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Local heating effect study by photothermal imaging

机译:通过光热成像进行本地加热效果研究

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Aggregated gold nanoparticles are widely used in surface-enhanced Raman scattering (SERS), however, gold nanoparticles are excellent light absorbers and its local heating effect should be concerned. The optical properties of plasmonic nanoparticles are strongly dependent on interactions with other nanoparticles, which complicates analysis for systems larger than a few particles. In this work we examine heat dissipation in aggregated nanoparticles and its influence on surface-enhanced Raman scattering (SERS) through correlated photothermal heterodyne imaging (PHI). For dimers the per particle absorption cross sections show evidence of interparticle coupling; however, the effects are much smaller than those for the field enhancements that are important for SERS. For larger aggregates the total absorption was observed to be simply proportional to aggregate volume. This observation allows us to model light absorption and heating in the aggregates by assuming that the particles act as independent heating sources. To push the detection limits in PHI of our system, we use the home-built DC-10MHz low noise large area photodiode amplifier and obtain 7 nV/Hz~(1/2) noise level which closed to the limitation of SR844 Lock-in amplifier itself. Our work aims to use local heating effects from molecules to improve the spatial resolution and chemical sensitivity of label-free microscopy.
机译:聚集的金纳米颗粒广泛用于表面增强的拉曼散射(SERs),然而,金纳米颗粒是优异的光吸收剂,并且其局部加热效果应涉及。等离子体纳米颗粒的光学性质强烈取决于与其他纳米颗粒的相互作用,其使系统分析大于几种颗粒。在这项工作中,我们通过相关的光热杂差成像(PHI)来检查聚集纳米颗粒中的散热及其对表面增强拉曼散射(SERS)的影响。对于二聚体,每个粒子吸收横截面显示颗粒偶联的证据;但是,这些效果远小于对SERS很重要的现场增强的影响。对于较大的聚集体,观察到总吸收与聚集体积简单成比例。该观察允许我们通过假设颗粒作为独立的加热源来模拟聚集体中的光吸收和加热。为了推动我们系统的PHI中的检测限制,我们使用自制的DC-10MHz低噪声大面积光电二极管放大器,并获得7个NV / HZ〜(1/2)噪声水平,关闭SR844锁定的限制放大器本身。我们的作品旨在利用分子的局部供暖效果来提高无标记显微镜的空间分辨率和化学敏感性。

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