Barszczewska-Rybarek Izabela M, Korytkowska-Wałach Anna, Kurcok Małgorzata, Chladek Grzegorz, Kasperski Jacek
Department of Physical Chemistry and Technology of Polymers, Silesian University of Technology, Gliwice, Poland.
Department of Organic Chemistry, Bioorganic Chemistry and Biotechnology, Silesian University of Technology, Gliwice, Poland.
Acta Bioeng Biomech. 2017;19(1):47-53.
This paper presents the study aimed at the development of crosslinked poly(methyl methacrylate)s (X-PMMA) of varied crosslink density and the investigation of the relationships between the polymer network structure and dynamic mechanical properties.
A series of model X-PMMA networks were crosslinked by the introduction of: 1, 2, 5, 10 and 20% of triethylene glycol dimethacrylate (TEGDMA). The copolymerizations led to various glass-rubber relaxation properties of the polymer networks, as revealed by dynamic-mechanical analysis (DMA). Glass temperature (Tg) and storage modulus above the Tg (Erubbery ) were a sensitive function of network architecture. DMA data were used for calculating the network parameter (Mc), crosslink density (q) and its alternative measure - the degree of crosslinking (DX).
The viscoelastic properties as well as structural parameters calculated from those showed correlation with the amount of the crosslinker. The increase in TEGDMA content resulted in the Tg, q and DX increases, whereas Mc decrease. The possible incomplete conversion of double bonds was detected in the DMA analysis, which was confirmed by the degree of conversion (DC), measured by FTIR spectroscopy. Additionally, some amount of sol fraction was found by 1H NMR experiments.
The structure-property relationships developed for the system presented in this work could be useful in tissue engineering, where X-PMMA is applied. The direct measure of storage modulus values before and above glass transition may serve as a simple and fast indicator of the X-PMMA crosslink density.
本文介绍了旨在开发具有不同交联密度的交联聚甲基丙烯酸甲酯(X-PMMA)以及研究聚合物网络结构与动态力学性能之间关系的研究。
通过引入1%、2%、5%、10%和20%的三乙二醇二甲基丙烯酸酯(TEGDMA)交联一系列X-PMMA模型网络。如动态力学分析(DMA)所示,共聚导致聚合物网络具有各种玻璃-橡胶松弛特性。玻璃化温度(Tg)和高于Tg的储能模量(Er’橡胶态)是网络结构的敏感函数。DMA数据用于计算网络参数(Mc)、交联密度(q)及其替代度量——交联度(DX)。
粘弹性性能以及由此计算出的结构参数与交联剂用量相关。TEGDMA含量的增加导致Tg、q和DX增加,而Mc降低。在DMA分析中检测到双键可能未完全转化,这通过傅里叶变换红外光谱(FTIR)测量的转化率(DC)得到证实。此外,通过1H NMR实验发现了一定量的溶胶分数。
本文所呈现系统建立的结构-性能关系可能对应用X-PMMA的组织工程有用。玻璃化转变前后储能模量值的直接测量可作为X-PMMA交联密度的简单快速指标。