首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Lab on a tip: atomic force microscopy - photothermal infrared spectroscopy of atmospherically relevant organic/inorganic aerosol particles in the nanometer to micrometer size range
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Lab on a tip: atomic force microscopy - photothermal infrared spectroscopy of atmospherically relevant organic/inorganic aerosol particles in the nanometer to micrometer size range

机译:尖端的实验室:原子力显微镜 - 纳米中的大气相关有机/无机气溶胶颗粒的光热红外光谱到千分尺尺寸范围

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摘要

New developments in nanoscale analytical techniques have paved the way for detailed spectroscopic and microscopic measurements of substrate-deposited aerosol particles on a single particle basis. Atomic force microscopy based photothermal infrared (AFM-PTIR) spectroscopy is a technique that combines the nanometer spatial resolution of AFM with the chemical analysis capabilities of vibrational IR spectroscopy. Herein we demonstrate the capability of AFM-PTIR to investigate single and multi-component systems comprised of inorganic salts and organic compounds relevant to the atmosphere. Chemical and microscopic characterization of individual particles as small as 50 nm in diameter is shown. Moreover, single particle spectro-microscopic characterization as a function of relative humidity using this technique is shown for the first time. These new measurements as a function of relative humidity allow for the simultaneous and independent acquisition of photothermal IR spectra, contact resonance frequency shifts, and water uptake growth factors, providing insight on changes in the composition, stiffness, and size of the particles, respectively. These results lay the foundation for more detailed AFM-PTIR studies of multicomponent aerosol particles under a range of environmental conditions.
机译:纳米级分析技术的新发展已经为单个颗粒的基材沉积的气溶胶颗粒进行详细的光谱和微观测量铺平了方法。基于原子力显微镜的光热红外(AFM-PTIR)光谱是一种与振动红外光谱的化学分析能力结合AFM的纳米空间分辨率的技术。在此,我们证明了AFM-PTIR研究了由与大气相关的无机盐和有机化合物组成的单组分和多组分系统的能力。示出了直径为50nm的单个颗粒的化学和显微镜表征。此外,首次示出了作为使用该技术的相对湿度的单粒子光谱 - 微观表征。这些新的测量作为相对湿度的函数允许同时和独立地获取光热频率IR光谱,接触共振频率偏移和水吸收生长因子,分别为颗粒的组成,刚度和大小的变化提供了洞察力。这些结果为在一系列环境条件下对多组分气溶胶颗粒的更详细的AFM-PTIR研究奠定了基础。

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