Controlling Chiroptical Responses via Chemo-Mechanical Deformation of DNA Origami Structures

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초록

DNA origami-based templates have been widely used to fabricate chiral plasmonic metamaterials due to their precise control of the placement of nanoparticles (NPs) in a desired configuration. However, achieving various chiroptical responses inevitably requires a change in the structure of DNA origami-based templates or binding sites on them, leading to the use of significantly different sets of DNA strands. Here, we propose an approach to controlling various chiroptical responses with a single DNA origami design using its chemo-mechanical deformation induced by DNA intercalators. The chiroptical response could be finely tuned by altering the concentration of intercalators only. The silver (Ag) enhancement was used to amplify the chiroptical signal by enlarging NPs and to maintain it by stiffening the template DNA structure. Furthermore, the sensitivity in the chiroptical signal change to the concentration of intercalators could be modulated by the type of intercalator, the mixture of two intercalators, and the stiffness of DNA origami structures. This approach would be useful in a variety of optical applications that require programmed spatial modification of chiroptical responses.

키워드

Ag enhancementchiroptical responsecircular dichroismDNA nanotechnologyintercalatorplasmonic nanoparticlesSECONDARY STRUCTUREGOLD NANOPARTICLESSHAPESNANOSTRUCTURESASSEMBLIESPLACEMENTETHIDIUMACRIDINEHELIX
제목
Controlling Chiroptical Responses via Chemo-Mechanical Deformation of DNA Origami Structures
저자
Kim, TaehwiLee, ChanseokLee, Jae YoungKim, Do-Nyun
DOI
10.1021/acsnano.3c10386
발행일
2024-01
유형
정기학술지(Article(Perspective Article포함))
저널명
ACS Nano
18
4
페이지
3414 ~ 3423