Wang Xiu, Limpouchová Zuzana, Procházka Karel, Raya Rahul Kumar, Min Yonggang
School of Materials and Energy, Guangdong University of Technology, Guangzhou 510006, China.
Department of Physical and Macromolecular Chemistry, Faculty of Science, Charles University, Hlavova 8, 128 43 Prague , Czech Republic.
Polymers (Basel). 2022 Aug 4;14(15):3182. doi: 10.3390/polym14153182.
Associating copolymers self-assemble during their passage through a liquid chromatography (LC) column, and the elution differs from that of common non-associating polymers. This computational study aims at elucidating the mechanism of their unique and intricate chromatographic behavior. We focused on amphiphilic diblock copolymers in selective solvents, performed the Monte Carlo (MC) simulations of their partitioning between a bulk solvent (mobile phase) and a cylindrical pore (stationary phase), and investigated the concentration dependences of the partition coefficient and of other functions describing the phase behavior. The observed abruptly changing concentration dependences of the effective partition coefficient demonstrate the significant impact of the association of copolymers with their partitioning between the two phases. The performed simulations reveal the intricate interplay of the entropy-driven and the enthalpy-driven processes, elucidate at the molecular level how the self-assembly affects the chromatographic behavior, and provide useful hints for the analysis of experimental elution curves of associating polymers.
缔合共聚物在通过液相色谱(LC)柱的过程中会发生自组装,其洗脱情况与普通非缔合聚合物不同。这项计算研究旨在阐明其独特而复杂的色谱行为机制。我们聚焦于在选择性溶剂中的两亲性嵌段共聚物,对其在本体溶剂(流动相)和圆柱形孔(固定相)之间的分配进行了蒙特卡罗(MC)模拟,并研究了分配系数以及描述相行为的其他函数的浓度依赖性。观察到的有效分配系数随浓度的突然变化表明共聚物的缔合对其在两相之间的分配有重大影响。所进行的模拟揭示了熵驱动过程和焓驱动过程之间复杂的相互作用,在分子水平上阐明了自组装如何影响色谱行为,并为分析缔合聚合物的实验洗脱曲线提供了有用的线索。