Automated handling of microscale objects is essential for manufacturing of next-generation electronic systems. Yet, mechanical pick-and-place technologies cannot manipulate smaller objects whose surface forces dominate over gravity, and emerging microtransfer printing methods require multidirectional motion, heating, and/or chemical bonding to switch adhesion. We introduce soft nanocomposite electroadhesives (SNEs), comprising sparse forests of dielectric-coated carbon nanotubes (CNTs), which have electrostatically switchable dry adhesion. SNEs exhibit 40-fold lower nominal dry adhesion than typical solids, yet their adhesion is increased >100-fold by applying 30 V to the CNTs. We characterize the scaling of adhesion with surface morphol...
Material transfer in switching contacts is considered at very low currents, (below 20mA). The transf...
Roll-to-roll (R2R) printing has been pursued as a commercially viable high-throughput technology to ...
Transfer printing of electronic functions on arbitrary surfaces is essential for next-generation app...
220 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Micro- and nano-scale enginee...
International audienceWe present an optimized process for generating at low cost, patterns of carbon...
We have created a multifunctional dry adhesive film with transferred vertically aligned carbon nanot...
Printing has become an emerging manufacturing technology for mechanics, electronics, and consumer pr...
Carbon nanotube (CNT) has been well-known since its discovery owing to its unique properties such as...
Demand for robust engineering techniques on the micro and nano scales has been steadily growing in t...
The present work studies the synergistic effect of self-assembly multi-walled carbon nanotube (MWCNT...
Manufacturing of printed electronics relies on the deposition of conductive liquid inks, typically o...
For most diminutive life on Earth, control over external adhesive forces is crucial for survival. As...
Poster to be presented at the 2022 Brumley D. Pritchett Lecture & the IMat Symposium on Materials In...
We have created a multifunctional dry adhesive film with transferred vertically aligned carbon nanot...
The formation of three-dimensional (3D) interconnections is essential in integrated circuit packagin...
Material transfer in switching contacts is considered at very low currents, (below 20mA). The transf...
Roll-to-roll (R2R) printing has been pursued as a commercially viable high-throughput technology to ...
Transfer printing of electronic functions on arbitrary surfaces is essential for next-generation app...
220 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Micro- and nano-scale enginee...
International audienceWe present an optimized process for generating at low cost, patterns of carbon...
We have created a multifunctional dry adhesive film with transferred vertically aligned carbon nanot...
Printing has become an emerging manufacturing technology for mechanics, electronics, and consumer pr...
Carbon nanotube (CNT) has been well-known since its discovery owing to its unique properties such as...
Demand for robust engineering techniques on the micro and nano scales has been steadily growing in t...
The present work studies the synergistic effect of self-assembly multi-walled carbon nanotube (MWCNT...
Manufacturing of printed electronics relies on the deposition of conductive liquid inks, typically o...
For most diminutive life on Earth, control over external adhesive forces is crucial for survival. As...
Poster to be presented at the 2022 Brumley D. Pritchett Lecture & the IMat Symposium on Materials In...
We have created a multifunctional dry adhesive film with transferred vertically aligned carbon nanot...
The formation of three-dimensional (3D) interconnections is essential in integrated circuit packagin...
Material transfer in switching contacts is considered at very low currents, (below 20mA). The transf...
Roll-to-roll (R2R) printing has been pursued as a commercially viable high-throughput technology to ...
Transfer printing of electronic functions on arbitrary surfaces is essential for next-generation app...