This thesis introduces a new route to control the structure of semiconductor nanowires using surface chemistry. Specifically, in Au-catalyzed Si nanowire growth using hydride species (Si₂H₆) as growth precursors, we demonstrate that the surface hydrogen existing on the nanowires sidewalls affects the growth morphology. First, we show the spectroscopic evidence of atomic hydrogen bonded to sidewall surface of Si nanowires in real-time in situ during growth and correlate their relative change with different growth orientations and planar defect generation. By introducing additional atomic hydrogen during the -oriented nanowire growth with intrinsically low hydrogen concentration, we confirm that the growth orientation changes from to orient...
International audienceThe synthesis of silicon nanowires (SiNWs) is carried out at 250 °C under pure...
International audienceThe synthesis of silicon nanowires (SiNWs) is carried out at 250 °C under pure...
Vertically aligned silicon nanowires (Si NWs) on a wafer-scale single crystalline silicon substrate ...
We report on the first <i>in situ</i> chemical investigation of vapor–liquid–solid semiconductor nan...
Presented as part of the Nano@TECH: Student Presentations, a lecture at the Nano@Tech Meeting on Apr...
The vapor-liquid-solid (VLS) mechanism – whereby a liquid eutectic “catalyst” droplet collects precu...
Semiconductor nanowire kinking superstructures, particularly those with long-range structural cohere...
Vapor-liquid-solid nanowire growth below the bulk metal-semiconductor eutectic temperature is known ...
Si nanowires were fabricated using Au nanoparticles as catalyst, either templated by porous anodic a...
Hydride precursors are commonly used for semiconductor nanowire growth from the vapor phase and hydr...
Vapor-liquid-solid nanowire growth below the bulk metal-semiconductor eutectic temperature is known ...
Self-assembled nanowires offer the prospect of accurate and scalable device engineering at an atomis...
Surface adsorbates are well-established choreographers of material synthesis, but the presence and i...
Self-assembled nanowires offer the prospect of accurate and scalable device engineering at an atomis...
International audienceThe synthesis of silicon nanowires (SiNWs) is carried out at 250 °C under pure...
International audienceThe synthesis of silicon nanowires (SiNWs) is carried out at 250 °C under pure...
International audienceThe synthesis of silicon nanowires (SiNWs) is carried out at 250 °C under pure...
Vertically aligned silicon nanowires (Si NWs) on a wafer-scale single crystalline silicon substrate ...
We report on the first <i>in situ</i> chemical investigation of vapor–liquid–solid semiconductor nan...
Presented as part of the Nano@TECH: Student Presentations, a lecture at the Nano@Tech Meeting on Apr...
The vapor-liquid-solid (VLS) mechanism – whereby a liquid eutectic “catalyst” droplet collects precu...
Semiconductor nanowire kinking superstructures, particularly those with long-range structural cohere...
Vapor-liquid-solid nanowire growth below the bulk metal-semiconductor eutectic temperature is known ...
Si nanowires were fabricated using Au nanoparticles as catalyst, either templated by porous anodic a...
Hydride precursors are commonly used for semiconductor nanowire growth from the vapor phase and hydr...
Vapor-liquid-solid nanowire growth below the bulk metal-semiconductor eutectic temperature is known ...
Self-assembled nanowires offer the prospect of accurate and scalable device engineering at an atomis...
Surface adsorbates are well-established choreographers of material synthesis, but the presence and i...
Self-assembled nanowires offer the prospect of accurate and scalable device engineering at an atomis...
International audienceThe synthesis of silicon nanowires (SiNWs) is carried out at 250 °C under pure...
International audienceThe synthesis of silicon nanowires (SiNWs) is carried out at 250 °C under pure...
International audienceThe synthesis of silicon nanowires (SiNWs) is carried out at 250 °C under pure...
Vertically aligned silicon nanowires (Si NWs) on a wafer-scale single crystalline silicon substrate ...