Crystalline Transformation of Glycolide Induced by Organic Solvents and Relative Humidity

IF 1.5 4区 材料科学 Q3 Chemistry
Liang Wen, Tian Yin, Ya-Qi Xue, Yi-Zhen Zhao, Xiao Liu, Jian-Gong Ma
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引用次数: 0

Abstract

As a biodegradable and biocompatible polymer material, polyglycolic acid is attracting more and more attention in the field of polymeric and biomedical materials. Consequently, the study of the transformation between different crystal forms of glycolide, the monomer of polyglycolic acid, is of great importance, because crystal forms of glycolide determine the stabilities and properties of polyglycolic acid products polymerized under different conditions in industry. Herein, this article reports the synthesis and crystallization of α- and β-glycolide controlled by the type of organic solvents and/or temperatures, during which an intermediate crystal form of β′-glycolide is newly observed. The transformation between α-, β-, and β′-glycolide is investigated in detail, and the stabilities of different crystal forms are illustrated via the controlled experiments under different relative humidity (RH) as well as the theoretical calculations, which should provide fundamental concepts and guidance for the industrial production of glycolide and optimization of polyglycolic acid products.

Abstract Image

有机溶剂和相对湿度诱导的乙二酸结晶转变
聚羟基乙酸作为一种可生物降解且具有生物相容性的聚合物材料,在聚合物和生物医学材料领域受到越来越多的关注。因此,研究聚羟基乙酸的单体甘内酯不同晶型之间的转化具有重要意义,因为甘内酯的晶型决定了工业中不同条件下聚合的聚羟基乙酸产品的稳定性和性能。本文报告了受有机溶剂类型和/或温度控制的α-和β-缩水甘油醚的合成和结晶,在此过程中新观察到了β′-缩水甘油醚的中间晶体形式。详细研究了 α-、β- 和 β′-甘醇醚之间的转变,并通过不同相对湿度(RH)下的对照实验和理论计算说明了不同晶型的稳定性,为工业化生产甘醇醚和优化聚乙二醇酸产品提供了基本概念和指导。
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来源期刊
CiteScore
2.50
自引率
6.70%
发文量
121
审稿时长
1.9 months
期刊介绍: The journal Crystal Research and Technology is a pure online Journal (since 2012). Crystal Research and Technology is an international journal examining all aspects of research within experimental, industrial, and theoretical crystallography. The journal covers the relevant aspects of -crystal growth techniques and phenomena (including bulk growth, thin films) -modern crystalline materials (e.g. smart materials, nanocrystals, quasicrystals, liquid crystals) -industrial crystallisation -application of crystals in materials science, electronics, data storage, and optics -experimental, simulation and theoretical studies of the structural properties of crystals -crystallographic computing
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