Fibres with electronic and photonic properties are essential building blocks for functional fabrics with system level attributes. The scalability of thermal fibre drawing approach offers access to large device quantities, while constraining the devices to be translational symmetric. Lifting this symmetry to create discrete devices in fibres will increase their utility. Here, we draw, from a macroscopic preform, fibres that have three parallel internal non-contacting continuous domains; a semiconducting glass between two conductors. We then heat the fibre and generate a capillary fluid instability, resulting in the selective transformation of the cylindrical semiconducting domain into discrete spheres while keeping the conductive domains unc...
Fibers are ubiquitous and usually passive. Optoelectronics realized in a fiber could revolutionize m...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
One dimensional nanostructure such as nanowires is typically fabricated by the wafer-based approach....
Fibres with electronic and photonic properties are essential building blocks for functional fabrics ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Virtually all electronic and optoelectronic devices necessitate a challenging assembly of conducting...
Electronic devices are evolving from rigid devices into flexible and stretchable structures, enablin...
The ability to integrate a multiplicity of distinct functional elements into a single device structu...
Abstract—A preform-to-fiber approach to the fabrication of functional fiber-based devices by thermal...
Fibers are in every aspect of human life. However, they have surprisingly evolved less in technologi...
© Multimaterial fibers engineered to integrate glasses, metals, semiconductors, and composites foun...
Recent progress in combining multiple materials with disparate optical, electronic, and thermomechan...
Thermally drawn metal–insulator–semiconductor fibers provide a scalable path to functional fibers. H...
International audienceThe recent ability to integrate semiconductor-based optoelectronic functionali...
Optical fibres for telecommunications are well known, have been studied in detail, and are being app...
Fibers are ubiquitous and usually passive. Optoelectronics realized in a fiber could revolutionize m...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
One dimensional nanostructure such as nanowires is typically fabricated by the wafer-based approach....
Fibres with electronic and photonic properties are essential building blocks for functional fabrics ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Virtually all electronic and optoelectronic devices necessitate a challenging assembly of conducting...
Electronic devices are evolving from rigid devices into flexible and stretchable structures, enablin...
The ability to integrate a multiplicity of distinct functional elements into a single device structu...
Abstract—A preform-to-fiber approach to the fabrication of functional fiber-based devices by thermal...
Fibers are in every aspect of human life. However, they have surprisingly evolved less in technologi...
© Multimaterial fibers engineered to integrate glasses, metals, semiconductors, and composites foun...
Recent progress in combining multiple materials with disparate optical, electronic, and thermomechan...
Thermally drawn metal–insulator–semiconductor fibers provide a scalable path to functional fibers. H...
International audienceThe recent ability to integrate semiconductor-based optoelectronic functionali...
Optical fibres for telecommunications are well known, have been studied in detail, and are being app...
Fibers are ubiquitous and usually passive. Optoelectronics realized in a fiber could revolutionize m...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
One dimensional nanostructure such as nanowires is typically fabricated by the wafer-based approach....