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There’s plenty of gloom at the bottom: the many challenges of accurate quantitation in size-based oligomeric separations

机译:底部有很多阴郁:基于大小的寡聚分离中准确定量的许多挑战

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摘要

There is a variety of small-molecule species (e.g., tackifiers, plasticizers, oligosaccharides) the size-based characterization of which is of considerable scientific and industrial importance. Likewise, quantitation of the amount of oligomers in a polymer sample is crucial for the import and export of substances into the USA and European Union (EU). While the characterization of ultra-high molar mass macromolecules by size-based separation techniques is generally considered a challenge, it is this author’s contention that a greater challenge is encountered when trying to perform, for quantitation purposes, separations in and of the oligomeric region. The latter thesis is expounded herein, by detailing the various obstacles encountered en route to accurate, quantitative oligomeric separations by entropically dominated techniques such as size-exclusion chromatography, hydrodynamic chromatography, and asymmetric flow field-flow fractionation, as well as by methods which are, principally, enthalpically driven such as liquid adsorption and temperature gradient interaction chromatography. These obstacles include, among others, the diminished sensitivity of static light scattering (SLS) detection at low molar masses, the non-constancy of the response of SLS and of commonly employed concentration-sensitive detectors across the oligomeric region, and the loss of oligomers through the accumulation wall membrane in asymmetric flow field-flow fractionation. The battle is not lost, however, because, with some care and given a sufficient supply of sample, the quantitation of both individual oligomeric species and of the total oligomeric region is often possible.
机译:存在多种小分子物质(例如增粘剂,增塑剂,寡糖),其基于大小的表征具有相当大的科学和工业重要性。同样,对聚合物样品中低聚物的数量进行定量分析对于将物质进口和出口到美国和欧盟也至关重要。尽管通常认为通过基于尺寸的分离技术表征超高摩尔质量的大分子是一个挑战,但作者的观点是,在尝试进行定量分析时,要在寡聚体区域和低聚区域进行分离时会遇到更大的挑战。本文将通过熵控制技术(如尺寸排阻色谱法,流体动力学色谱法和不对称流场-流分馏)以及通过采用,主要是焓驱动的,例如液体吸附和温度梯度相互作用色谱。这些障碍包括:低摩尔质量的静态光散射(SLS)检测灵敏度降低,SLS响应的不恒定以及整个低聚物区域的浓度敏感检测器的不稳定性以及低聚物的损失通过不对称流场中的聚积壁膜流分馏。然而,这场战斗并没有输掉,因为经过谨慎处理并有足够的样品供应,通常可能对单个寡聚物种和整个寡聚区域进行定量。

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