Yunnan Provincial Key Laboratory of Wood Adhesives and Glued Products, Southwest Forestry University, Kunming 650224, Yunnan, China.
Jiaxing Key Laboratory of Molecular Recognition and Sensing, College of Biological, Chemical Sciences and Engineering, Jiaxing University, Jiaxing 314001, China.
Int J Biol Macromol. 2023 Dec 31;253(Pt 1):126575. doi: 10.1016/j.ijbiomac.2023.126575. Epub 2023 Aug 28.
Traditional wood adhesives have the problems of excessive dependence on fossil resources and environmental pollution. Cellulose, a renewable biomass resource with a low price and huge output, provides a basis for preparing biomass wood adhesives. In this study, a new type of polyamide resin was prepared by modifying microcrystalline cellulose and reacting with natural citric acid. Specifically, toluenesulfonyl cellulose (TS) was synthesized, and functional amino cellulose (AC) was prepared by a nucleophilic substitution reaction with hyperbranched polyamide (HP). Then cellulose-based hyperbranched polyamide resin (CHP) was prepared by polycondensation with citric acid. The structure of CHP resin was investigated by FTIR, XPS, C NMR and GPC, and plywood was prepared to study its mechanical properties. Due to the formation of hyperbranched cross-linked network structure inside the resin, the prepared plywood has excellent properties. The dry shear strength reaches 2.24 MPa, and the strength reaches 1.25 and 1.31 MPa after soaking in water at 63 °C and 93 °C for 3 h. The resin in this study has a simple preparation process and excellent performance, which provides a solid foundation for developing high-performance cellulose-based wood adhesives.
传统木材胶粘剂存在过度依赖化石资源和环境污染的问题。纤维素是一种可再生的生物质资源,价格低廉、产量巨大,为制备生物质木材胶粘剂提供了基础。本研究通过对微晶纤维素进行改性,并与天然柠檬酸反应,制备了一种新型聚酰胺树脂。具体来说,合成了对甲苯磺酰纤维素(TS),并通过超支化聚酰胺(HP)的亲核取代反应制备了功能化氨基纤维素(AC)。然后,通过与柠檬酸的缩聚反应制备了基于纤维素的超支化聚酰胺树脂(CHP)。通过 FTIR、XPS、C NMR 和 GPC 对 CHP 树脂的结构进行了研究,并制备了胶合板以研究其力学性能。由于树脂内部形成了超支化交联网络结构,所制备的胶合板具有优异的性能。其干剪切强度达到 2.24 MPa,在 63°C 和 93°C 水中浸泡 3 h 后,强度分别达到 1.25 和 1.31 MPa。本研究中的树脂具有制备工艺简单、性能优异的特点,为开发高性能纤维素基木材胶粘剂提供了坚实的基础。