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Enthalpic Partition-Assisted Size Exclusion Chromatography: 1. Principle of Method

机译:焓分区辅助尺寸排阻色谱:1。方法原理

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A novel high performance liquid chromatographic (HPLC) method viz. "enthalpic partition assisted size exclusion Chromatography" deliberately combines entropic and enthalpic partition mechanisms. It enables separation of homopolymers according to their molar mass with increased selectivity, as well as discrimination of polymer species differing in their nature/composition. Enthalpic partition of macromolecules takes place between the mobile phase and the stationary "liquid" of a different chemical nature, which is immobilized within pores of an appropriate carrier (a bonded phase). The extent of enthalpic partition depends on the accessibility of bonded phase for macromolecules and on the difference of polymer solubility in the mobile phase and in the solvated bonded phase. The enthalpic partition in favor of column packing arises from better solubility of polymer solutes in the solvated stationary phase compared to the mobile phase. Macromolecules are "pushed" into the solvated stationary phase and their retention volumes (V_R) increase. In the area of high molar masses, the extent of enthalpic partition as rule raises with the increasing size of macromolecules. However, under properly chosen experimental conditions the enthalpic partition may rapidly diminish with the sample molar mass (M), likely due to the solubility changes and/or due to partial exclusion of macromolecules from the pores. As result, the corresponding retention volumes sharply drop within a narrow range of M with the increasing size of macromolecules. This results in the log M vs. V_R dependences, which resemble in their form that for size exclusion Chromatography but are much more flat indicating highly selective separations of homopolymers according to their molar masses. In this way, enthalpic partition "assists" entropic partition (size exclusion). Polymer species, which do not undergo enthalpic partition, elute from the HPLC column in the conventional size exclusion mode and can be discriminated from the partitioning species. Enthalpic partition assisted size exclusion Chromatography can be utilized in separation and characterization of various homopolymers, and polymer blends.
机译:一种新的高性能液相色谱(HPLC)方法即“焓分区辅助排阻色谱法”故意结合熵和焓分区机制。它根据其与增加的选择性,以及在它们的性质/组成不同的聚合物种类的判别摩尔质量使得均聚物的分离。大分子的焓分区占用流动相和不同的化学性质,其被固定在适当的载体(一键合相)的孔隙内的静止“液体”之间发生。焓分区的程度取决于键合相的可访问性大分子和聚合物溶解度在流动相中的差,并在溶剂化的粘结相。有利于柱填充的焓分区源于相比流动相在所述溶剂化的固定相聚合物溶质更好的溶解度。大分子“推”入溶剂化固定相和他们的保留体积(V_R)增加。在高摩尔质量的区域中,焓分区作为规则的程度与大分子的大小增加加注。然而,适当选择的实验条件下的焓分区可以迅速地与样品摩尔质量(M)减少,这可能是由于溶解度的变化和/或由于从孔大分子的部分排除。作为结果,相应的保留体积急剧窄幅M的内滴与大分子的大小增加。此结果日志以M与V_R依赖性,这类似于在他们的形式,对于尺寸排阻色谱法但更平根据其摩尔质量指示的均聚物的高选择性的分离。通过这种方式,焓分区“帮助”熵分区(体积排阻)。聚合物物质,其不经历焓分区,洗脱从在传统的尺寸排阻模式的HPLC柱,并且可以从分隔物种来区别。焓分区辅助尺寸排阻色谱法可以在分离和各种均聚物的表征,和聚合物共混物一起使用。

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