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利用超分辨率光激活定位显微镜对金属纳米粒子上的表面增强荧光进行定位。

Mapping of surface-enhanced fluorescence on metal nanoparticles using super-resolution photoactivation localization microscopy.

机构信息

Katholieke Universiteit Leuven, Celestijnenlaan 200F 3001 Heverlee, Belgium.

出版信息

Chemphyschem. 2012 Mar;13(4):973-81. doi: 10.1002/cphc.201100743. Epub 2011 Dec 19.

Abstract

Photoactivation localization microscopy (PALM) was applied to study surface-enhanced fluorescence (SEF) on metal nanostructures (SEF-PALM). The detection of fluorescence from individual single molecules can be used to image the point-spread-function and spatial distribution of the fluorescence emitted in the vicinity of a metal surface. Due to the strong scattering effect, the angular distribution of the fluorescence is altered by metals, resulting in a spatial shift of fluorescence spots with respect to the metal nanostructures, and has to be taken into account in the analysis. SEF-PALM can be used to discriminate effects of labelling density when estimating the enhancement factor in SEF. Furthermore, nanostructures with sizes below the diffraction limit can be resolved using this technique. SEF-PALM is established as a powerful tool to study plasmon-mediated phenomena on metal nanostructures.

摘要

光激活定位显微镜(PALM)被应用于研究金属纳米结构上的表面增强荧光(SEF)(SEF-PALM)。通过检测单个单分子的荧光,可以对靠近金属表面发出的荧光的点扩散函数和空间分布进行成像。由于强烈的散射效应,金属会改变荧光的角分布,导致荧光斑点相对于金属纳米结构发生空间位移,在分析中必须考虑到这一点。SEF-PALM 可用于在估计 SEF 中的增强因子时区分标记密度的影响。此外,使用该技术可以分辨小于衍射极限的纳米结构。SEF-PALM 已被确立为研究金属纳米结构上的等离子体介导现象的有力工具。

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