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首页> 外文期刊>Analytica chimica acta >Optical trapping-Raman spectroscopy (OT-RS) with embedded microscopy imaging for concurrent characterization and monitoring of physical and chemical properties of single particles
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Optical trapping-Raman spectroscopy (OT-RS) with embedded microscopy imaging for concurrent characterization and monitoring of physical and chemical properties of single particles

机译:具有嵌入式显微镜成像的光学俘获 - 拉曼光谱(OT-RS),用于同时表征和监测单颗粒的物理和化学性质

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The study of physical and chemical properties of a microscopic object, such as a single particle, is made possible using optical trapping (OT) technology combined with other measuring techniques. Here we show a universal optical trap combined with Raman spectroscopy (RS) and microscopy imaging for single-particle studies. The universal optical trap is constructed using two counter-propagating hollow beams and is able to stably levitate single particles of a wide range of properties, such as transparent or absorbing materials, organic (polymers, bioaerosols, etc.) or inorganic constituents (carbon, silica, glass, etc.), and spherical or irregularly shaped morphologies. Both physical and chemical properties and their temporal evolution of the trapped particle can be characterized simultaneously using the integrated OT-RS and imaging system. We created three sample cases to demonstrate the analytical merits of the system: (I) a single particle with no change, (II) partially degraded over the measuring period, and (III) one part from the fragmentized single particle. The particles' chemical compositions, crystalline states, etc. are inferred from their Raman spectra, while their physical properties (sizes, shapes, morphologies, etc.) are revealed by images. This integrated OT-RS system provides a new approach to concurrently characterize and monitor physical and chemical properties of single micrometer-sized objects optically trapped in air. (C) 2018 Elsevier B.V. All rights reserved.
机译:使用光学捕获(OT)技术与其他测量技术相结合,使得诸如单个粒子的微观物体的物理和化学性质的研究。在这里,我们展示了一种通用光学陷阱,结合拉曼光谱(RS)和用于单粒子研究的显微镜成像。通用光学阱是使用两个反向传播的中空梁构建的,并且能够稳定地浮出各种性质的单个颗粒,例如透明或吸收材料,有机(聚合物,生物溶胶等)或无机成分(碳,二氧化硅,玻璃等),球形或不规则形态。可以使用集成OT-RS和成像系统同时表征物理和化学性质及其对被捕获的颗粒的时间演化。我们创建了三种样本案例,以证明系统的分析优点:(i)单颗粒,没有变化,(ii)在测量期内部分降解,(iii)来自碎片化的单颗粒的一部分。从其拉曼光谱推断出颗粒的化学组合物,结晶状态等,而其物理性质(尺寸,形状,形态等)被图像揭示。这种集成的OT-RS系统提供了一种新的方法,可以同时表征和监测光学困住的单个微米尺寸对象的物理和化学性质。 (c)2018 Elsevier B.v.保留所有权利。

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