Virtually all electronic and optoelectronic devices necessitate a challenging assembly of conducting, semiconducting and insulating materials into specific geometries with low-scattering interfaces and microscopic feature dimensions. A variety of wafer-based processing approaches have been developed to address these requirements, which although successful are at the same time inherently restricted by the wafer size, its planar geometry and the complexity associated with sequential high-precision processing steps. In contrast, optical-fibre drawing from a macroscopic preformed rod is simpler and yields extended lengths of uniform fibres. Recently, a new family of fibres composed of conductors, semiconductors and insulators has emerged. These...
A preform-to-flber approach to the fabrication of functional fiber-based devices by thermal drawing ...
The emergence of multimaterial fibers that combine a multiplicity of solid ma-terials with disparate...
The ability to integrate complex electronic and optoelectronic functionalities within soft and thin ...
Recent progress in combining multiple materials with disparate optical, electronic, and thermomechan...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Multimaterial fibers eschew the traditional mono-material structures typical of traditional optical ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
With the fast development of optoelectronic technologies, the demands of flexible, thin and nonplana...
Electronic devices are evolving from rigid devices into flexible and stretchable structures, enablin...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Fibres with electronic and photonic properties are essential building blocks for functional fabrics ...
Fibres with electronic and photonic properties are essential building blocks for functional fabrics ...
Fibers are ubiquitous and usually passive. Optoelectronics realized in a fiber could revolutionize m...
Optical fibers have been realized in a wide range of functional optical and electronic materials inc...
The ability to integrate complex electronic and optoelectronic functionalities within soft and thin ...
A preform-to-flber approach to the fabrication of functional fiber-based devices by thermal drawing ...
The emergence of multimaterial fibers that combine a multiplicity of solid ma-terials with disparate...
The ability to integrate complex electronic and optoelectronic functionalities within soft and thin ...
Recent progress in combining multiple materials with disparate optical, electronic, and thermomechan...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Multimaterial fibers eschew the traditional mono-material structures typical of traditional optical ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
With the fast development of optoelectronic technologies, the demands of flexible, thin and nonplana...
Electronic devices are evolving from rigid devices into flexible and stretchable structures, enablin...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Fibres with electronic and photonic properties are essential building blocks for functional fabrics ...
Fibres with electronic and photonic properties are essential building blocks for functional fabrics ...
Fibers are ubiquitous and usually passive. Optoelectronics realized in a fiber could revolutionize m...
Optical fibers have been realized in a wide range of functional optical and electronic materials inc...
The ability to integrate complex electronic and optoelectronic functionalities within soft and thin ...
A preform-to-flber approach to the fabrication of functional fiber-based devices by thermal drawing ...
The emergence of multimaterial fibers that combine a multiplicity of solid ma-terials with disparate...
The ability to integrate complex electronic and optoelectronic functionalities within soft and thin ...