共聚物
聚合物
单体
化学
刚度(电磁)
水解
动态光散射
高分子化学
大小排阻色谱法
质子化
溶剂
多角度光散射
材料科学
化学物理
散射
组合化学
计算化学
光散射
支化(高分子化学)
静态光散射
溶剂效应
有机化学
作者
Michael‐Phillip Smith,Susanne Boye,B. Klumperman,Albena Lederer
出处
期刊:ACS Polymers Au
[American Chemical Society]
日期:2026-02-03
卷期号:6 (2): 599-609
被引量:1
标识
DOI:10.1021/acspolymersau.5c00195
摘要
High Resolution Image Download MS PowerPoint Slide Poly(styrene- co -maleic anhydride) (SMAnh) and its hydrolyzed derivative, poly(styrene- co -maleic acid) (SMA), have been widely utilized in applications such as adhesives, drug delivery systems, and hydrogels. Despite the copolymer’s versatility, there is a growing need for bioderived alternatives that retain comparable performance while reducing environmental impact. Here, we investigate how polymer backbone rigidity governs the thermal and solution properties of two bioderived analogues of SMAnh: poly(styrene- co -itaconic anhydride) (SIAnh) and poly(indene- co -maleic anhydride) (IMAnh). Using asymmetrical flow field flow fractionation with light scattering detection (AF4-LS), we present a comprehensive comparison of how different media and protonation states affect the conformation and flexibility of the corresponding hydrolyzed copolymers SMA, poly(styrene- co -itaconic acid) (SIA), and poly(indene- co -maleic acid) (IMA), thereby revealing how their chemical nature dictates their structural response in solution. Data from AF4-LS, size exclusion chromatography with light scattering (SEC-LS), and thermal analysis highlight how subtle changes in monomer substitution (itaconic, indene vs styrene/maleic) alter backbone rigidity. It was determined that SIA is the most flexible copolymer derivative, SMA exhibits intermediate rigidity, and IMA is the most rigid. Each copolymer substitution pattern results in a distinct copolymer coil conformation in solution and ionization behavior. Collectively, these data indicate that the bioderived SIAnh and IMAnh are viable alternatives to SMAnh, but with distinct rigidity-dependent properties, which may result in slightly different performance in applications.
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