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Nanotechnology / Nanoelectronics / Electromagnetism / Carbon nanotube / IsoNanotubes / NanoIntegris / Transistor / Nanowire / Field-effect transistor / Carbon nanotubes / Emerging technologies / Technology


ARTICLE Radio Frequency and Linearity Performance of Transistors Using High-Purity Semiconducting Carbon Nanotubes
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Document Date: 2013-08-20 09:37:00


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File Size: 3,17 MB

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City

Los Angeles / /

Company

NanoIntegris Inc. / Aneeve Nanotechnologies LLC / Getty S. A. / /

Country

United States / /

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Facility

University of Southern California / Joint KACST/California Center of Excellence / Northwestern University / UCLA California Nanosystems Institute / University of California / /

IndustryTerm

low current drive nanotube devices / separated nanotube solution / uniform nanotube networks / source/drain metal contacts / density semiconducting nanotube network / bottom metal electrodes / digital circuit applications / electronics / chemical vapor deposition / metal electrodes / e-beam / nanotube solution / bulk devices / Possible solutions / above proposed solutions / manufacturing tolerances / uniform semiconducting nanotube networks / separated nanotube networks / circuit applications / /

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Structure / /

Organization

American Chemical Society / Joint KACST/California Center of Excellence / DARPA / Northwestern University / UCLA California Nanosystems Institute / University of Southern California / Los Angeles / University of California / Los Angeles / Department of Electrical Engineering / /

Person

Nathan Yoder / Elliott Garlock / Mark Hersam / Nat / Adam / Kang L. Wang / Alexander Badmaev / WANG ET AL / /

Position

Professor / Farmer / Cao / /

ProvinceOrState

Southern California / California / /

RadioStation

WANG / /

Region

Southern California / /

Technology

dielectric / microwave / Radio Frequency / integrated circuits / CVD / chemical vapor deposition / /

URL

www.acsnano.org / http /

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