Fiber electronics is a key research area for realizing wearable microelectronic devices. Significant progress has been made in recent years in developing the geometry and composition of electronic fibers. In this review, we present that recent progress in the architecture and electrical properties of electronic fibers, including their fabrication methods. We intensively investigate the structural designs of fiber-shaped devices: coaxial, twisted, three-dimensional layer-by-layer, and woven structures. In addition, we introduce remarkable applications of fiber-shaped devices for energy harvesting/storage, sensing, and light-emitting devices. Electronic fibers offer high potential for use in next-generation electronics, such as electronic tex...
Textile-based electronic components have gained interest in the fields of science and technology. Re...
This thesis develops a novel dry spinning approach to the smart fiber-based stretchable electronics....
The quest for a close human interaction with electronic devices for healthcare, safety, energy and s...
Summary: Wearable electronics are receiving increasing attention with the advances of human society ...
Fibers are low-cost substrates that are ubiquitous in our daily lives, and their applications have b...
Textile electronics embedded in clothing represent an exciting new frontier for modern healthcare an...
Textile electronics embedded in clothing represent an exciting new frontier for modern healthcare an...
Fiber-based structures are highly desirable for wearable electronics that are expected to be light-w...
Abstract Rapid development of wearable electronics with various functionalities has stimulated the d...
Fibers are materials that have a very long length compared to their cross sectional dimensions, i.e....
ConspectusElectronics worn on the body have the potential to improve human health and the quality of...
Integrating electronics into clothing is a major new concept, which opens up a whole array of multi-...
Smart textiles have recently aroused tremendous interests over the world because of their broad appl...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Electronic devices are evolving from rigid devices into flexible and stretchable structures, enablin...
Textile-based electronic components have gained interest in the fields of science and technology. Re...
This thesis develops a novel dry spinning approach to the smart fiber-based stretchable electronics....
The quest for a close human interaction with electronic devices for healthcare, safety, energy and s...
Summary: Wearable electronics are receiving increasing attention with the advances of human society ...
Fibers are low-cost substrates that are ubiquitous in our daily lives, and their applications have b...
Textile electronics embedded in clothing represent an exciting new frontier for modern healthcare an...
Textile electronics embedded in clothing represent an exciting new frontier for modern healthcare an...
Fiber-based structures are highly desirable for wearable electronics that are expected to be light-w...
Abstract Rapid development of wearable electronics with various functionalities has stimulated the d...
Fibers are materials that have a very long length compared to their cross sectional dimensions, i.e....
ConspectusElectronics worn on the body have the potential to improve human health and the quality of...
Integrating electronics into clothing is a major new concept, which opens up a whole array of multi-...
Smart textiles have recently aroused tremendous interests over the world because of their broad appl...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Electronic devices are evolving from rigid devices into flexible and stretchable structures, enablin...
Textile-based electronic components have gained interest in the fields of science and technology. Re...
This thesis develops a novel dry spinning approach to the smart fiber-based stretchable electronics....
The quest for a close human interaction with electronic devices for healthcare, safety, energy and s...