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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Use of fluorescence signals generated by elastic scattering under monochromatic incident light for determining the scattering efficiencies of various plasmonic nanoparticles
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Use of fluorescence signals generated by elastic scattering under monochromatic incident light for determining the scattering efficiencies of various plasmonic nanoparticles

机译:在单色入射光下通过弹性散射产生的荧光信号用于确定各种等离子体纳米颗粒的散射效率

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摘要

We present a route that estimates the scattering/absorption characteristics of plasmonic nanoparticles by using fluorescence and UV-visible spectroscopy. Because elastic scattering of nanoparticles caused by a monochromatic incident light is reflected in fluorescence emission spectra when recording at the excitation wavelength, the scattering intensities at the excitation wavelength during fluorescence emission scans are used to compare the scattering characteristics of various plasmonic nanoparticles under conditions where the extinction values of all of the nanoparticles are kept constant at this wavelength. For the two excitation wavelengths (519 and 560 nm) we investigated, the scattering intensities of spherical gold nanoparticles increase with increasing size (15, 33, 51, 73, and 103 nm in diameter). These results are correlated with the nanoparticles' scattering efficiencies (the ratios of scattering to the extinction cross-sections), which are theoretically calculated in the literature using Mie theory. Then, linear calibration equations at each wavelength are derived to estimate the scattering efficiencies of two Au nanorods, Au nanocages, and spherical Ag nanoparticles (15, 25, 37, and 62 nm). The values are very comparable with literature values. For various purposes such as biomedicine and optoelectronics, the present method could be beneficial to those who wish to easily compare and determine the scattering characteristics of various plasmonic nanoparticles at a certain wavelength by using commercially-available spectroscopic techniques.
机译:我们提出了一种通过使用荧光和紫外可见光谱来估计等离子体纳米颗粒的散射/吸收特性的途径。由于在激发波长下记录时,由单色入射光引起的纳米粒子的弹性散射会在荧光发射光谱中反映出来,因此在荧光发射扫描期间,在激发波长下,激发波长下的散射强度用于比较各种等离激元纳米粒子在以下条件下的散射特性在该波长下,所有纳米颗粒的消光值保持恒定。对于两个激发波长(519和560 nm),我们进行了研究,球形金纳米颗粒的散射强度随尺寸(直径15、33、51、73和103 nm)的增加而增加。这些结果与纳米颗粒的散射效率(散射与消光截面的比率)相关,后者在文献中使用米氏理论进行了理论计算。然后,导出每个波长的线性校准方程式,以估算两个Au纳米棒,Au纳米笼和球形Ag纳米颗粒(15、25、37和62 nm)的散射效率。该值与文献值非常可比。对于诸如生物医学和光电子学的各种目的,本方法对于希望通过使用商业上可用的光谱技术容易地比较和确定各种等离子体纳米颗粒在特定波长下的散射特性的人们是有益的。

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