[凝胶渗透色谱法与光散射法测定聚合物摩尔质量的实验教学改革]。

Cong-de Qiao, Wen-Ke Yang, Zhong-Wei Li, Qin-Ze Liu, Jin-Shui Yao
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引用次数: 0

摘要

凝胶渗透色谱-光散射(GPC-LS)是测定聚合物摩尔质量最常用的方法之一。GPC-LS 因其高灵敏度、高准确度和高精确度而广泛应用于聚合物科学研究,并被许多工业应用所采用。使用 GPC-LS 测定聚合物摩尔质量是 "聚合物物理实验 "课程的重要实验内容。然而,目前的 GPC-LS 实验教学内容往往过于简单,缺乏深度。在此,对原有实验内容进行扩充,并重新设计了多组实验:(1) 以商用聚苯乙烯为实验样品,利用 GPC-LS 测定摩尔质量、摩尔质量分布、回转半径等分子结构参数;(2) 以分子结构参数相似的两种聚丙烯腈为实验样品,利用差分质量分布曲线探究样品摩尔质量分布的细微差别;(3) 通过比较一系列具有不同摩尔质量的聚乙二醇的色谱图,研究摩尔质量对色谱峰的影响;以及 (4) 对于三种不同的聚合物(聚丙烯腈、聚甲基丙烯酸甲酯和聚β-环糊精),使用构象图(即...................................e.,回转半径与摩尔质量)来分析聚合物链的构象。此外,还对实验教学方法进行了改革,变被动学习为主动学习,从而提高了学生的自主学习能力。这一实验教学改革将有助于学生更全面地了解 GPC-LS 的原理和应用,激发学生的学习热情,提高实验课程的教学质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Experimental teaching reform of polymer molar mass determination using gel permeation chromatography coupled with light scattering].

Gel permeation chromatography coupled with light scattering (GPC-LS) is among the most common methods for determining the molar masses of polymers. GPC-LS is widely used in polymer science research and has been adopted for many industrial applications owing to its high sensitivity, accuracy, and precision. The determination of polymer molar masses using GPC-LS is an important experimental component of the "Polymer Physics Experiments" course. However, the present GPC-LS experimental teaching content tends to be overly simplistic and lacking in depth. Herein, the original experimental content is expanded and multiple sets of experiments are redesigned: (1) Using commercial polystyrene as an experimental sample, the molar mass, molar mass distribution, radius of gyration, and other molecular structure parameters are determined using GPC-LS; (2) Using two polyacrylonitriles with similar molecular structure parameters, subtle differences in the molar mass distributions of the samples are explored using differential mass distribution curves; (3) By comparing the chromatograms of a series of polyethylene glycols with different molar masses, the effect of molar mass on chromatographic peaks is investigated; and (4) For three different polymers (polyacrylonitrile, poly(methyl methacrylate), and poly(β-cyclodextrin)), the polymer chain conformations are analyzed using conformation plots (i.e., radius of gyration vs. molar mass). In addition, the experimental teaching method is modified to convert passive learning into active learning, thereby improving the students' self-directed learning ability. This experimental teaching reform will help students obtain a more comprehensive understanding of GPC-LS principles and applications, stimulate their enthusiasm for learning, and improve the teaching quality of the experimental course.

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