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Research Article

Polyelectrolyte multilayer electrostatic gating of graphene field-effect transistors

Yung Yu Wang1Peter J. Burke2( )
Department of Chemical Engineering and Materials ScienceUniversity of California, Irvine, IrvineCalifornia92697USA
Department of Electrical Engineering and Computer ScienceUniversity of California, Irvine, IrvineCalifornia92697USA
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Abstract

We apply polyelectrolyte multilayer films by consecutive alternate adsorption of positively charged polyallylamine hydrochloride and negatively charged sodium polystyrene sulfonate to the surface of graphene field effect transistors. Oscillations in the Dirac voltage shift with alternating positive and negative layers clearly demonstrate the electrostatic gating effect in this simple model system. A simple electrostatic model accounts well for the sign and magnitude of the Dirac voltage shift. Using this system, we are able to create p-type or n-type graphene at will. This model serves as the basis for understanding the mechanism of charged polymer sensing using graphene devices, a potentially technologically important application of graphene in areas such as DNA sequencing, biomarker assays for cancer detection, and other protein sensing applications.

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Nano Research
Pages 1650-1658

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Cite this article:
Wang YY, Burke PJ. Polyelectrolyte multilayer electrostatic gating of graphene field-effect transistors. Nano Research, 2014, 7(11): 1650-1658. https://doi.org/10.1007/s12274-014-0525-9

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Received: 30 April 2014
Revised: 23 June 2014
Accepted: 27 June 2014
Published: 03 September 2014
© Tsinghua University Press and Springer-Verlag Berlin Heidelberg 2014