论文标题

关于嵌入生物组织幻象中的Au纳米颗粒的定量光学特性

On the quantitative optical properties of Au nanoparticles embedded in biological tissue phantoms

论文作者

Araujo, J. C. R., Monte, A. F. G., Serrano, R. L., Iwamoto, W., Antunes, A., Brener, O., Foschini, M.

论文摘要

我们系统地研究并量化了黄金(AU)金属纳米颗粒(NPS)光谱在引入生物组织幻象环境时如何变化,其中AuNP可以在其中凝聚。关于幻象环境内AuNPS光谱和等离子共振波长如何变化的定量知识可以提供许多体外和体内等离子NPS介导的应用。由于金属NP的等离激子特性取决于它们的大小,形态,浓度和局部环境,因此调整入射光子波长可能会增加AuNP的等离激元性能,在该特性上,等离子光热治疗和光子基因电路等应用是基于的。定量分析光吸收和散射数据,我们能够观察到谐振峰位置和宽度的变化,这与壳聚糖幻影在壳聚糖幻影中的分布有关,这是粒子大小和浓度的函数。

We systematically investigated and quantified how gold (Au) metal nanoparticles (NPs) optical spectra change upon introduction into biological tissue phantoms environment, in which the AuNPs can agglomerate. Quantitative knowledge of how the AuNPs spectra and plasmon resonance wavelength change inside a phantom environment can provide many in-vitro and in-vivo plasmonic NPs-mediated applications. Because the plasmonic properties of metal NPs are dependent on their size, morphology, concentration and local environment, tuning the incident photon wavelength may increase the AuNPs plasmonic properties, on which applications such as plasmonic photothermal therapy and photonic gene circuits are based. Quantitatively analyzing optical absorption and scattering data, we were able to observe changes in the resonance peak positions and breadths, which are related to the distribution of the spherical AuNPs within the chitosan phantoms as a function of the particles size and concentration.

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