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烯基琥珀酸酐改性树胶贡达古胶:一种具有食品包装潜力的生物基材料。

Alkenyl succinic anhydride modified tree-gum kondagogu: A bio-based material with potential for food packaging.

作者信息

Venkateshaiah Abhilash, Havlíček Karel, Timmins Renee L, Röhrl Maximilian, Wacławek Stanisław, Nguyen Nhung H A, Černík Miroslav, Padil Vinod V T, Agarwal Seema

机构信息

Institute for Nanomaterials, Advanced Technologies and Innovation (CXI), Technical University of Liberec (TUL), Studentská 1402/2, Liberec 1 461 17, Czech Republic.

Inorganic Chemistry I, University of Bayreuth, Universittsstraße 30, 95447 Bayreuth, Germany.

出版信息

Carbohydr Polym. 2021 Aug 15;266:118126. doi: 10.1016/j.carbpol.2021.118126. Epub 2021 Apr 28.

Abstract

Tree gums are a class of abundantly available carbohydrate polymers that have not been explored thoroughly in film fabrication for food packaging. Films obtained from pristine tree gums are often brittle, hygroscopic, and lack mechanical strength. This study focuses on the chemical modification of gum kondagogu using long-chain alkenyl groups of dodecenyl succinic anhydride (DDSA), an esterifying agent that introduces a 12-carbon hydrophobic chain to the kondagogu structure. The esterification reaction was confirmed by H nuclear magnetic resonance and Fourier-transform infrared spectroscopy. The effect of nano-cellulose as an additive on various film properties was investigated. The developed films were characterized for their mechanical, morphological, optical, barrier, antibacterial, and biodegradable properties. The inclusion of long-chain carbon groups acted as internal plasticizers and resulted in an amorphous structure with better film-forming ability, improved hydrophobicity, and higher elongation at break values. The modified films exhibited antibacterial properties and excellent biodegradability under aerobic conditions.

摘要

树胶是一类大量可得的碳水化合物聚合物,在用于食品包装的薄膜制造中尚未得到充分探索。由原始树胶制成的薄膜通常易碎、吸湿且缺乏机械强度。本研究重点关注用十二碳烯基琥珀酸酐(DDSA)的长链烯基对贡达古胶进行化学改性,DDSA是一种酯化剂,可将12碳疏水链引入贡达古胶结构。通过氢核磁共振和傅里叶变换红外光谱证实了酯化反应。研究了纳米纤维素作为添加剂对各种薄膜性能的影响。对所制备的薄膜的机械、形态、光学、阻隔、抗菌和生物降解性能进行了表征。长链碳基团的加入起到了内增塑剂的作用,形成了具有更好成膜能力、改善的疏水性和更高断裂伸长率值的无定形结构。改性薄膜在有氧条件下表现出抗菌性能和优异的生物降解性。

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