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Advances in field-flow fractionation for the analysis of biomolecules: Instrument design and hyphenation

机译:场流分离技术在生物分子分析中的研究进展:仪器设计和连接

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Field-flow fractionation (FFF) separates analytes by use of an axial channel-flow and a cross-field. Its soft separation capability makes it an ideal tool for initial fractionation of complex mixtures, but large elution volumes and high flow rates have limited its applicability without significant user handling. Recent advances in instrumentation and miniaturization have successfully reduced channel size and elution speed, and thus the volume of each fraction, making it possible to conveniently couple FFF with orthogonal separation techniques for improved resolution. More detailed analysis can also be performed on the fractions generated by FFF by use of diverse analytical techniques, including MS, NMR, and even X-ray scattering. These developmental trends have given FFF more power in the analysis of different types of molecule, and will be the direction of choice for further advances in FFF technology.
机译:场流分级分离(FFF)通过使用轴向通道流和交叉场来分离分析物。它的软分离能力使其成为复杂混合物初始分馏的理想工具,但是洗脱体积大和流速高,限制了其适用性,而无需用户进行大量操作。仪器和小型化的最新进展已成功减小了通道尺寸和洗脱速度,从而减小了每个馏分的体积,从而可以方便地将FFF与正交分离技术结合使用,以提高分离度。还可以使用多种分析技术,包括MS,NMR甚至X射线散射,对FFF生成的馏分进行更详细的分析。这些发展趋势使FFF在分析不同类型的分子方面具有更大的能力,并将成为FFF技术进一步发展的选择方向。

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