October 2013

Journal

Electronic Sensitivity of Carbon Nanotubes to Internal Water Wetting

By:
Cao, Di; Pang, Pei; He, Jin; Luo, Tao; Park, Jae Hyun ; Krstic, Predrag S; Nuckolls, Colin; Tang, Jinyao; Lindsay, Stuart
Journal Name:
Nano Letters
Page Number:
3113-3119
Volume:
5
Issue Number:
4
Publication Date:
October 2013
View DOI Listing:
https://doi.org/10.1021/nn200251z

Abstract

We have constructed devices in which the interior of a single-walled carbon nanotube (SWCNT) field-effect transistor acts as a nanofluidic channel that connects two fluid reservoirs, permitting measurement of the electronic properties of the SWCNT as it is wetted by an analyte. Wetting of the inside of the SWCNT by water turns the transistor on, while wetting of the outside has little effect. These observations are consistent with theoretical simulations that show that internal water both generates a large dipole electric field, causing charge polarization of the tube and metal electrodes, and shifts the valance band of the SWCNT, while external water has little effect.