temperature by molecular beam ...
International audienceGold-catalyzed ZnTe nanowires were grown at low temperature by molecular beam ...
International audienceGold-catalyzed ZnTe nanowires were grown at low temperature by molecular beam ...
III-V semiconductor nanowires made of materials which have the zinc blende crystal structure in bulk...
III-V nanowires (NWs) are promising for a wide range of applications, ranging from optics to electro...
Recent research on nanowires (NWs) demonstrated the ability of III–V semiconductors to adopt a diffe...
we present results that provide fundamental insights on how to experimentally tailor the planar defe...
We report single crystal phase and non-tapered wurtzite (WZ) and zincblende twinning superlattice (Z...
We report single crystal phase and non-tapered wurtzite (WZ) and zincblende twinning superlattice (Z...
We report single crystal phase and non-tapered wurtzite (WZ) and zincblende twinning superlattice (Z...
The opportunity to engineer III-V nanowires in wurtzite and zinc blende crystal structure allows for...
Controlling the crystallographic phase purity of III-V nanowires is notoriously difficult, yet this ...
Controlling the crystallographic phase purity of III-V nanowires is notoriously difficult, yet this ...
Controlling the crystallographic phase purity of III-V nanowires is notoriously difficult, yet this ...
We present results that provide fundamental insights on how to experimentally tailor the planar defe...
International audienceGold-catalyzed ZnTe nanowires were grown at low temperature by molecular beam ...
International audienceGold-catalyzed ZnTe nanowires were grown at low temperature by molecular beam ...
International audienceGold-catalyzed ZnTe nanowires were grown at low temperature by molecular beam ...
III-V semiconductor nanowires made of materials which have the zinc blende crystal structure in bulk...
III-V nanowires (NWs) are promising for a wide range of applications, ranging from optics to electro...
Recent research on nanowires (NWs) demonstrated the ability of III–V semiconductors to adopt a diffe...
we present results that provide fundamental insights on how to experimentally tailor the planar defe...
We report single crystal phase and non-tapered wurtzite (WZ) and zincblende twinning superlattice (Z...
We report single crystal phase and non-tapered wurtzite (WZ) and zincblende twinning superlattice (Z...
We report single crystal phase and non-tapered wurtzite (WZ) and zincblende twinning superlattice (Z...