Synthesis and Characterization of Photocrosslinked Biobased Polyester Membrane

F. H. Jamaludin, K. Rangasamy, T. Wong, T. Li, S. A. Razak
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引用次数: 1

Abstract

A series of bio-based photocrosslinked polyester membranes, poly(1,8-octanediol-itaconate-citrate-dodecandioate), (POSCI) were synthesized through polycondensation followed by photocrosslinking under UV irradiation in the presence of 2,2-dimethoxy-2-phenylacetophenone (DMPA) as photoinitiator (PI). Upon varied UV exposure time and DMPA content, the corresponding changes in chemical, structural, and mechanical properties of the polymer were studied. The transmission peak of FTIR spectrum centred at 1725 cm-1 indicates the formation of ester structure. Contact angle results suggested all of the synthesized POSCI membranes had hydrophilic properties as their contact angle is less than 90 °.  Sol-gel analysis shows that the swelling ratio of POSCI decreases while the gel fraction increases with increasing in photocrosslinking time. The tensile strength of POSCI, thus, increased correspondingly with longer UV exposure. Excess DMPA, however, proved otherwise.
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光交联生物基聚酯膜的合成与表征
以2,2-二甲氧基-2-苯基苯乙酮(DMPA)为光引发剂(PI),在紫外照射下通过缩聚后光交联,合成了一系列生物基光交联聚酯膜聚(1,8-辛二醇-itaconate- cit酸盐-十二乙酸酯)(POSCI)。研究了不同紫外曝光时间和DMPA含量对聚合物化学、结构和力学性能的影响。FTIR光谱的透射峰以1725 cm-1为中心,表明形成了酯结构。接触角结果表明,所有合成的POSCI膜均具有亲水性,接触角均小于90°。溶胶-凝胶分析表明,随着光交联时间的延长,POSCI的溶胀率降低,凝胶分数增加。因此,随着紫外线照射时间的延长,POSCI的抗拉强度相应增加。然而,过量的DMPA却证明并非如此。
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