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基于超支化改性淀粉的粘合剂的计算机辅助开发

Computer-Guided Development of Hyperbranched Modified Starch-Based Adhesives.

作者信息

Yu Hongjian, Chang Jiang, Chi Wenrui, Gao Shuzhen, Liu Jie, Tang Yin

机构信息

College of Light Industry and Textile, Qiqihar University, Qiqihar 161006, China.

出版信息

Polymers (Basel). 2025 Jun 29;17(13):1812. doi: 10.3390/polym17131812.

Abstract

In this study, a novel starch-based adhesive (SBA) was proposed, which mainly involved the synthesis of a carboxyl-terminated hyperbranched polymer using bisphenol A diglycidyl ether (DGEBA) and citric acid as raw materials. Subsequently, starch was modified through hyperbranching to enhance the shear strength and water resistance of the SBA. For this purpose, the feasibility of the reaction between DGEBA and citric acid was analyzed using quantum mechanical simulations. Subsequently, both substances were simulated to synthesize carboxyl-terminated hyperbranched polymers with different ratios. Starch was modified through hyperbranching to establish various models of SBAs, and their properties were estimated using molecular dynamics simulations. Theoretical analysis indicates that a DGEBA-to-citric acid ratio of 3:7 yields a SBA with relatively optimal properties. The solubility parameter of this adhesive is 19.05 (J/cm)/, suggesting strong intermolecular interactions between the hyperbranched polymer and starch. The synthesized adhesive exhibits high cohesive strength, with an estimated water contact angle of up to 138°, indicating good hydrophobicity. Furthermore, the system demonstrates favorable mechanical performance, with a shear modulus of 4.34 GPa and a bulk modulus of 8.80 GPa. Additionally, at this ratio, the SBA exhibits a relatively high interaction energy of -408.01 kcal/mol with the cellulose substrate, suggesting that the adhesive possesses favorable shear strength.

摘要

在本研究中,提出了一种新型淀粉基粘合剂(SBA),其主要涉及以双酚A二缩水甘油醚(DGEBA)和柠檬酸为原料合成羧基封端的超支化聚合物。随后,通过超支化对淀粉进行改性,以提高SBA的剪切强度和耐水性。为此,使用量子力学模拟分析了DGEBA与柠檬酸之间反应的可行性。随后,对这两种物质进行模拟,以合成不同比例的羧基封端超支化聚合物。通过超支化对淀粉进行改性,建立了各种SBA模型,并使用分子动力学模拟评估了它们的性能。理论分析表明,DGEBA与柠檬酸的比例为3:7时可得到性能相对最优的SBA。这种粘合剂的溶解度参数为19.05(J/cm)/,表明超支化聚合物与淀粉之间存在较强的分子间相互作用。合成的粘合剂表现出高内聚强度,估计水接触角高达138°,表明具有良好的疏水性。此外,该体系表现出良好的力学性能,剪切模量为4.34 GPa,体积模量为8.80 GPa。此外,在此比例下,SBA与纤维素基材的相互作用能相对较高,为-408.01 kcal/mol,表明该粘合剂具有良好的剪切强度。

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