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Fractionation and characterization of nano- and microparticles in liquid media

机译:液体介质中纳米和微粒的分离和表征

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摘要

Submicron and micron particles present in liquid environmental, biological, and technological samples differ in their dimensions, shape, mass, chemical composition, and charge. Their properties cannot be reliably studied unless the particles are fractionated. Synthetic particles applied as components of analytical systems may also need preliminary fractionation and investigation. The review is focused on the methods for fractionation and characterization of nanoparticles and microparticles in liquid media, the most representative examples of their application, and the trends in developing novel approaches to the separation and investigation of particles. Among the separation techniques, the main attention is devoted to membrane filtration, field-flow fractionation, chromatographic, and capillary electrokinetic methods. Microfluidic systems employing the above-mentioned and other separation principles and providing a basis for the fabrication of lab-on-chip devices are also examined. Laser light scattering methods and other physical techniques for the characterization of particles are considered. Special attention is given to “hyphenated” techniques which enable the separation and characterization of particles to be performed in online modes.
机译:液体环境,生物学和技术样品中存在的亚微米和微米颗粒的尺寸,形状,质量,化学组成和电荷不同。除非将颗粒分级,否则无法可靠地研究其性能。用作分析系统组成部分的合成颗粒可能还需要进行初步分离和研究。审查的重点是在液体介质中对纳米颗粒和微粒进行分级和表征的方法,其应用中最具代表性的实例,以及开发用于分离和研究颗粒的新颖方法的趋势。在分离技术中,主要注意力集中在膜过滤,场流分离,色谱和毛细管电动方法上。还研究了采用上述和其他分离原理并为芯片实验室设备的制造提供基础的微流体系统。考虑了用于颗粒表征的激光散射方法和其他物理技术。特别注意“连字符”技术,该技术可以在线模式下进行颗粒的分离和表征。

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