Abstract The growth of semiconductor (SC) nanowires (NW) by CVD using Au-catalyzed VLS process has been widely studied over the past few years. Among others SC, it is possible to grow pure Si or SiGe NW thanks to these techniques. Nevertheless, Au could deteriorate the electric properties of SC and the use of other metal catalysts will be mandatory if NW are to be designed for innovating electronic. First, this article's focus will be on SiGe NW's growth using Au catalyst. The authors managed to grow SiGe NW between 350 and 400°C. Ge concentration (x) in Si1- x Ge x NW has been successfully varied by modifying the gas flow ratio: R = GeH4/(SiH4 + GeH4). Characterization (by Raman spectroscopy and XRD) revealed concentrations varying ...
Au nanoparticles are efficient catalysts for the vapour-solid-liquid (VLS) growth of semiconductor n...
This paper reports the growth of the germanium nanowires (Ge NWs) with a single-step temperature met...
Nanowires are promising materials for thermoelectrical or photovoltaïc microgenerators and as buildi...
International audienceThe growth of semiconductor (SC) nanowires (NW) by CVD using Au-catalyzed VLS ...
The use of Ga-Au alloys as metal catalysts for the growth of SiGe nanowires has been investigated. T...
We discuss the benefits of using metals other than Au to catalyze the growth of Si and Ge nanowires,...
Study of SiGe nanowires growth by chemical vapour deposition and characterization by atomic force mi...
Étude de la croissance de nanofils de SiGe par dépôt chimique en phase vapeur et caractérisation par...
The vapor–liquid–solid (VLS) mechanism is widely used for the synthesis of semiconductor nanowires (...
Si and Si1-xGex nanowires are of interest for nanoscale electronics, sensors and photovoltaics. Thes...
Semiconductor nanowires, particularly group 14 semiconductor nanowires, have been the subject of int...
Si1−xGex nanowires (NWs) were prepared by gold-supported chemical vapor deposition (CVD) using a sin...
Si1−xGex nanowires (NWs) were prepared by gold-supported chemical vapor deposition (CVD) using a sin...
Silicon nanowires have been grown with gallium as catalyst by plasma enhanced chemical vapor deposit...
Silicon nanowires (Si-NWs) have been extensively studied for their numerous applications in nano-ele...
Au nanoparticles are efficient catalysts for the vapour-solid-liquid (VLS) growth of semiconductor n...
This paper reports the growth of the germanium nanowires (Ge NWs) with a single-step temperature met...
Nanowires are promising materials for thermoelectrical or photovoltaïc microgenerators and as buildi...
International audienceThe growth of semiconductor (SC) nanowires (NW) by CVD using Au-catalyzed VLS ...
The use of Ga-Au alloys as metal catalysts for the growth of SiGe nanowires has been investigated. T...
We discuss the benefits of using metals other than Au to catalyze the growth of Si and Ge nanowires,...
Study of SiGe nanowires growth by chemical vapour deposition and characterization by atomic force mi...
Étude de la croissance de nanofils de SiGe par dépôt chimique en phase vapeur et caractérisation par...
The vapor–liquid–solid (VLS) mechanism is widely used for the synthesis of semiconductor nanowires (...
Si and Si1-xGex nanowires are of interest for nanoscale electronics, sensors and photovoltaics. Thes...
Semiconductor nanowires, particularly group 14 semiconductor nanowires, have been the subject of int...
Si1−xGex nanowires (NWs) were prepared by gold-supported chemical vapor deposition (CVD) using a sin...
Si1−xGex nanowires (NWs) were prepared by gold-supported chemical vapor deposition (CVD) using a sin...
Silicon nanowires have been grown with gallium as catalyst by plasma enhanced chemical vapor deposit...
Silicon nanowires (Si-NWs) have been extensively studied for their numerous applications in nano-ele...
Au nanoparticles are efficient catalysts for the vapour-solid-liquid (VLS) growth of semiconductor n...
This paper reports the growth of the germanium nanowires (Ge NWs) with a single-step temperature met...
Nanowires are promising materials for thermoelectrical or photovoltaïc microgenerators and as buildi...