arXiv · 1112.6183
Graphene-protein bioelectronic devices with wavelength-dependent photoresponse
Abstract
We implemented a nanoelectronic interface between graphene field effect transistors (FETs) and soluble proteins. This enables production of bioelectronic devices that combine functionalities of the biomolecular and inorganic components. The method serves to link polyhistidine-tagged proteins to graphene FETs using the tag itself. Atomic Force Microscopy and Raman spectroscopy provide structural understanding of the bio/nano hybrid; current-gate voltage measurements are used to elucidate the electronic properties. As an example application, we functionalize graphene FETs with fluorescent proteins to yield hybrids that respond to light at wavelengths defined by the optical absorption spectrum of the protein
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Ye Lu, Mitchell B. Lerner, Zhengqing John Qi, Joseph J. Mitala, Jong Hsien Lim, Bohdana M. Discher, A. T. Charlie Johnson Jr. 2011-12-28. Graphene-protein bioelectronic devices with wavelength-dependent photoresponse. https://doi.org/10.1063/1.3678024
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