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高度支化单宁-三(2-氨乙基)胺-尿素木材胶粘剂

Highly Branched Tannin-Tris(2-aminoethyl)amine-Urea Wood Adhesives.

作者信息

Zhang Bengang, Chen Xinyi, Pizzi Antonio, Petrissans Mathieu, Dumarcay Stephane, Petrissans Anelie, Zhou Xiaojian, Du Guanben, Colin Baptiste, Xi Xuedong

机构信息

LERMAB, IUT Hubert Curien, University of Lorraine, 7 rue Fusillés Résistance, 88000 Epinal, France.

LERMAB-ENSTIB, University of Lorraine, 27 rue Philippe Seguin, 88000 Epinal, France.

出版信息

Polymers (Basel). 2023 Feb 10;15(4):890. doi: 10.3390/polym15040890.

Abstract

Condensed tannin copolymerized with hyperbranched tris(2-aminoethyl)amine-urea formed by amine-amido deamination yields a particleboard thermosetting adhesive without any aldehydes satisfying the requirements of relevant standards for the particleboard internal bond strength. The tannin-triamine-urea cures well at 180 °C, a relatively low temperature for today's particleboard hot pressing. As aldehydes were not used, the formaldehyde emission was found to be zero, not even in traces due to the heating of wood. The effect is ascribed to the presence of many reactive sites, such as amide, amino, and phenolic groups belonging to the three reagents used. The tannin appears to function as an additional cross-linking agent, almost a nucleating agent, for the triamine-urea hyperbranched oligomers. Chemical analysis by MALDI ToF and C NMR has shown that the predominant cross-linking reaction is that of the substitution of the tannin phenolic hydroxyls by the amino groups of the triamine. The reaction of tannin with the still-free amide groups of urea is rather rare, but it may occur with the rarer tannin flavonoid units in which the heterocyclic ring is opened. Due to the temperature gradient between the surfaces and the board core in the particleboard during hot pressing, the type and the relative balance of covalent and ionic bonds in the resin structure may differ in the surfaces and the board core.

摘要

缩合单宁与通过胺酰胺脱氨反应形成的超支化三(2-氨基乙基)胺-脲共聚,可制得一种刨花板热固性胶粘剂,该胶粘剂无任何醛类物质,满足刨花板内结合强度相关标准的要求。单宁-三胺-脲在180℃下固化良好,这一温度对于当今刨花板热压来说相对较低。由于未使用醛类物质,甲醛释放量为零,即使在木材加热时也无甲醛痕迹。这种效果归因于所使用的三种试剂中存在许多反应位点,如酰胺基、氨基和酚羟基。单宁似乎作为一种额外的交联剂,几乎是一种成核剂,用于三胺-脲超支化低聚物。通过基质辅助激光解吸电离飞行时间质谱(MALDI ToF)和碳核磁共振(C NMR)进行的化学分析表明,主要的交联反应是三胺的氨基取代单宁酚羟基的反应。单宁与尿素中仍游离的酰胺基的反应相当罕见,但可能与杂环打开的较罕见的单宁类黄酮单元发生反应。由于在刨花板热压过程中,刨花板表面和板芯之间存在温度梯度,树脂结构中共价键和离子键的类型及相对平衡在表面和板芯中可能会有所不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2d9/9960572/21b7ce987cef/polymers-15-00890-g001.jpg

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