AI Chat Paper
Note: Please note that the following content is generated by AMiner AI. SciOpen does not take any responsibility related to this content.
{{lang === 'zh_CN' ? '文章概述' : 'Summary'}}
{{lang === 'en_US' ? '中' : 'Eng'}}
Chat more with AI
Article Link
Collect
Submit Manuscript
Show Outline
Outline
Show full outline
Hide outline
Outline
Show full outline
Hide outline
Research Article

Deterministic assembly of single emitters in sub-5 nanometer optical cavity formed by gold nanorod dimers on three-dimensional DNA origami

Zhi Zhao1,3,4Xiahui Chen3Jiawei Zuo3Ali Basiri3Shinhyuk Choi3Yu Yao3Yan Liu1,2( )Chao Wang1,3( )
Center for Molecular Design and Biomimetics at the Biodesign InstituteArizona State UniversityTempe, Arizona85287USA
School of Molecular SciencesArizona State UniversityTempeAZ 85287USA
School of Electrical, Computer and Energy EngineeringArizona State UniversityTempeAZ 85287USA
Faculty of Materials and Manufacturing, Key Laboratory of Advanced Functional MaterialsEducation Ministry of China, Beijing University of TechnologyBeijing100124China
Show Author Information

Abstract

Controllable strong interactions between a nanocavity and a single emitter is important to manipulating optical emission in a nanophotonic system but challenging to achieve. Herein a three-dimensional DNA origami, named as DNA rack (DR) is proposed and demonstrated to deterministically and precisely assemble single emitters within ultra-small plasmonic nanocavities formed by closely coupled gold nanorods (AuNRs). Uniquely, the DR is in a saddle shape, with two tubular grooves that geometrically allow a snug fit and linearly align two AuNRs with a bending angle < 10°. It also includes a spacer at the saddle point to maintain the gap between AuNRs as small as 2-3 nm, forming a nanocavity estimated to be 20 nm3 and an experimentally measured Q factor of 7.3. A DNA docking strand is designed at the spacer to position a single fluorescent emitter at nanometer accuracy within the cavity. Using Cy5 as a model emitter, a ~ 30-fold fluorescence enhancement and a significantly reduced emission lifetime (from 1.6 ns to 670 ps) were experimentally verified, confirming significant emitter-cavity interactions. This DR-templated assembly method is capable of fitting AuNRs of variable length-to-width aspect ratios to form anisotropic nanocavities and deterministically incorporate different single emitters, thus enabling flexible design of both cavity resonance and emission wavelengths to tailor light-matter interactions at nanometer scale.

Graphical Abstract

Electronic Supplementary Material

Download File(s)
12274_2021_3661_MOESM1_ESM.pdf (4.7 MB)

References

【1】
【1】
 
 
Nano Research
Pages 1327-1337

{{item.num}}

Comments on this article

Go to comment

< Back to all reports

Review Status: {{reviewData.commendedNum}} Commended , {{reviewData.revisionRequiredNum}} Revision Required , {{reviewData.notCommendedNum}} Not Commended Under Peer Review

Review Comment

Close
Close
Cite this article:
Zhao Z, Chen X, Zuo J, et al. Deterministic assembly of single emitters in sub-5 nanometer optical cavity formed by gold nanorod dimers on three-dimensional DNA origami. Nano Research, 2022, 15(2): 1327-1337. https://doi.org/10.1007/s12274-021-3661-z
Topics:

1680

Views

12

Crossref

15

Web of Science

15

Scopus

3

CSCD

Received: 04 May 2021
Revised: 06 June 2021
Accepted: 07 June 2021
Published: 06 August 2021
© Tsinghua University Press and Springer-Verlag GmbH Germany, part of Springer Nature 2021