Optical, electro-optic and optoelectronic properties of natural and chemically modified DNAs

  • Kwon, Young-Wan
  • Choi, Dong Hoon
  • Jin, Jung-Il
Citations

WEB OF SCIENCE

36
Citations

SCOPUS

41

초록

This article reviews recent findings on the optical, electro-optic and optoelectronic properties of natural and modified DNAs. When the sodium (Na+) ions of DNA are replaced with long alkyl quaternary ammonium (Q(+)) ions, the resulting compositions (Q(+)DNA(-)) are organic-soluble, and thin films produced using these materials reveal many interesting optical and optoelectronic properties. These films tend to form well-structured supramolecular assemblies. In contrast, natural DNAs are water-soluble and hygroscopic. DNAs are strong absorbers of UV wavelengths in the region of 260 nm. The Q(+)DNA(-) films are excellent dielectrics that can be utilized as insulating layers in organic thin film transistors. Chemical modification of the Q(+) parts results in many interesting structures that can be used in a wide variety of optical and optoelectronic devices. This review specifically deals with the optical and fluorescence properties of, organic lasing composites, the nonlinear optical characteristics of, light-emitting diodes, and photovoltaic cells based on natural and modified DNAs. Polymer Journal (2012) 44, 1191-1208; doi:10.1038/pj.2012.165; published online 17 October 2012

키워드

DNADNA(-)Q(+)FRETlasingNLOOLEDphotovoltaicRESONANCE ENERGY-TRANSFERDEOXYRIBONUCLEIC-ACIDFLUORESCENCE ENHANCEMENTBEARING CARBAZOLEETHIDIUM-BROMIDENUCLEIC-ACIDSLIPID COMPLEXTHIN-FILMSBINDINGPHOTOLUMINESCENCE
제목
Optical, electro-optic and optoelectronic properties of natural and chemically modified DNAs
저자
Kwon, Young-WanChoi, Dong HoonJin, Jung-Il
DOI
10.1038/pj.2012.165
발행일
2012-12
유형
Review
저널명
Polymer Journal
44
12
페이지
1191 ~ 1208