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Keyword [Carbon Nanotube]
Result: 161 - 180 | Page: 9 of 10
161. Airborne monitoring to distinguish engineered nanomaterials from incidental particles and to develop safe laboratory procedures for carbon nanotube sample preparation
162. Carbon nanotube transistor and its application
163. Designing low-power and high-performance digital circuits with carbon nanotube transistors
164. Development of a high performance parallel computing platform and its use in the study of nanostructures: Clusters, sheets and tubes
165. Nanostructured organic light-emitting diodes with electronic doping, transparent carbon nanotube charge injectors, and quantum dots
166. Performance comparison between copper, carbon nanotube, and optics for off-chip and on-chip interconnects
167. Nano-assembled carbon nanotube thin film based microstructures, field-effect transistors, and acetylcholine biosensors
168. In vitro detection of biological molecules using carbon nanotube field-effect transistors
169. High-performance low-power carbon nanotube FET SRAM with tolerance to metallic CNTS
170. Carbon nanotube crossbar electrodes for high performance memory devices
171. Carbon nanotube array electrodes for organic thin film transistors
172. Infrared sensing systems using carbon nanotube based photodetectors
173. High performance, high stability and low power SRAM design by using carbon nanotube field effect transistors
174. Materials Integration and Doping of Carbon Nanotube-based Logic Circuits
175. High frequency generation from carbon nanotube field effect transistors used as passive mixers
176. A High-Speed Low-Power Modulo 2(n)+1 Multiplier Design Using Carbon-Nanotube Technology
177. Ultrathin and highly flexible parylene-C packaged carbon nanotube field effect transistors
178. All-fiber frequency comb employing a single walled carbon nanotube saturable absorber for optical frequency metrology in near infrared
179. Exploring new dielectrics to improve switching speeds of carbon nanotube memory devices
180. Robust circuit & architecture design in the nanoscale regime
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