Zhang Qianyu, Yan Ranjun, Xiong Yangyang, Lei Hong, Du Guanben, Pizzi Antonio, Puangsin Buapan, Xi Xuedong
Yunnan Key Laboratory of Wood Adhesives and Glued Products, College of Material Science and Chemistry Engineering, Southwest Forestry University, 650224 Kunming, China.
School of Chemistry and Material Engineering, Zhejiang A&F University, 311300 Hangzhou, China.
Carbohydr Polym. 2025 Jan 1;347:122705. doi: 10.1016/j.carbpol.2024.122705. Epub 2024 Sep 3.
Developing the most abundant cellulose resources in nature as wood adhesives is a challenging but significant work. In this study, an oxidized cellulose-hexamethylene diamine-urea (OCHU) resin adhesive, of high bonding performance, and excellent water resistance has been prepared. The cellulose was firstly enzymatically hydrolyzed to increase its solubility and expose more hydroxyl groups, then oxidized by sodium periodate (NaIO) to generate a biological compound being rich of aldehyde groups. The OCHU adhesive was prepared by crosslinking oxidized cellulose (OC) with a synthetic reactive polyurea (HU) polymer, which was formed through the deamidation reaction between hexamethylenediamine (H) and urea (U). This adhesive exhibited a 24 h cold water soaking strength of 1.61 MPa, 3 h hot water (63 °C) strength of 1.05 MPa and a dry strength of 1.71 MPa. Compared to oxidized cellulose-hexamethylenediamine (OCH) adhesive, a significant increase of 60 % in this adhesive's wet strength. The Schiff base and addition reactions in the preparation were confirmed by XPS, solid-state NMR, and FTIR. This cellulose-based wood adhesive has great market competitiveness for mass production and application in the plywood industry, due to its excellent bonding properties.
将自然界中最丰富的纤维素资源开发为木材胶粘剂是一项具有挑战性但意义重大的工作。在本研究中,制备了一种具有高粘结性能和优异耐水性的氧化纤维素-六亚甲基二胺-尿素(OCHU)树脂胶粘剂。纤维素首先经过酶水解以提高其溶解度并暴露出更多羟基,然后用过碘酸钠(NaIO)氧化以生成富含醛基的生物化合物。OCHU胶粘剂是通过将氧化纤维素(OC)与合成反应性聚脲(HU)聚合物交联制备的,该聚合物是通过六亚甲基二胺(H)和尿素(U)之间的脱酰胺反应形成的。这种胶粘剂的24小时冷水浸泡强度为1.61MPa,3小时热水(63°C)强度为1.05MPa,干强度为1.71MPa。与氧化纤维素-六亚甲基二胺(OCH)胶粘剂相比,这种胶粘剂的湿强度显著提高了60%。通过XPS、固态NMR和FTIR证实了制备过程中的席夫碱和加成反应。这种基于纤维素的木材胶粘剂由于其优异的粘结性能,在胶合板工业的大规模生产和应用中具有很大的市场竞争力。