The Center for High-rate Nanomanufacturing is focused on developing tools and processes that will enable high-rate/high-volume bottom-up, precise, parallel assembly of nanoelements (such as carbon nanotubes, nanoparticles, etc.) and polymer nanostructures. The Center’s nanotemplates are utilized to conduct fast massive directed assembly of nanoscale elements by controlling the forces required to assemble, detach, and transfer nanoelements at high rates and over large areas. The developed nanotemplates and tools will accelerate the creation of highly anticipated commercial products and will enable the creation of an entirely new generation of applications.
Now Accepting Applications for the 2008 REU Program
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NSF Center for High-rate Nanomanufacturing to host Museum of Science Forum on Nanotechnology and Alternative Energy
April 3, 2008
6:30-9:00pm
Northeastern University
Registration and Forum Details
NSF Center for Nano and Micro-contamination Control
5th International Surface Cleaning Workshop
Proceedings Now Available
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NanoManufacturing Conference & Exhibits
Society of Manufacturing Engineers
Sheraton Framingham Hotel
Framingham, MA USA
April 22 - April 23, 2008
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MicroManufacturing Conference & Exhibits
Society of Manufacturing Engineers
Sheraton Framingham Hotel
Framingham, MA USA
April 22 - April 23, 2008
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The 5th New England International Nanomanufacturing Workshop Proceedings now available
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Ahmed Busnaina Participates in Semiconductor International Webcast on "Nanotechnology's Role in Post-CMOS Production"
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Alumni Magazine Feature Article on Nanotechnology - "All Things Great . . . Are Small"
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CHN Director Ahmed Busnaina edits new publication "Nanomanufacturing Handbook""
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June 19 - 20, 2007:
The 5th New England International Nanomanufacturing Workshop.
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June 27 - 29, 2007:
1st International Conference on Nanomanufacturing and Directed Self-Assembly Processes, Seoul, Korea
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NSF Center for High-rate Nanomanufacturing
467 Egan Center
120 Forsyth Street
Boston, MA 02115
(617) 373-6012
NSF Center for Nano and Micro-contamination Control
The George J. Kostas Nanoscale Technology and Manufacturing Facility
This work was supported by the National Science Foundation (Award # NSF-0425826)
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