胶粘剂
环境友好型
固化(化学)
材料科学
抗剪强度(土壤)
红麻
粘结强度
化学工程
制浆造纸工业
松香
极限氧指数
硬木
降级(电信)
工程木材
粘结强度
脲醛
粘接
聚合物
三聚氰胺
复合材料
天然纤维
热塑性塑料
甲醛
异氰酸酯
天然材料
美拉德反应
作者
Daqun Lang,Jianping Cheng,S. S. Liu,Guanben Du,Taohong Li,Yilin Shen,Shuyang Jiang
标识
DOI:10.1021/acssuschemeng.5c11718
摘要
Despite the natural abundance of peach gum (PG), its efficient and large-scale utilization remains limited. Inspired by the Maillard reaction, this study successfully developed a high-performance PG-based wood adhesive through controlled acid degradation of PG and a subsequent reaction with a polyamine polymer. The three-layer plywood bonded with the resulting adhesive exhibited a hot-water shear strength of 0.94 MPa after hot-pressing at 120 °C, meeting the requirements for Type II plywood according to the Chinese National Standard (GB/T 9846-2015), and maintained durable adhesion in warm water (60 °C) for up to 120 days. Even after 12 h of exposure to harsh environments, including acidic (pH = 5) and alkaline (pH = 9) conditions, acetone, ethanol, and simulated seawater, the bonding strength remained around 1.0 MPa. Moreover, the adhesive displayed broad and superior bonding performance toward diverse substrates such as composites and metal and nonmetal substrates, with bonding strengths ranging from 2.02 to 17.01 MPa. Additionally, the adhesive exhibited a limiting oxygen index of 30.6%, indicating favorable flame retardancy. This work provides a viable route for the high-value and scalable utilization of PG in wood adhesives and offers an environmentally friendly alternative to conventional formaldehyde-based resins for the wood industry.
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