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Competing Photocurrent Mechanisms in Quasi-Metallic Carbon Nanotube pn Devices
Moh R Amer1, Shun-Wen Chang2, Stephen B Cronin2,3,4
1Center of Excellence for Green Nanotechnologies, University of California Los Angeles, CA 90095, USA and King Abdulaziz City for Science and Technology, Riyadh, Saudi Arabia.
Abstract:
Photodetectors based on quasi-metallic carbon nanotubes exhibit unique optoelectronic properties. Due to their small bandgap, photocurrent generation is possible at room temperature. The origin of this photocurrent is investigated to determine the underlying mechanism, which can be photothermoelectric effect or photovoltaic effect, depending on the bandgap magnitude of the quasi-metallic nanotube.
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