The donor-acceptor complexes of quantum dots and ionic perylene diimides for ratiometric detection of double-stranded DNAElectronic supplementary information (ESI) available. See DOI: 10.1039/c6ra16019k

This communication presents a new FRET donor-acceptor system based on hybrid inorganic-organic complexes formed by quantum dots (QDs) and perylene diimides (PDIs). The ratio of the emission of QDs and the FRET emission of PDIs changes as the ratio of the donor and the acceptor changes. This donor-ac...

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Main Authors Aryal, Gyan H, Huang, Liming, Hunter, Kenneth W
Format Journal Article
Published 12.08.2016
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Abstract This communication presents a new FRET donor-acceptor system based on hybrid inorganic-organic complexes formed by quantum dots (QDs) and perylene diimides (PDIs). The ratio of the emission of QDs and the FRET emission of PDIs changes as the ratio of the donor and the acceptor changes. This donor-acceptor system can be used for ratiometric detection of double-stranded DNA. We developed a FRET ratiometric system based on quantum dots and perylene diimides for detection of double-stranded DNAs.
AbstractList This communication presents a new FRET donor-acceptor system based on hybrid inorganic-organic complexes formed by quantum dots (QDs) and perylene diimides (PDIs). The ratio of the emission of QDs and the FRET emission of PDIs changes as the ratio of the donor and the acceptor changes. This donor-acceptor system can be used for ratiometric detection of double-stranded DNA. We developed a FRET ratiometric system based on quantum dots and perylene diimides for detection of double-stranded DNAs.
Author Aryal, Gyan H
Huang, Liming
Hunter, Kenneth W
AuthorAffiliation University of Nevada
Department of Microbiology and Immunology
School of Medicine
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  givenname: Kenneth W
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  fullname: Hunter, Kenneth W
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  publication-title: Molecular Fluorescence: Principles and Applications
  doi: Valeur Berberan-Santos
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  publication-title: Basic Biochemical Methods
  doi: Alexander Griffiths
– issn: 2006
  publication-title: Principles of Fluorescence Spectroscopy
  doi: Lakowicz
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