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利用大气压光阱中激光诱导等离子体发射光谱法对多组分纳米矩阵进行亚飞克微克级元素的同时检测。

Subfemtogram Simultaneous Elemental Detection in Multicomponent Nanomatrices Using Laser-Induced Plasma Emission Spectroscopy within Atmospheric Pressure Optical Traps.

机构信息

UMALASERLAB, Departamento de Química Analítica , Universidad de Málaga , C/Jiménez Fraud 4 , Malaga 29010 , Spain.

出版信息

Anal Chem. 2019 Jun 4;91(11):7444-7449. doi: 10.1021/acs.analchem.9b01579. Epub 2019 May 16.

Abstract

Simultaneous detection of multiple constituents in the characterization of state-of-the-art nanomaterials is an elusive topic to a majority of the analytical techniques covering the field of nanotechnology. Optical catapulting (OC) and optical trapping (OT) have recently been combined with laser-induced breakdown spectroscopy (LIBS) to provide single-nanoparticle resolution and attogram detection power. In the present work, the multielemental capabilities of this approach are demonstrated by subjecting two different types of nanometric ferrite particles to LIBS analysis. Up to three metallic elements in attogram quantities are consistently detected within single laser events. Individual excitation efficiency for each species is quantified from particle spectra showing an exponential correlation between photon production and the energy of the upper level of the monitored atomic line. Moreover, a new sampling strategy based in skimmer-like 3D printed cones that allows for thin dry nanoparticle aerosols to be formed via optical catapulting is introduced. Enhanced sampling resulted in an increase of the sampling throughput by facilitating stable atmospheric-pressure optical trapping of individual particles and spectroscopic chemical characterization within a short timeframe.

摘要

同时检测多种成分的特点,最先进的纳米材料是一个难以捉摸的话题,大多数分析技术涵盖了纳米技术领域。光学弹射(OC)和光阱(OT)已被结合激光诱导击穿光谱(LIBS)提供单纳米粒子分辨率和阿特数量检测能力。在目前的工作中,通过对两种不同类型的纳米铁氧体颗粒进行 LIBS 分析,证明了该方法的多元素检测能力。在单个激光事件中,以阿特数量一致地检测到多达三种金属元素。从显示出光子产生与监测原子线的上能级能量之间呈指数相关关系的粒子光谱中,量化了每个物种的个体激发效率。此外,还引入了一种基于类似文丘里管的 3D 打印锥体的新采样策略,该策略允许通过光学弹射形成薄的干燥纳米颗粒气溶胶。增强的采样通过促进单个颗粒的稳定常压光阱和在短时间内进行光谱化学表征,增加了采样通量。

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