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溶液中耦合到等离子体金纳米杯阵列的铜铟硫量子点的光致发光增强

Photoluminescence Enhancement of CuInS Quantum Dots in Solution Coupled to Plasmonic Gold Nanocup Array.

作者信息

Peer Akshit, Hu Zhongjian, Singh Ajay, Hollingsworth Jennifer A, Biswas Rana, Htoon Han

机构信息

Ames Laboratory, Ames, IA, 50011, USA.

Department of Electrical and Computer Engineering, Iowa State University, Ames, IA, 50011, USA.

出版信息

Small. 2017 Sep;13(33). doi: 10.1002/smll.201700660. Epub 2017 Jul 5.

Abstract

A strong plasmonic enhancement of photoluminescence (PL) decay rate in quantum dots (QDs) coupled to an array of gold-coated nanocups is demonstrated. CuInS QDs that emit at a wavelength that overlaps with the extraordinary optical transmission (EOT) of the gold nanocup array are placed in the cups as solutions. Time-resolved PL reveals that the decay rate of the QDs in the plasmonically coupled system can be enhanced by more than an order of magnitude. Using finite-difference time-domain (FDTD) simulations, it is shown that this enhancement in PL decay rate results from an enhancement factor of ≈100 in electric field intensity provided by the plasmonic mode of the nanocup array, which is also responsible for the EOT. The simulated Purcell factor approaches 86 at the bottom of the nanocup and is ≈3-15 averaged over the nanocup cavity height, agreeing with the experimental enhancement result. This demonstration of solution-based coupling between QDs and gold nanocups opens up new possibilities for applications that would benefit from a solution environment such as biosensing.

摘要

已证明,与一系列镀金纳米杯耦合的量子点(QD)的光致发光(PL)衰减率会出现强烈的等离子体增强。发射波长与金纳米杯阵列的超常光学透射(EOT)重叠的铜铟硫量子点以溶液形式置于杯中。时间分辨光致发光表明,等离子体耦合系统中量子点的衰减率可提高一个多数量级。使用时域有限差分(FDTD)模拟表明,PL衰减率的这种增强源于纳米杯阵列的等离子体模式提供的电场强度增强因子约为100,这也导致了EOT。模拟的珀塞尔因子在纳米杯底部接近86,在纳米杯腔高度上平均约为3 - 15,与实验增强结果一致。量子点与金纳米杯之间基于溶液的耦合证明为诸如生物传感等受益于溶液环境的应用开辟了新的可能性。

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