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Photothermal analysis of individual nanoparticulate samples using micromechanical resonators

机译:使用微机械共振器对单个纳米颗粒样品进行光热分析

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摘要

The ability to detect and analyze single sample entities such as single nanoparticles, viruses, spores, or molecules is of fundamental interest. This can provide insight into the individual specific properties which may differ from the statistical sample average. Here we introduce resonant photothermal spectroscopy, a novel method that enables the analysis of individual nanoparticulate samples. Absorption of light by an individual sample placed on a microstring resonator results in local heating of the string, which is reflected in its resonance frequency. The working principle of the spectrometer is demonstrated by analyzing the optical absorption of different micro- and nanoparticles on a microstring. We present the measurement of a simple absorption spectrum of multiple polystyrene microparticles illuminated with an unfocused LED light source. Using a diode laser, single 170 nm polystyrene nanoparticles are detected. With the current setup, nanoparticulate samples with a mass of ~40 ag are detectable. By using nanostrings, visible and infrared photothermal spectroscopy in the subattogram mass regime is possible and single molecule detection is within reach.
机译:检测和分析单个样品实体(例如单个纳米颗粒,病毒,孢子或分子)的能力是最重要的。这可以洞悉可能与统计样本平均值不同的各个特定属性。在这里,我们介绍了共振光热光谱法,这是一种能够分析单个纳米颗粒样品的新颖方法。放置在微弦谐振器上的单个样品对光的吸收会导致弦的局部加热,并以其共振频率反映出来。通过分析微细绳上不同微粒和纳米颗粒的光吸收,证明了光谱仪的工作原理。我们提出了用未聚焦的LED光源照明的多个聚苯乙烯微粒的简单吸收光谱的测量。使用二极管激光器,可以检测到单个170 nm聚苯乙烯纳米颗粒。在当前设置下,可检测到质量约为40 g的纳米颗粒样品。通过使用纳米线,可以在亚次张质量范围内实现可见光和红外光热光谱,并且单分子检测也可以实现。

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