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新型端羟基超支化聚合物作为单宁的协同改性剂,用于制备具有优异性能的酪蛋白基薄膜。

Novel hydroxyl-terminated hyperbranched polymer as a synergistic modifier with tannin for preparation of casein-based films with superior performance.

机构信息

Yunnan Provincial Key Laboratory of Wood Adhesives and Glued Products, Southwest Forestry University, Kunming 650224, China.

National Research Centre, Department of Polymers and Pigments, Dokki, Cairo 12622, Egypt.

出版信息

Int J Biol Macromol. 2024 Oct;278(Pt 1):134672. doi: 10.1016/j.ijbiomac.2024.134672. Epub 2024 Aug 10.

Abstract

A hyperbranched poly (titanium oxide) (HBPTi) with hydroxyl terminal groups was synthesized via polycondensation reaction as a synergistic modifier with tannin to promote performance of casein-based composite film. The synergistic effects of HBPTis, acquiring different hyperbranched structures, with tannin on the microstructure, mechanical characteristics, barrier against water vapor, and thermal stability of casein-based film were investigated in this work. The tensile strength of the composite films increased from 7.6 MPa to 22.1 MPa, which accounts for 190.79 % increase after the addition of HBPTi compared to casein-tannin films modified with glycerol. The casein-tannin films with the help of HBPTi presented excellent water vapor permeation, thermal stability, and showed nearly 100 % UV absorption in the range 200-400 nm. Additionally, the microstructure of HBPTi modified casein-tannin films tend to be more compact due to the promoted interaction of casein-tannin composite aided by covalent bonding and/or other types of bonding between casein, tannin and HBPTi. Therefore, associative modification using such hyperbranched polymers and tannins provides extendable application value for casein-based films especially as food packaging materials and for other fields as well.

摘要

一种具有羟基末端基团的超支化聚(氧化钛)(HBPTi)通过缩聚反应合成,作为单宁的协同改性剂,以提高基于酪蛋白的复合膜的性能。本工作研究了不同超支化结构的 HBPTi 与单宁对基于酪蛋白的膜的微观结构、力学性能、水蒸气阻隔性能和热稳定性的协同作用。与用甘油改性的酪蛋白-单宁膜相比,添加 HBPTi 后,复合膜的拉伸强度从 7.6 MPa 增加到 22.1 MPa,增加了 190.79%。在 HBPTi 的帮助下,基于酪蛋白的单宁膜具有出色的水蒸气透过性、热稳定性,并在 200-400nm 范围内几乎能吸收 100%的紫外线。此外,由于共价键和/或酪蛋白、单宁和 HBPTi 之间的其他类型键合促进了酪蛋白-单宁复合材料的相互作用,HBPTi 改性的酪蛋白-单宁膜的微观结构趋于更加致密。因此,使用这种超支化聚合物和单宁进行协同修饰为基于酪蛋白的膜,特别是作为食品包装材料以及其他领域提供了可扩展的应用价值。

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