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淀粉基交联薄膜的制备及其增强的柔韧性

Fabrication and Enhanced Flexibility of Starch-Based Cross-Linked Films.

作者信息

Cho Ji-Hyun, Ryu Kwang-Hyun, Kim Hyun-Joong, Back Jong-Ho

机构信息

Laboratory of Adhesion & Bio-Composites, Department of Agriculture, Forestry and Bioresources, Seoul National University, Seoul 08826, Republic of Korea.

Research Institute of Agriculture and Life Sciences, College of Agriculture and Life Sciences, Seoul National University, Seoul 08826, Republic of Korea.

出版信息

Biomacromolecules. 2024 Dec 9;25(12):7894-7903. doi: 10.1021/acs.biomac.4c01172. Epub 2024 Nov 6.

Abstract

The development of sustainable materials has driven significant interest in starch as a renewable and biodegradable polymer. However, the inherent brittleness, hydrophilicity, and lack of thermoplasticity of native starch limit its application in material science. This study addresses the limitations of native starch by converting it to dialdehyde starch (DAS) and cross-linking with polyether diamines via imine bonds. The effects of Jeffamine molecular weights (D-2000, D-400, and D-230) and mole ratios on the mechanical, thermal, and structural properties of starch-based films were examined. The cross-linked DAS/Js films exhibited significant enhancements in flexibility and toughness. Specifically, DAS/J2000 at a 0.03 mol ratio achieved a tensile strength of 62.9 MPa. In comparison, DAS/J400 at a 0.5 mol ratio demonstrated 126.2% elongation at break, indicating the balance between cross-linking density and chain mobility. X-ray diffraction (XRD) analysis revealed reduced crystallinity and tighter molecular packing with increased cross-linking. Dynamic mechanical analysis (DMA) indicated a decrease in Tg with an increasing mole ratio, reflecting enhanced molecular mobility. The results underscore the potential of optimized cross-linking conditions to produce starch-based films with properties that contribute to developing sustainable biopolymer materials.

摘要

可持续材料的发展引发了人们对淀粉作为一种可再生且可生物降解聚合物的浓厚兴趣。然而,天然淀粉固有的脆性、亲水性以及缺乏热塑性限制了其在材料科学中的应用。本研究通过将天然淀粉转化为二醛淀粉(DAS)并通过亚胺键与聚醚二胺交联来解决天然淀粉的局限性。研究了Jeffamine分子量(D - 2000、D - 400和D - 230)和摩尔比对淀粉基薄膜力学、热学和结构性能的影响。交联的DAS/Js薄膜在柔韧性和韧性方面有显著增强。具体而言,摩尔比为0.03的DAS/J2000的拉伸强度达到62.9 MPa。相比之下,摩尔比为0.5的DAS/J400的断裂伸长率为126.2%,表明交联密度与链流动性之间达到了平衡。X射线衍射(XRD)分析表明,随着交联度增加,结晶度降低,分子堆积更紧密。动态力学分析(DMA)表明,随着摩尔比增加,玻璃化转变温度(Tg)降低,这反映了分子流动性增强。结果强调了优化交联条件以制备具有有助于开发可持续生物聚合物材料性能的淀粉基薄膜的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d154/11633652/8091e88f7c4c/bm4c01172_0001.jpg

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