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| Content Provider | The American Society of Mechanical Engineers (ASME) Digital Collection |
|---|---|
| Author | Yuan, Hanwen Cambron, Scott Crain, Mark Keynton, Robert |
| Copyright Year | 2016 |
| Abstract | The purpose of this work is to introduce a new fabrication technique for creating a fluidic platform with embedded micro or nanoscale channels. This new technique includes: 1) a 3-axis robotic dispensing system for drawing micro/nanoscale suspended polymer fibers at prescribed locations; 2) dry film resist photolithography; and, 3) replica molding. This new technique provides flexibility and precise control of the micro and nanochannel location with the ability to create multiple channels of varying sizes embedded in a single fluidic platform. These types of micro/nanofluidic platforms are attractive for numerous applications, such as the separation of biomolecules, cell transport and transport across cell membranes via electroporation. The focus of this work is on the development of a fabrication technique for the creation of a nanoscale electroporation device. |
| Sponsorship | Manufacturing Engineering Division |
| File Format | |
| ISBN | 9780791849897 |
| DOI | 10.1115/MSEC2016-8797 |
| Volume Number | Volume 1: Processing |
| Conference Proceedings | ASME 2016 11th International Manufacturing Science and Engineering Conference |
| Language | English |
| Publisher Date | 2016-06-27 |
| Publisher Place | Blacksburg, Virginia, USA |
| Access Restriction | Subscribed |
| Subject Keyword | Molding Polymer fibers Nanoscale phenomena Electroporation Nanofluidics Cell membranes Manufacturing Photolithography Separation (technology) Robotics |
| Content Type | Text |
| Resource Type | Article |
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