We report the first investigation of indium (In) as the vapor-liquid-solid catalyst of GaP and InGaAs nanowires by molecular beam epitaxy. A strong asymmetry in the Ga distribution between the liquid and solid phases allows one to obtain pure GaP and In0.2Ga0.8As nanowires while the liquid catalyst remains nearly pure In. This uncommon In catalyst presents several advantages. First, the nanowire morphology can be tuned by changing the In flux alone, independently of the Ga and group V fluxes. Second, the nanowire crystal structure always remains cubic during steady state growth and catalyst crystallization, despite the low contact angle of the liquid droplet measured after growth (95 degrees). Third, the vertical yield of In-catalyzed GaP a...
In this study, we analyzed the influence of indium supply on the growth dynamics of gold-catalyzed I...
Spatial distribution of indium (In) atoms in ternary InxGa1-xAs nanowires (NWs) was investigated by ...
In this study, the structure and quality controlled growth of InAs nanowires using Au catalysts in a...
We report the first investigation of indium (In) as the vapor-liquid-solid catalyst of GaP and InGaA...
We report the first investigation of indium (In) as the vapor-liquid-solid catalyst of GaP and InGaA...
We report the first investigation of indium (In) as the vapor-liquid-solid catalyst of GaP and InGaA...
We demonstrate high yield vapor–liquid–solid (VLS) growth of 100-oriented InP nanowire arrays. The h...
We demonstrate high yield vapor–liquid–solid (VLS) growth of 100-oriented InP nanowire arrays. The h...
We demonstrate high yield vapor–liquid–solid (VLS) growth of 100-oriented InP nanowire arrays. The h...
We demonstrate high yield vapor–liquid–solid (VLS) growth of 100-oriented InP nanowire arrays. The h...
We demonstrate high yield vapor–liquid–solid (VLS) growth of 100-oriented InP nanowire arrays. The h...
International audienceSilicon photonic deals with the integration of optical functions on chip and a...
International audienceSilicon photonic deals with the integration of optical functions on chip and a...
International audienceSilicon photonic deals with the integration of optical functions on chip and a...
Influence of indium supply on growth dynamics of Au-catalyzed InGaAs nanowires was studied by in sit...
In this study, we analyzed the influence of indium supply on the growth dynamics of gold-catalyzed I...
Spatial distribution of indium (In) atoms in ternary InxGa1-xAs nanowires (NWs) was investigated by ...
In this study, the structure and quality controlled growth of InAs nanowires using Au catalysts in a...
We report the first investigation of indium (In) as the vapor-liquid-solid catalyst of GaP and InGaA...
We report the first investigation of indium (In) as the vapor-liquid-solid catalyst of GaP and InGaA...
We report the first investigation of indium (In) as the vapor-liquid-solid catalyst of GaP and InGaA...
We demonstrate high yield vapor–liquid–solid (VLS) growth of 100-oriented InP nanowire arrays. The h...
We demonstrate high yield vapor–liquid–solid (VLS) growth of 100-oriented InP nanowire arrays. The h...
We demonstrate high yield vapor–liquid–solid (VLS) growth of 100-oriented InP nanowire arrays. The h...
We demonstrate high yield vapor–liquid–solid (VLS) growth of 100-oriented InP nanowire arrays. The h...
We demonstrate high yield vapor–liquid–solid (VLS) growth of 100-oriented InP nanowire arrays. The h...
International audienceSilicon photonic deals with the integration of optical functions on chip and a...
International audienceSilicon photonic deals with the integration of optical functions on chip and a...
International audienceSilicon photonic deals with the integration of optical functions on chip and a...
Influence of indium supply on growth dynamics of Au-catalyzed InGaAs nanowires was studied by in sit...
In this study, we analyzed the influence of indium supply on the growth dynamics of gold-catalyzed I...
Spatial distribution of indium (In) atoms in ternary InxGa1-xAs nanowires (NWs) was investigated by ...
In this study, the structure and quality controlled growth of InAs nanowires using Au catalysts in a...