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Shell-Isolated Nanoparticle-Enhanced Phosphorescence

delete2018-08-23
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AI
孟萌 封面图
孟萌 (Meng Meng)
F
Fan‐Li Zhang
易骏 (Jun Yi)
林隆慧 封面图
林隆慧 (Long‐Hui Lin)
张翠玲 (Cuiling Zhang)
N
Nataraju Bodappa
C
Chaoyu Li
张三军 (Sanjun Zhang)
R
Ricardo F. Aroca
田中群 (Zhong‐Qun Tian)
李剑锋 封面图
李剑锋 (Jian‐Feng Li) *
DOI:10.1021/acs.analchem.8b02109delete
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摘要

摘要

En 中文
The emerging field of plasmonics has promoted applications of optical technology, especially in plasmon-enhanced spectroscopy (PES). However, in plasmon-enhanced fluorescence (PEF), metal loss could significantly quench the fluorescence during the process, which dramatically limits its applications in analysis and high-resolution imaging. In this report, silver core silica shell-isolated nanoparticles (Ag@SiO2 NPs or SHINs) with a tunable thickness of shell are used to investigate the interactions between NPs and emitters by constructing coupling and noncoupling modes. The plasmonic coupling mode between Ag@SiO2 NPs and Ag film reveals an exceeding integrating spectral intensity enhancement of 330 and about 124 times that of the radiative emission rate acceleration for shell isolated nanoparticle enhanced phosphorescence (SHINEP). The experimental findings are supported by theoretical calculations using the finite-element method (FEM). Hence, the SHINEP may provide a novel approach for understanding the interaction of plasmon and phosphorescence, and it holds great potential in surface detection analysis and singlet-oxygen-based clinical therapy.
Keyword:
FLUORESCENCE ENHANCEMENT
SPECTROSCOPIC PROPERTIES
PLASMONIC NANOANTENNAS
RAMAN-SPECTROSCOPY
SURFACE
BIOSENSORS
MOLECULES
SYSTEM
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期刊

Analytical Chemistry 封面图
Analytical Chemistry
IF:
6.7
论文数:
4.7W
被引数:
15.9W

机构

U
university of windsor
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被引数: 3
E
east china normal university
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3.1W
论文数: 2.1W
被引数: 25
X
xiamen university
学者数:
5.9W
论文数: 3.8W
被引数: 67
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