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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Investigation of steric transition with field programming in frit inlet asymmetrical flow field-flow fractionation
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Investigation of steric transition with field programming in frit inlet asymmetrical flow field-flow fractionation

机译:在玻璃料入口不对称流场 - 流动分馏中具有现场编程的空间过渡研究

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摘要

Steric transition in flow field-flow fractionation (FIFFF) was investigated under field programming by varying the channel thickness of a frit inlet asymmetrical FIFFF (FI-AF4). Steric transition is a typical inversion in sample elution mode from the increasing order of diameter (normal mode) to the opposite order (steric mode). Owing to the co-elution of two different-sized particles in the steric transition region where particles elute by the combination of the two elution modes, a loss of information in determining the accurate size of sample components in field-flow fractionation occurs. In this study, the effect of field programming on the steric transition in FI-AF4 was examined with the increase in channel thickness in order to increase the diffusional contribution of particle retention with the simultaneous reduction of steric contribution. This study demonstrated that the steric inversion diameter can be increased to 1 mu m by programming the crossflow rate and by increasing the channel thickness to 350 and 490 mu m. The present study also investigated the effects of outflow rate and initial field strength on the particle separation in field-programmed FI-AF4. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过改变玻璃料入口不对称FIFFF(FI-AF4)的通道厚度,在现场编程中研究了流场 - 流分馏(FIFFF)的空间过渡。空间过渡是从直径(正常模式)的增加顺序(空间模式)的样品洗脱模式中的典型反转。由于两个不同尺寸的颗粒在空间过渡区域中的共同洗脱,其中颗粒通过两种洗脱模式的组合洗脱,在确定现场流分馏中的样品组分的精确尺寸时的信息丧失。在这项研究中,通过增加通道厚度的增加,检查现场编程对FI-AF4中的空间过渡的影响,以提高颗粒保留的扩散贡献,同时降低空间贡献。本研究证明,通过编程横流速率并将通道厚度增加至350和490μm,可以增加空间反转直径至1μm。本研究还研究了流出率和初始强度对现场编程的FI-AF4中颗粒分离的影响。 (c)2018年elestvier b.v.保留所有权利。

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