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DNA Base Pair Stacking Crystallization of Gold Colloids
- Lee, Jaewon;
- Huh, Ji-Hyeok;
- Lee, Seungwoo
WEB OF SCIENCE
14SCOPUS
14초록
We describe a DNA base pair (bp) stacking driven 3D crystallization of 70-80 nm gold nanospheres (Au NSs) into a large-area, face-centered-cubic (FCC) lattice. Although great advances have been achieved over the past decade, DNA nanoparticle (NP) crystallization has relied solely on the base complementary binding. This limits the accessible crystal size particularly for the larger and heavier Au NPs (>50 nm). In this work, we argue that the use of DNA bp-stacking (so-called blunt-end stacking) instead of complementary binding can widen the scope of controlled interparticle interactions used to assemble larger Au colloids into a larger-area crystal. Through the optimization of the melting transition, relatively large Au NSs (e.g., 75 nm) with nearly ideal roundness can be crystallized into FCC crystals with the area of up to approximately 1400 μm2. A strong metallodielectric stopband is experimentally observed in the visible range, confirming the high quality of our self-assembled Au colloidal crystals. © 2020 American Chemical Society.
키워드
- 제목
- DNA Base Pair Stacking Crystallization of Gold Colloids
- 저자
- Lee, Jaewon; Huh, Ji-Hyeok; Lee, Seungwoo
- 발행일
- 2020-05
- 유형
- 정기학술지(Article(Perspective Article포함))
- 저널명
- Langmuir
- 권
- 36
- 호
- 19
- 페이지
- 5118 ~ 5125