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
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초록

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

DNACONSTRUCTIONALUMINUMDYNAMICSGROWTH
제목
Molecular doping of nucleic acids into light emitting crystals driven by multisite-intermolecular interaction
저자
Jung, Woo HyukPark, Jin HyukKim, SeokhoCui, ChunzhiAhn, Dong June
DOI
10.1038/s41467-022-33999-y
발행일
2022-10-19
유형
Article
저널명
Nature Communications
13
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