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Binary Nanoparticle Superlattices for Plasmonically Modulating Upconversion Luminescence

delete2020-08-20
delete21
PRE
AI
K
Kerong Deng
L
Lili Xu
X
Xin Guo
X
Xiaotong Wu
刘玉莲 cover
刘玉莲 (Yulian Liu)
Z
Zhimin Zhu
李芊 cover
李芊 (Qian Li)
詹求强 (Qiuqiang Zhan) *
李春霞 (Chunxia Li) *
权泽卫 (Zewei Quan) *
DOI:10.1002/smll.202002066delete
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Abstract

Abstract

En 中文
Engineering a facile and controllable approach to modulate the spectral properties of lanthanide-doped upconversion nanoparticles (UCNPs) is always an ongoing challenge. Herein, long-range ordered, distinct two-dimensional (2D) binary nanoparticle superlattices (BNSLs) composed of NaREF4:Yb/Er (RE = Y and Gd) UCNPs and plasmonic metallic nanoparticles (Au NPs), including AB, AB(3), and AB(13)lattices, are fabricated via a slow evaporation-driven self-assembly to achieve plasmonic modulation of upconversion luminescence (UCL). Optical measurements reveal that typical red-green UCL from UCNPs can be effectively modulated into reddish output in BNSLs, with a drastically shortened lifetime. Notably, for AB(3)- and AB(13)-type BNSLs with more proximal Au NPs around each UCNP, modified UCL with fine-structured spectral lineshape is observed. These differences could be interpreted by the interplay of collective plasmon resonance introduced by 2D periodic Au arrays and spectrally selective energy transfer between UCNPs and Au. Thus, fabricating UCNP-Au BNSLs with desired lattice parameters and NP configurations could be a promising way to tailor the UCL through controlled plasmonic modulation.
Keywords:
binary superlattices
nanoparticles
plasmonic modulation
self-assembly
upconversion
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S
south china normal university
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shandong university
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