Over the past decade, recent advances in material science, nanotechnology and structural engineering have emerge with novel and versatile tools demonstrating considerable promise for the adoption of flexible and stretchable electronics on into everyday life. These systems have opened up new avenues for body integrated-electronics that were earlier impossible to conceive. This dissertation is devoted to demonstrate the recent advances in printed devices by utilizing new material-design strategies towards the fabrication of smart printed electronics and biomedical devices.The first theme provides an overview on the design and fabrication of printed electronics and summarized the current limitation and challenges. Opportunities and future pros...
As additive manufacturing becomes increasingly ubiquitous in academia and industry, there is a growi...
Poster to be presented at the 2022 Brumley D. Pritchett Lecture & the IMat Symposium on Materials In...
This thesis addresses the development of materials, technologies and circuits applied for the fabric...
Over the past decade, recent advances in material science, nanotechnology and structural engineering...
Unconventional electronic devices in soft and three-dimensional (3D) curvilinear formats hold promis...
Recent progress in fabricating flexible electronics has been significantly developed because of the ...
Compared to traditional, simple, planar or tubular flexible devices fabricated by spin-coating, cast...
Recent progress in fabricating flexible electronics has been significantly developed because of the ...
Compared to traditional, simple, planar or tubular flexible devices fabricated by spin-coating, cast...
The advent of additive manufacturing (AM), commonly known as 3D printing, has enabled the rapid, on-...
3D printing has been demonstrated as a mighty tool for fast prototyping in many fields. The fast rec...
Flexible electronics has huge potential to bring revolution in robotics and prosthetics as well as t...
Flexible electronics has huge potential to bring revolution in robotics and prosthetics as well as t...
Stretchable electronics, represents a class of novel electronic devices fabricated on flexible and b...
As additive manufacturing becomes increasingly ubiquitous in academia and industry, there is a growi...
As additive manufacturing becomes increasingly ubiquitous in academia and industry, there is a growi...
Poster to be presented at the 2022 Brumley D. Pritchett Lecture & the IMat Symposium on Materials In...
This thesis addresses the development of materials, technologies and circuits applied for the fabric...
Over the past decade, recent advances in material science, nanotechnology and structural engineering...
Unconventional electronic devices in soft and three-dimensional (3D) curvilinear formats hold promis...
Recent progress in fabricating flexible electronics has been significantly developed because of the ...
Compared to traditional, simple, planar or tubular flexible devices fabricated by spin-coating, cast...
Recent progress in fabricating flexible electronics has been significantly developed because of the ...
Compared to traditional, simple, planar or tubular flexible devices fabricated by spin-coating, cast...
The advent of additive manufacturing (AM), commonly known as 3D printing, has enabled the rapid, on-...
3D printing has been demonstrated as a mighty tool for fast prototyping in many fields. The fast rec...
Flexible electronics has huge potential to bring revolution in robotics and prosthetics as well as t...
Flexible electronics has huge potential to bring revolution in robotics and prosthetics as well as t...
Stretchable electronics, represents a class of novel electronic devices fabricated on flexible and b...
As additive manufacturing becomes increasingly ubiquitous in academia and industry, there is a growi...
As additive manufacturing becomes increasingly ubiquitous in academia and industry, there is a growi...
Poster to be presented at the 2022 Brumley D. Pritchett Lecture & the IMat Symposium on Materials In...
This thesis addresses the development of materials, technologies and circuits applied for the fabric...