We developed a simple and versatile chemical vapor deposition (CVD) method to synthesize uniform silica sheaths with controlled thickness on a series of one-dimensional nanostructures, such as ZnS, CdS, ZnSe, Si, and Ge nanowires. The nanowire/silica nanocables were characterized using electron microscopy and energy dispersive X-ray spectrometry. The silica sheath was observed to dramatically improve the thermal stability of the nanowires while keep their optical properties unchanged. The growth mechanism and the synthesis conditions for the silica shell were studied.Chemistry, PhysicalNanoscience & NanotechnologyMaterials Science, MultidisciplinarySCI(E)EI11ARTICLE238594-859911
Taking into account the high demands and applications of amorphous SiO2 in various nanostructured fo...
In this microreview, the recent progress on various synthetic methods for 1D semiconductor nanowires...
High-density, free-standing SiO2 nanowire arrays were successfully fabricated by a simple chemical v...
A single step non-catalytic process based on thermal evaporation of silicon monoxide has been establ...
Nanotechnology refers broadly to a field of applied science and technology with a unified theme of ...
Silicon nanowires (SiNWs) with diameter of about a few nanometers and length of 3 ?m on silicon wafe...
Lawn-like nanowire arrays silica nanowires were grown on graphite substrate by thermal evaporation o...
The first results on a simple new process for the direct fabrication of one-dimensional superlattice...
In this paper, we report the synthesis of iron silicide and β-iron disilicide nanowires with ch...
On the basis of the metal-catalyzed chemical vapor deposition method, a general route was developed ...
In this thesis, the fabrication and characterization of one-dimensional nanostructures have been stu...
Silicon nanowires present outstanding properties for electronics, energy, and environmental monitori...
This study investigates the controlled lateral growth of amorphous silica nanowires using the Si act...
Since the discovery of carbon nanotubes, there has been great interest in the synthesis and characte...
One-dimensional nanowires, i.e., nickel nanowires (NW) were synthesized on amorphous SiO2/Si substra...
Taking into account the high demands and applications of amorphous SiO2 in various nanostructured fo...
In this microreview, the recent progress on various synthetic methods for 1D semiconductor nanowires...
High-density, free-standing SiO2 nanowire arrays were successfully fabricated by a simple chemical v...
A single step non-catalytic process based on thermal evaporation of silicon monoxide has been establ...
Nanotechnology refers broadly to a field of applied science and technology with a unified theme of ...
Silicon nanowires (SiNWs) with diameter of about a few nanometers and length of 3 ?m on silicon wafe...
Lawn-like nanowire arrays silica nanowires were grown on graphite substrate by thermal evaporation o...
The first results on a simple new process for the direct fabrication of one-dimensional superlattice...
In this paper, we report the synthesis of iron silicide and β-iron disilicide nanowires with ch...
On the basis of the metal-catalyzed chemical vapor deposition method, a general route was developed ...
In this thesis, the fabrication and characterization of one-dimensional nanostructures have been stu...
Silicon nanowires present outstanding properties for electronics, energy, and environmental monitori...
This study investigates the controlled lateral growth of amorphous silica nanowires using the Si act...
Since the discovery of carbon nanotubes, there has been great interest in the synthesis and characte...
One-dimensional nanowires, i.e., nickel nanowires (NW) were synthesized on amorphous SiO2/Si substra...
Taking into account the high demands and applications of amorphous SiO2 in various nanostructured fo...
In this microreview, the recent progress on various synthetic methods for 1D semiconductor nanowires...
High-density, free-standing SiO2 nanowire arrays were successfully fabricated by a simple chemical v...