In this study, we analyzed the influence of indium supply on the growth dynamics of gold-catalyzed InGaAs nanowires by in situ synchrotron X-ray diffraction. A high In/Ga supply ratio results in strong size inhomogeneity of Au particles and interrupts the nanowire growth at a certain point of time. Based on the experimental results, we discussed the state of Au catalysts with high indium content during the nanowire growth. We found that a growth temperature below the eutectic temperature is essential to avoid the growth interruption and maintain the nanowire growth. The high In/Ga ratio necessitates accurate size control of Au particles before growth for further improvement of the nanowire growth
InxGa1-xAs NWs have been grown with various indium mole fractions (x) using MOCVD. The morphology of...
In this work, formation of In- and Ga- based nanowires was studied using chemical vapor deposition (...
Growth of Au-catalyzed InP nanowires (NWs) by metalorganic chemical vapor deposition (MOCVD) has bee...
Influence of indium supply on growth dynamics of Au-catalyzed InGaAs nanowires was studied by in sit...
Semiconductor nanowires offer the opportunity to incorporate novel structures and functionality into...
Semiconductor nanowires offer the opportunity to incorporate novel structures and functionality into...
The morphologies and microstructures of Au-catalyzed InGaAs nanowires (NWs) prepared by a two-step s...
InxGa1-xAs nanowires were grown using metal-organic chemical vapour deposition (MOCVD) with various ...
Abstract The morphologies and microstructures of Au-catalyzed InGaAs nanowires (NWs) prepared by a t...
InxGa1-xAs nanowires were grown using metal-organic chemical vapour deposition (MOCVD) with various ...
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 report the first investigation of indium (In) as the vapor-liquid-solid catalyst of GaP and InGaA...
Understanding the effect of a catalyst on the growth of nanowires is crucial for their controllable ...
InxGa1-xAs NWs have been grown with various indium mole fractions (x) using MOCVD. The morphology of...
In this work, formation of In- and Ga- based nanowires was studied using chemical vapor deposition (...
Growth of Au-catalyzed InP nanowires (NWs) by metalorganic chemical vapor deposition (MOCVD) has bee...
Influence of indium supply on growth dynamics of Au-catalyzed InGaAs nanowires was studied by in sit...
Semiconductor nanowires offer the opportunity to incorporate novel structures and functionality into...
Semiconductor nanowires offer the opportunity to incorporate novel structures and functionality into...
The morphologies and microstructures of Au-catalyzed InGaAs nanowires (NWs) prepared by a two-step s...
InxGa1-xAs nanowires were grown using metal-organic chemical vapour deposition (MOCVD) with various ...
Abstract The morphologies and microstructures of Au-catalyzed InGaAs nanowires (NWs) prepared by a t...
InxGa1-xAs nanowires were grown using metal-organic chemical vapour deposition (MOCVD) with various ...
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 report the first investigation of indium (In) as the vapor-liquid-solid catalyst of GaP and InGaA...
Understanding the effect of a catalyst on the growth of nanowires is crucial for their controllable ...
InxGa1-xAs NWs have been grown with various indium mole fractions (x) using MOCVD. The morphology of...
In this work, formation of In- and Ga- based nanowires was studied using chemical vapor deposition (...
Growth of Au-catalyzed InP nanowires (NWs) by metalorganic chemical vapor deposition (MOCVD) has bee...