等离子体子
纳米光子学
纳米技术
光致发光
纳米材料
生物传感器
材料科学
量子点
纳米颗粒
纳米传感器
等离子纳米粒子
制作
光电子学
医学
替代医学
病理
作者
Won‐Geun Kim,Jong-Min Lee,Younghwan Yang,Hongyoon Kim,Vasanthan Devaraj,Minjun Kim,Hyuk Jeong,Eun‐Jung Choi,Jihyuk Yang,Y. D. Jang,Trevon Badloe,D. Lee,Junsuk Rho,Ji Tae Kim,Jin‐Woo Oh
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-05-27
卷期号:22 (12): 4702-4711
被引量:33
标识
DOI:10.1021/acs.nanolett.2c00790
摘要
Plasmonic nanoparticle clusters promise to support unique engineered electromagnetic responses at optical frequencies, realizing a new concept of devices for nanophotonic applications. However, the technological challenges associated with the fabrication of three-dimensional nanoparticle clusters with programmed compositions remain unresolved. Here, we present a novel strategy for realizing heterogeneous structures that enable efficient near-field coupling between the plasmonic modes of gold nanoparticles and various other nanomaterials via a simple three-dimensional coassembly process. Quantum dots embedded in the plasmonic structures display ∼56 meV of a blue shift in the emission spectrum. The decay enhancement factor increases as the total contribution of radiative and nonradiative plasmonic modes increases. Furthermore, we demonstrate an ultracompact diagnostic platform to detect M13 viruses and their mutations from femtoliter volume, sub-100 pM analytes. This platform could pave the way toward an effective diagnosis of diverse pathogens, which is in high demand for handling pandemic situations.
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