Real-time observation of formation of indium phosphide nanowires by means of GISAXS
Tomoaki Kawamura, Swarup Bhunia, Shinya Fujikawa, Y. Watanabe, Junji Matsui, Yasushi Kagoshima, Yoshiyuki Tsusaka
Abstract
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Tomoaki Kawamura, Swarup Bhunia, Shinya Fujikawa, Y. Watanabe, Junji Matsui, Yasushi Kagoshima, Yoshiyuki Tsusaka
Abstract
Open-access reader
Real-time observation of InP nanowire formation was performed using grazing incidence small angle x-ray scattering (GISAXS). Prior to the nanowire growth gold colloidal particles were spread on the substrate as the catalyst and annealed at 500 °C. Changes of GISAXS images were clearly observed after annealing, suggesting the formation of molten metal droplets, which were used for nanowire growth. After staring the growth little change except for the increase of GISAXS intensity was observed, suggesting that x-ray scattering from nanowires overlapped with that from the catalysts. From the GISAXS images calculated using a sphere and cylinder model, scattering from the nanowires shows the streak along the q y direction, and that from droplets shows an increase of intensity around the specular reflection, which qualitatively explains the measured GISAXS image after the growth.
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Real-time observation of InP nanowire formation was performed using grazing incidence small angle x-ray scattering (GISAXS). Prior to the nanowire growth gold colloidal particles were spread on the substrate as the catalyst and annealed at 500 °C. Changes of GISAXS images were clearly observed after annealing, suggesting the formation of molten metal droplets, which were used for nanowire growth. After staring the growth little change except for the increase of GISAXS intensity was observed, suggesting that x-ray scattering from nanowires overlapped with that from the catalysts. From the GISAXS images calculated using a sphere and cylinder model, scattering from the nanowires shows the streak along the q y direction, and that from droplets shows an increase of intensity around the specular reflection, which qualitatively explains the measured GISAXS image after the growth.
Key concepts: Indium phosphide, Nanowire, Grazing-incidence small-angle scattering, Materials science, Indium, Phosphide, Nanotechnology, Optoelectronics