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新型木质纤维素生物树脂:用于金属和玻璃的粘合剂及涂料

Unusual Lignocellulosic Bioresins: Adhesives and Coatings for Metals and Glass.

作者信息

Pizzi Antonio

机构信息

Laboratoire d'Etude et de Recherche sur le Materiau Bois, University of Lorraine, 27 Rue Philippe Seguin, 88000 Epinal, France.

出版信息

Molecules. 2024 Nov 15;29(22):5401. doi: 10.3390/molecules29225401.

Abstract

This minireview presents some unusual but encouraging examples of lignocellulosic-based adhesives and coatings used for metals, glass, and some other difficult-to-adhere materials. The reactions and applications presented are as follows. (i) The reactions of tannins and wood lignin with phosphate salts, in particular triethylphosphate, to adhere and join steel and aluminum to Teflon, in particular for non-stick frying pans. These adhesive coatings have been shown to sustain the relevant factory industrial test of 410 °C for 11 min and, moreover, to present a 50% material loss even at 900 °C for 5 min. (ii) Non-isocyanate polyurethanes (NIPU) based on glucose and sucrose as coatings of steel and glass. These were obtained by the carbonation of carbohydrates through reaction with the inexpensive dimethyl carbonate followed by reaction with a diamine; all materials used were bio-sourced. Lastly, (iii) the use of citric acid-based adhesive coupled with any hydroxyl groups carrying material for coating metals is also described. These three approaches give a clear indication of the possibilities and capabilities of biomaterials in this field. All these are presented and discussed.

摘要

本综述介绍了一些用于金属、玻璃和其他一些难粘材料的木质纤维素基粘合剂和涂料的不同寻常但令人鼓舞的例子。所介绍的反应和应用如下。(i) 单宁和木材木质素与磷酸盐,特别是磷酸三乙酯的反应,用于将钢和铝粘附并连接到特氟龙上,特别是用于不粘煎锅。这些粘合剂涂层已被证明能够承受410°C的相关工厂工业测试11分钟,此外,即使在900°C下5分钟也只会有50%的材料损失。(ii) 基于葡萄糖和蔗糖的非异氰酸酯聚氨酯 (NIPU) 作为钢和玻璃的涂层。这些是通过碳水化合物与廉价的碳酸二甲酯反应然后与二胺反应进行碳酸化得到的;所有使用的材料均来自生物源。最后,(iii) 还描述了使用柠檬酸基粘合剂与任何带有羟基的材料结合用于涂覆金属。这三种方法清楚地表明了生物材料在该领域的可能性和能力。所有这些都进行了介绍和讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42ee/11597304/54e7feeba13c/molecules-29-05401-g001.jpg

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