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Electrical properties of nanofibers and structural characterization of DNA-Au(III) complexes

Authors
Kwon, Young-WanLee, Chang HoonJin, Jung-IlHwang, Jong SeungHwang, Sung Woo
Issue Date
23-5월-2014
Publisher
IOP PUBLISHING LTD
Keywords
DNA-based molecular electronics; chemical modification; electrical conductivity; helical structure; DNA-Au(III) complexes
Citation
NANOTECHNOLOGY, v.25, no.20
Indexed
SCIE
SCOPUS
Journal Title
NANOTECHNOLOGY
Volume
25
Number
20
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/98496
DOI
10.1088/0957-4484/25/20/205701
ISSN
0957-4484
Abstract
In order to realize deoxyribonucleic acid (DNA)-based molecular electronics, chemical modifications of DNA are needed to improve electrical conductivity. We developed a novel method utilizing the incorporation of Au(III) ions into DNA bases to alter their electronic properties. When Au(III) ions were incorporated proportionally into DNA bases, conductance increased up to an Au(III) content of 0.42 Au(III) ion/nucleotide. Surprisingly, electron paramagnetic resonance signals of Au(II) ions were detected at g similar to 1.98, and the calculated spin number of Au(II) ions ranged from similar to 10(13) to similar to 10(15). The structural deformation of the DNA helix occurred when complexed with Au(III); simultaneously, the conductance of DNA-Au(III) complexes decreased when the content of Au(III) was higher than 0.42 atom/nucleotide. This observation implies that the maintenance of helical structure in the Au(III) doped state of DNA molecules is very important to the enhancement of the carrier mobility of DNA.
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Graduate School > KU-KIST Graduate School of Converging Science and Technology > 1. Journal Articles
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