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基于物理缠结和化学交联的高性能抗菌/抗真菌柠檬酸-淀粉胶粘剂的制备。

Preparation of high-performance antibacterial/antifungal citric acid-starch adhesives based on physical entanglement and chemical crosslinking.

机构信息

Key Laboratory of Bio-based Material Science & Technology (Northeast Forestry University), Ministry of Education, Harbin 150040, China; Engineering Research Center of Advanced Wooden Materials (Northeast Forestry University), Ministry of Education, Harbin 150040, China.

College of Mechanical and Electrical Engineering (Northeast Forestry University), Ministry of Education, Harbin 150040, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 2):135560. doi: 10.1016/j.ijbiomac.2024.135560. Epub 2024 Sep 30.

Abstract

Starch-based wood adhesives are widely used as environmentally friendly and formaldehyde-free alternatives in the manufacturing of wood products. However, their poor water resistance and inability to inhibit bacterial/fungal growth limit their practicality. To address this issue, a physicochemical double-crosslinked network structure between citric acid, starch, and wood was prepared in this study by physically entangling the wood structure and chemically crosslinking the starch molecules, with citric acid preventing the activity of various enzymes and denatured proteins within microbial cells, thereby inhibiting bacterial and fungal growth. In water resistance cycling tests, the resulting esterified starch plywood demonstrated a 47.6 % and 13.2 % increase in water resistance compared with starch plywood and commercially available phenolic resin plywood, respectively. In addition, the tighter intermolecular bonding in the crosslinked structure results in a 31 % increase in heat resistance. The physical "nailing" and chemical crosslinking between the adhesive and the wood improved considerably the bonding strength to 98.36 %. The dual role of the physicochemical crosslinking of starch adhesives provides a straightforward strategy for the preparation of inexpensive, water-resistant, and fungal/bacterial-resistant starch adhesives, thus contributing to the promotion of starch adhesives.

摘要

以淀粉为基础的木材胶粘剂作为环保型无甲醛替代品,广泛应用于木制品的制造中。然而,其较差的耐水性和抑制细菌/真菌生长的能力限制了它们的实用性。为了解决这个问题,本研究通过物理缠绕木材结构和化学交联淀粉分子,制备了柠檬酸、淀粉和木材之间的物理化学双重交联网络结构,柠檬酸可以防止微生物细胞内各种酶和变性蛋白的活性,从而抑制细菌和真菌的生长。在耐水循环测试中,与淀粉胶合板和市售酚醛树脂胶合板相比,所得酯化淀粉胶合板的耐水性分别提高了 47.6%和 13.2%。此外,交联结构中分子间键合更紧密,耐热性提高了 31%。胶粘剂与木材之间的物理“钉钉”和化学交联大大提高了胶合强度,达到 98.36%。淀粉胶粘剂的物理化学交联的双重作用为制备廉价、耐水、抗真菌/细菌的淀粉胶粘剂提供了一种简单的策略,从而促进了淀粉胶粘剂的发展。

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