We investigate the lower limit of nanowire diameters stably produced by the process of thermal fiber drawing and fiber tapering. A centimeter-scale macroscopic cylindrical preform containing the nanowire material in the core encased in a polymer scaffold cladding is thermally drawn in the viscous state to a fiber. By cascading several iterations of the process, continuous reduction of the diameter of an amorphous semiconducting chalcogenide glass is demonstrated. Starting from a 10-mm-diameter rod we thermally draw hundreds of meters of continuous sub-5-nm-diameter nanowires. Using this approach, we produce macroscopic lengths of high-density, well-ordered, globally oriented nanowire arrays. © 2011 American Chemical Society
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Current fabrication of low-dimension functional materials (semiconductors or metallic nanowires and ...
Integration of nanowires into functional devices with high yields and good reliability turned out to...
We investigate the lower limit of nanowire diameters stably produced by the process of thermal fiber...
We present a method for fabricating high-density, well-ordered arrays of extended semiconducting nan...
Nanowires are arguably the most studied nanomaterial model to make functional devices and arrays. Al...
One-dimensional nanostructures with high aspect-ratios and nanometer cross-sectional dimensions have...
The mass-productions of vertically aligned extremely long metallic micro/nanowires using fiber drawi...
The mass-productions of vertically aligned extremely long metallic micro/nanowires using fiber drawi...
Nanowires are arguably the most studied nanomaterial model to make functional devices and arrays. Al...
Cataloged from PDF version of article.While nanowires and nanospheres have been utilized in the desi...
While nanowires and nanospheres have been utilized in the design of a diverse array of nanoscale dev...
One dimensional nanostructure such as nanowires is typically fabricated by the wafer-based approach....
Ultra-long metal nanowires and their facile fabrication have been long sought after as they promise ...
One-dimensional optical nanostructures are mass produced from a macroscopic semiconductor rod by usi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Current fabrication of low-dimension functional materials (semiconductors or metallic nanowires and ...
Integration of nanowires into functional devices with high yields and good reliability turned out to...
We investigate the lower limit of nanowire diameters stably produced by the process of thermal fiber...
We present a method for fabricating high-density, well-ordered arrays of extended semiconducting nan...
Nanowires are arguably the most studied nanomaterial model to make functional devices and arrays. Al...
One-dimensional nanostructures with high aspect-ratios and nanometer cross-sectional dimensions have...
The mass-productions of vertically aligned extremely long metallic micro/nanowires using fiber drawi...
The mass-productions of vertically aligned extremely long metallic micro/nanowires using fiber drawi...
Nanowires are arguably the most studied nanomaterial model to make functional devices and arrays. Al...
Cataloged from PDF version of article.While nanowires and nanospheres have been utilized in the desi...
While nanowires and nanospheres have been utilized in the design of a diverse array of nanoscale dev...
One dimensional nanostructure such as nanowires is typically fabricated by the wafer-based approach....
Ultra-long metal nanowires and their facile fabrication have been long sought after as they promise ...
One-dimensional optical nanostructures are mass produced from a macroscopic semiconductor rod by usi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Current fabrication of low-dimension functional materials (semiconductors or metallic nanowires and ...
Integration of nanowires into functional devices with high yields and good reliability turned out to...