Diamond-lattice photonic crystals assembled from DNA origami

  • Posnjak, Gregor; 
  • Yin, Xin; 
  • Butler, Paul; 
  • Bienek, Oliver; 
  • Dass, Mihir; 
  • ... Lee, Seungwoo; 
  • 외 2명
Citations

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120
Citations

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121

초록

Colloidal self-assembly allows rational design of structures on the micrometer and submicrometer scale. One architecture that can generate complete three-dimensional photonic bandgaps is the diamond cubic lattice, which has remained difficult to realize at length scales comparable with the wavelength of visible or ultraviolet light. In this work, we demonstrate three-dimensional photonic crystals self-assembled from DNA origami that act as precisely programmable patchy colloids. Our DNA-based nanoscale tetrapods crystallize into a rod-connected diamond cubic lattice with a periodicity of 170 nanometers. This structure serves as a scaffold for atomic-layer deposition of high-refractive index materials such as titanium dioxide, yielding a tunable photonic bandgap in the near-ultraviolet.

키워드

SPONTANEOUS EMISSION; FOLDING DNA; BANDGAP; SHAPES
제목
Diamond-lattice photonic crystals assembled from DNA origami
저자
Posnjak, Gregor; Yin, Xin; Butler, Paul; Bienek, Oliver; Dass, Mihir; Lee, Seungwoo; Sharp, Ian D.; Liedl, Tim
DOI
10.1126/science.adl2733
발행일
2024-05-17
유형
Article
저널명
Science
권
384
호
6697
페이지
781 ~ 785