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Development of an automated microspotting system for rapid dielectrophoretic fabrication of bundled carbon nanotube sensors.

, , , , , and . IEEE Trans Autom. Sci. Eng., 3 (3): 218-227 (2006)

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Gate structure optimization of carbon nanotube transistor based infrared detector., , , , and . NEMS, page 289-292. IEEE, (2010)Towards Batch Fabrication of Carbon Nanotube Sensors by Combining Microinjection and Dielectrophoretic Manipulation., , , , and . ROBIO, page 634-639. IEEE, (2004)A 2-D PVDF Force Sensing System for Micro-Manipulation and Micro-Assembly., , , and . ICRA, page 1489-1494. IEEE, (2002)Automated Nanomanufacturing System to Assemble Carbon Nanotube Based Devices., , , , , , and . Int. J. Robotics Res., 28 (4): 523-536 (2009)Micro fixture enabled in-situ imaging and manipulation of cell membrane protein., , , , , and . NEMS, page 165-168. IEEE, (2010)Investigations of bio markers for human lymphoblastoid cells using Atomic Force Microscopy., , , , , , and . NEMS, page 129-132. IEEE, (2010)High-speed non-cryogenic cooled infrared sensors using carbon nanotubes., , , and . NEMS, page 161-164. IEEE, (2010)Development of an automated microspotting system for rapid dielectrophoretic fabrication of bundled carbon nanotube sensors., , , , , and . IEEE Trans Autom. Sci. Eng., 3 (3): 218-227 (2006)Ultra-low-power and high frequency-response carbon nanotube based MEMS thermal sensors., and . IROS, page 2371-2376. IEEE, (2003)Nano-assembly of DNA based electronic devices using atomic force microscopy., , , , , , , and . IROS, page 583-588. IEEE, (2004)