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用于纳米颗粒无散射吸收光谱学的微泡谐振器。

Microbubble resonators for scattering-free absorption spectroscopy of nanoparticles.

出版信息

Opt Express. 2021 Sep 27;29(20):31130-31136. doi: 10.1364/OE.434868.

Abstract

We present a proof-of-concept experiment where the absorbance spectra of suspensions of plasmonic nanoparticles are accurately reconstructed through the photothermal conversion that they mediate in a microbubble resonator. This thermal detection produces spectra that are insensitive towards light scattering in the sample, as proved experimentally by comparing the spectra of acqueos gold nanorods suspensions in the presence or absence of milk powder. In addition, the microbubble system allows for the interrogation of small samples (below 40 nl) while using a low-intensity beam (around 20 µW) for their excitation. In perspective, this system could be implemented for the characterization of turbid biological fluids through their optical absorption, especially when considering that the microbubble resonator naturally interfaces to a microfluidic circuit and may easily fit within portable or on-chip devices.

摘要

我们提出了一个概念验证实验,其中通过等离子体纳米粒子悬浮液在微泡谐振器中介导的光热转换,可以准确地重建其吸收光谱。这种热检测产生的光谱对样品中的光散射不敏感,通过实验比较在存在或不存在奶粉的情况下水相金纳米棒悬浮液的光谱证明了这一点。此外,微泡系统允许对小样品(低于 40nl)进行询问,同时使用低强度光束(约 20µW)进行激发。展望未来,该系统可用于通过光学吸收对混浊生物流体进行特性分析,特别是当考虑到微泡谐振器自然地与微流控回路接口并且可以轻松地安装在便携式或片上设备中时。

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