ZnSe nanospirals, with zinc blende structured building blocks exhibiting unconventional mosaic configuration, were successfully fabricated via a two-stage growth process, in which abrupt variation of reaction pressure was introduced. In-plane bending, with remarkable morphological difference from the commonly reported nanorings or nanohelixes induced by spontaneous polarization in II-VI semiconductors, has been observed, which can be mainly attributed to existence of numerous Lomer-Cottrell sessile dislocations with edge components. Investigations on morphological evolutions by applying different reaction pressure and growth time in the second stage imply that the formation of nanospirals is closely related to the pressure variation. The re...
We present a simple route for ZnSe nanowire growth in the ablation crater on a ZnSe crystal surface....
International audienceGold-catalyzed ZnTe nanowires were grown at low temperature by molecular beam ...
We report here the growth of ultra thin ZnSe nanowires at low temperatures by Au-catalyzed molecule ...
ABSTRACT: ZnSe nanospirals, with zinc blende structured building blocks exhibiting unconventional mo...
Zinc selenide (ZnSe) bicrystal nanobelts with zinc blende structure were obtained via simple thermal...
Anisotropic growth in the zinc blende phase of nanomaterials in solution is normally less favorable ...
Although ZnSe has been widely studied due to its attractive electronic and optoelectronic properties...
We report on the growth of ZnSe nanowires by molecular beam epitaxy using solid Au nanoparticles as ...
Nanowires (NWs) have witnessed tremendous development over the past two decades owing to their varyi...
The growth orientation and crystalline perfection of ZnSe nanowires (NWs) grown by the combination o...
We investigate the growth and the physical and optical properties of type-II heterostructured ZnTe/Z...
A variety of ZnSe nanostructures, including the single-, bi- and tri-crystal nanobelts, are successf...
X-ray absorption spectroscopy and Raman experiments were used to follow the semiconductor–metal phas...
The growth orientation and crystalline perfection of ZnSe nanowires (NWs) grown by the combination o...
Single crystalline ZnSe nanowires were fabricated on GaAs substrates by molecular beam epitaxy techn...
We present a simple route for ZnSe nanowire growth in the ablation crater on a ZnSe crystal surface....
International audienceGold-catalyzed ZnTe nanowires were grown at low temperature by molecular beam ...
We report here the growth of ultra thin ZnSe nanowires at low temperatures by Au-catalyzed molecule ...
ABSTRACT: ZnSe nanospirals, with zinc blende structured building blocks exhibiting unconventional mo...
Zinc selenide (ZnSe) bicrystal nanobelts with zinc blende structure were obtained via simple thermal...
Anisotropic growth in the zinc blende phase of nanomaterials in solution is normally less favorable ...
Although ZnSe has been widely studied due to its attractive electronic and optoelectronic properties...
We report on the growth of ZnSe nanowires by molecular beam epitaxy using solid Au nanoparticles as ...
Nanowires (NWs) have witnessed tremendous development over the past two decades owing to their varyi...
The growth orientation and crystalline perfection of ZnSe nanowires (NWs) grown by the combination o...
We investigate the growth and the physical and optical properties of type-II heterostructured ZnTe/Z...
A variety of ZnSe nanostructures, including the single-, bi- and tri-crystal nanobelts, are successf...
X-ray absorption spectroscopy and Raman experiments were used to follow the semiconductor–metal phas...
The growth orientation and crystalline perfection of ZnSe nanowires (NWs) grown by the combination o...
Single crystalline ZnSe nanowires were fabricated on GaAs substrates by molecular beam epitaxy techn...
We present a simple route for ZnSe nanowire growth in the ablation crater on a ZnSe crystal surface....
International audienceGold-catalyzed ZnTe nanowires were grown at low temperature by molecular beam ...
We report here the growth of ultra thin ZnSe nanowires at low temperatures by Au-catalyzed molecule ...