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Molecular doping of nucleic acids into light emitting crystals driven by multisite-intermolecular interaction
- Jung, Woo Hyuk;
- Park, Jin Hyuk;
- Kim, Seokho;
- Cui, Chunzhi;
- Ahn, Dong June
WEB OF SCIENCE
10SCOPUS
11초록
We reveal the fundamental understanding of molecular doping of DNAs into organic semiconducting tris (8-hydroxyquinoline) aluminum (Alq(3)) crystals by varying types and numbers of purines and pyrimidines constituting DNA. Electrostatic, hydrogen bonding, and pi-pi stacking interactions between Alq(3) and DNAs are the major factors affecting the molecular doping. Longer DNAs induce a higher degree of doping due to electrostatic interactions between phosphate backbone and Alq(3). Among four bases, single thymine bases induce the multisite interactions of pi-pi stacking and hydrogen bonding with single Alq(3), occurring within a probability of 4.37%. In contrast, single adenine bases form multisite interactions, within lower probability (1.93%), with two-neighboring Alq(3). These multisite interactions facilitate the molecular doping into Alq(3) particles compared to cytosines or guanines only forming pi-pi stacking. Thus, photoluminescence and optical waveguide phenomena of crystals were successfully tailored. This discovery should deepen our fundamental understanding of incorporating DNAs into organic semiconducting crystals.
키워드
- 제목
- Molecular doping of nucleic acids into light emitting crystals driven by multisite-intermolecular interaction
- 저자
- Jung, Woo Hyuk; Park, Jin Hyuk; Kim, Seokho; Cui, Chunzhi; Ahn, Dong June
- 발행일
- 2022-10-19
- 유형
- Article
- 권
- 13
- 호
- 1