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  4. Electronic Transport Through Organophosphonate-Grafted Bacteriorhodopsin Films on Titanium Nitride
 
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2021
Conference Paper
Title

Electronic Transport Through Organophosphonate-Grafted Bacteriorhodopsin Films on Titanium Nitride

Abstract
Understanding the charge transport properties of proteins at the molecular scale is crucial for the development of novel bioelectronic devices. In this contribution, we report on the preparation and electrical characterization of thin films of bacteriorhodopsin grafted on the surface of titanium nitride via aminophosphonate linkers. Thickness analysis using atomic force microscopy revealed a protein film thickness of 8.2±1.5 nm, indicating the formation of a protein bilayer. Electrical measurements were carried out in the dry state, in a vertical arrangement with a eutectic gallium-indium (EGaIn) or an evaporated Ti/Au top contact. DC current-voltage measurements yielded comparable effective tunneling decay constants v∼0.13A-1 for the EGaIn top contact and ∼0.15A-1 for the Ti/Au top contact. The results presented herein may establish a novel platform for studying charge transport via protein molecules in a solid-state device configuration.
Author(s)
Chryssikos, Domenikos  
Fraunhofer-Einrichtung für Mikrosysteme und Festkörper-Technologien EMFT  
Dlugosch, Julian M.
Technical University of Munich
Fereiro, Jerry A.
Weizmann Institute of Science
Kamiyama, Takuya
Technical University of Munich
Sheves, Mordechai
Weizmann Institute of Science
Cahen, David
Weizmann Institute of Science
Tornow, Marc  
Fraunhofer-Einrichtung für Mikrosysteme und Festkörper-Technologien EMFT  
Mainwork
IEEE 21st International Conference on Nanotechnology, NANO 2021. Proceedings  
Funder
Deutsche Forschungsgemeinschaft DFG  
Conference
International Conference on Nanotechnology (NANO) 2021  
DOI
10.1109/NANO51122.2021.9514351
Language
English
Fraunhofer-Einrichtung für Mikrosysteme und Festkörper-Technologien EMFT  
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