EFFECT OF EXTERNAL ELECTRICAL STIMULI ON DNA-BASED BIOPOLYMERS

Author:

SUBRAMANYAM GURU1,BARTSCH CARRIE M.1,GROTE JAMES G.2,NAIK RAJESH R.2,BROTT LAWRENCE L.2,STONE MORLEY2,CAMPBELL ANGELA2

Affiliation:

1. Department of Electrical and Computer Engineering, University of Dayton, 300 College Park, Dayton, OH 45469, USA

2. Air Force Research Laboratory, Wright Patterson Air Force Base, Dayton, OH 45433, USA

Abstract

Biopolymers, such as deoxyribonucleic acid-hexadecyltrimethyl ammonium chloride (DNA-CTMA) and bovine serum albumin-polyvinyl alcohol (BSA-PVA), were studied using a novel capacitive test structure. A variety of external electrical stimuli were applied, including a low frequency alternating current signal and a rf/microwave frequency signal combined with a DC bias. The dynamic responses of the DNA-based biopolymer to the external stimuli are presented in this paper. The electrical transport measurements support the space-charge-limited conduction and the low frequency capacitance–voltage (CV) measurements showed large depletion layer capacitance at the Au –biopolymer interface, at 20 Hz, and the capacitance approaching bulk values at 1 MHz. Electric force microscopy (EFM) was utilized for visualization of charge dynamics and to examine the effect of DC bias combined with an AC signal. Ionic charges in the DNA-CTMA system seem to be responsible for the dynamic response to the various external electrical stimuli.

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,General Materials Science

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