Our Vision is to incorporate nano-device properties in macroscale products using multimaterial fibers as building blocks. Applying a new hybrid manufacturing approach, which involves 3D printing of multimaterial preforms consisting of semiconducting and metallic cores, thermal drawing of those preforms into fibers and axial patterning of the multimaterial cores by selective spatially coherent capillarity instabilities, we are able to produce integrated device arrays spanning the entire length of the fiber. The tremendous aspect ratio of the internal fiber features, kilometers long and submicron in cross section, have numerous applications. Being made of biocompatible materials, such as silica, silicon, and platinum, fiber devices could be ...
Ubiquitous computation has influenced a broad array of domains from manufacturing to drug discovery ...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
Engineered scaffolds function to supplement or replace injured, missing, or compromised tissue or or...
Fibers are ubiquitous and usually passive. Optoelectronics realized in a fiber could revolutionize m...
The ability to three-dimensionally interweave biological and functional materials into 3D composites...
Thesis: S.M., Massachusetts Institute of Technology, School of Architecture and Planning, Program in...
With the development of convergence technology, the Internet of Things (IoT), and artificial intelli...
It is envisaged that the creation of cellular environments at multiple length scales, that recapitul...
Electronics that are capable of intimate, non-invasive integration with the soft, curvilinear surfac...
There exists an opportunity within manufacturing for the development of technology capable of creati...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
In biofabrication, researchers aim to produce three-dimensional (3D) constructs for the regeneration...
Recent advances on nanotechnology have created new frontiers, terminologies, and possibilities that ...
Recent advances in biofabrication have unveiled opportunities to build up biomimetic scaffolds and a...
The design of scaffolds to reach similar three-dimensional structures mimicking the natural and fibr...
Ubiquitous computation has influenced a broad array of domains from manufacturing to drug discovery ...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
Engineered scaffolds function to supplement or replace injured, missing, or compromised tissue or or...
Fibers are ubiquitous and usually passive. Optoelectronics realized in a fiber could revolutionize m...
The ability to three-dimensionally interweave biological and functional materials into 3D composites...
Thesis: S.M., Massachusetts Institute of Technology, School of Architecture and Planning, Program in...
With the development of convergence technology, the Internet of Things (IoT), and artificial intelli...
It is envisaged that the creation of cellular environments at multiple length scales, that recapitul...
Electronics that are capable of intimate, non-invasive integration with the soft, curvilinear surfac...
There exists an opportunity within manufacturing for the development of technology capable of creati...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
In biofabrication, researchers aim to produce three-dimensional (3D) constructs for the regeneration...
Recent advances on nanotechnology have created new frontiers, terminologies, and possibilities that ...
Recent advances in biofabrication have unveiled opportunities to build up biomimetic scaffolds and a...
The design of scaffolds to reach similar three-dimensional structures mimicking the natural and fibr...
Ubiquitous computation has influenced a broad array of domains from manufacturing to drug discovery ...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
Engineered scaffolds function to supplement or replace injured, missing, or compromised tissue or or...