Individual SWCNT based ionic field effect transistor
ORAL
Abstract
Here we report that the ionic current through a single-walled carbon nanotube (SWCNT) can be effectively gated by a perpendicular electrical field from a top gate electrode, working as ionic field effect transistor. Both our experiment and simulation confirms that the electroosmotic current (EOF) is the main component in the ionic current through the SWCNT and is responsible for the gating effect. We also studied the gating efficiency as a function of solution concentration and pH and demonstrated that the device can work effectively in the physiological relevant condition. This work opens the door to use CNT based nanofluidics for ion and molecule manipulation.
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Authors
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Pei Pang
Department of Physics, Biodesign Institute, Arizona State University
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Jin He
Biodesign Institute, Arizona State University
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Jae Hyun Park
Physics Division, Oak Ridge National Laboratory
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Predrag Krstic
Oak Ridge National Laboratory, Physics Division, Oak Ridge National Laboratory
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Stuart Lindsay
Department of Physics, Biodesign Institute, Department of Chemistry and Biochemistry, Arizona State University