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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Fluorescence spectroscopy of individual semiconductor nanoparticles in different ethylene glycols
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Fluorescence spectroscopy of individual semiconductor nanoparticles in different ethylene glycols

机译:不同乙二醇中各半导体纳米颗粒的荧光光谱

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摘要

The optical properties of single colloidal semiconductor nanoparticles (NPs) are considerably influenced by the direct environment of the NPs. Here, the influence of different liquid and solid glycol matrices on CdSe-based NPs is investigated. Since the fluorescence of individual NPs varies from one NP to another, it is highly desirable to study the very same individual NPs in different matrices. This was accomplished by immobilizing NPs in a liquid cell sample holder or in microfluidic devices. The samples have been investigated by space-resolved wide-field fluorescence microscopy and energy- and time-resolved confocal scanning fluorescence microscopy with respect to fluorescence intensities, emission energies, blinking behavior, and fluorescence decay dynamics of individual NPs. During the measurements the NPs were exposed to air, to liquid ethylene glycols H(OCH2CH2)_nOH (also called EG_n) with different chain lengths (1 ≤ n ≤ 7), to liquid 2-methylpentane-2,3-diol, or to solid polyethylene oxide. It was found that EG_(6-7) (also known as PEG 300) is very well suited as a liquid matrix or solvent for experiments that correlate chemical and physical modifications of the surface and of the immediate environment of individual NPs to their fluorescence properties since it leads to intense and stable fluorescence emission of the NPs.
机译:单胶体半导体纳米颗粒(NPS)的光学性质受到NPS的直接环境的显着影响。这里,研究了不同液体和固体二醇基族对基于CDSE的NPS的影响。由于个体NP的荧光从一个NP变化到另一个NP,因此非常希望在不同的基质中研究相同的个体NP。这是通过将NPS固定在液体细胞样品夹持器或微流体装置中来实现的。已经通过空间分辨的宽场荧光显微镜和能量和时间分离的共聚焦扫描荧光显微镜研究了样品,相对于荧光强度,发射能量,眨眼行为和个体NP的荧光衰减动态。在测量期间,将NPS暴露于空气中,液体乙二醇H(OCH2CH2)_NOH(也称为EG_N),不同的链长(1≤n≤7),与液体2-甲基戊烷-2,3-二醇或固体聚环氧乙烷。发现EG_(6-7)(也称为PEG 300)非常适合作为液体基质或溶剂,用于将表面的化学和物理修饰与个体NPS的直接环境相关到它们的荧光性质的实验由于它导致NPS的强烈和稳定的荧光发射。

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