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不对称流场流分离中的空间转移研究及其在高能材料表征中的应用。

Study on steric transition in asymmetrical flow field-flow fractionation and application to characterization of high-energy material.

机构信息

Department of Chemistry, Hannam University, Daejeon 305-811, South Korea.

出版信息

J Chromatogr A. 2013 Aug 23;1304:211-9. doi: 10.1016/j.chroma.2013.06.051. Epub 2013 Jun 28.

Abstract

In field-flow fractionation (FFF), there is the 'steric transition' phenomenon where the sample elution mode changes from the normal to steric/hyperlayer mode. Accurate analysis by FFF requires understanding of the steric transition phenomenon, particularly when the sample has a broad size distribution, for which the effect by combination of different modes may become complicated to interpret. In this study, the steric transition phenomenon in asymmetrical flow FFF (AF4) was studied using polystyrene (PS) latex beads. The retention ratio (R) gradually decreases as the particle size increases (normal mode) and reaches a minimum (Ri) at diameter around 0.5μm, after which R increases with increasing diameter (steric/hyperlayer mode). It was found that the size-based selectivity (Sd) tends to increase as the channel thickness (w) increases. The retention behavior of cyclo-1,3,5-trimethylene-2,4,6-trinitramine (commonly called 'research department explosive' (RDX)) particles in AF4 was investigated by varying experimental parameters including w and flow rates. AF4 showed a good reproducibility in size determination of RDX particles with the relative standard deviation of 4.1%. The reliability of separation obtained by AF4 was evaluated by transmission electron microscopy (TEM).

摘要

在场流分离(FFF)中,存在“空间位阻转变”现象,即样品洗脱模式从正常模式转变为空间位阻/超层模式。FFF 的准确分析需要了解空间位阻转变现象,特别是当样品具有较宽的粒径分布时,不同模式的组合可能会使解释变得复杂。在这项研究中,使用聚苯乙烯(PS)乳胶球研究了不对称流场流分离(AF4)中的空间位阻转变现象。保留率(R)随着粒径的增加而逐渐降低(正常模式),在直径约为 0.5μm 时达到最小值(Ri),之后随着粒径的增加而增加(空间位阻/超层模式)。研究发现,基于尺寸的选择性(Sd)随着通道厚度(w)的增加而增加。通过改变实验参数,包括 w 和流速,研究了 AF4 中环-1,3,5-三亚甲基-2,4,6-三硝胺(通常称为“研究部门炸药”(RDX))颗粒的保留行为。AF4 对 RDX 颗粒的尺寸测定具有良好的重现性,相对标准偏差为 4.1%。通过透射电子显微镜(TEM)评估了 AF4 获得的分离可靠性。

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