用连续波z扫描技术研究金纳米颗粒在可见光范围内的光热效率

G. Boudebs, Julien-Bilal Zinoune, C. Cassagne, M. Loumaigne, M. Chis, M. H. Werts
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引用次数: 0

摘要

光热效应可用于各种应用,如癌症治疗、生物显微镜……等离子体纳米粒子(NPs)的光散射可以足够强,可以在暗场显微镜下进行单粒子观察。光散射和光吸收的相对贡献对于NPs的表征及其特定应用的选择和优化至关重要。采用连续波单束z扫描技术测定了不同尺寸的球形金纳米粒子(5、40、60、80 nm)的吸收和散射效率。实验测试在蓝、绿、红三种不同波长下进行。量子产率是由热透镜效应决定的。详细介绍了高斯顶帽光束相对高吸收过程的测量方法特点。通过将得到的散射数据与Mie理论给出的散射值进行比较,证实了本文方法的有效性。实验误差之间的一致性很好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photothermal Efficiency of Gold Nanoparticles Using CW Z-Scan Technique in the Visible Range
The photothermal effect may be used in a variety of applications such as cancer treatment, biological microscopy… Light scattering from plasmonic nanoparticles (NPs) can be sufficiently strong to enable single-particle observations in dark-field microscopy. The relative contributions of light scattering and light absorption are of paramount importance in the characterization of NPs and their selection and optimization for a specific application. CW single beam Z-scan technique is applied to determine the absorption and scattering efficiencies on different size of spherical gold nanoparticles (5, 40, 60, 80 nm). Experimental tests are carried out at three different wavelengths at blue, green and red wavelengths. The quantum yields are determined through Thermal Lens (TL) effect. Details of the measurement method characteristics are given for relatively high absorption procedure using Gaussian top-hat beams. The validity of our approach is confirmed by comparing the obtained scattering data with that of the theoretical values given by the Mie theory. Very good agreement is found within the experimental errors.
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