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具有增强机械强度、生物活性功能和卓越湿木材附着力的 Kraft 木质素/聚氨酯复合材料。

Kraft lignin/polyurethane composites with enhanced mechanical strength, bioactive functionality, and superior wet wood adhesion.

作者信息

Arif Maham, Choudhury Avishek Mallick, Ahmed Aleezay Anjum, Parihar Vijay Singh, Uddin Md Elias, Kellomäki Minna, Maiti Pralay, Layek Rama

机构信息

LUT University, School of Engineering Science , Department of Separation Science, Mukkulankatu 19, Lahti 15210, Finland.

School of Materials Science and Technology, Indian Institute of Technology (Banaras Hindu University), Varanasi 221005, India.

出版信息

Colloids Surf B Biointerfaces. 2025 Dec;256(Pt 1):114986. doi: 10.1016/j.colsurfb.2025.114986. Epub 2025 Jul 26.

Abstract

Conventional additives used in composite resins, widely employed in various industrial and domestic applications particularly in polymer composite films and wood adhesives, pose significant environmental and health concerns due to their petrochemical origins. To address this challenge, we developed a novel polyurethane (LPU) composite resin integrated with kraft lignin (KL) as a bio-based additive, exhibiting excellent multifunctional properties. The synthesis involved reacting poly(ε-caprolactone) diol and citric acid with 2,4-toluene diisocyanate, followed by the incorporation of KL and castor oil (CO) as reactive bio-additives to enhance the functionality of the LPU. CO not only improved the bio-content of the LPU but also facilitated the processability of KL during synthesis. The LPU was characterized using FTIR, WAXS, X-FESEM, and SS-CP-MAS C NMR techniques. The LPU5 film exhibited a significantly higher tensile strength (8.1 ± 1.0 MPa) compared to the pure PU film (3.6 ± 1.5 MPa). The LPU15 wood adhesive demonstrated improved bio-content along with excellent shear strength and evident wood failure in wet environment, relative to pure PU. Furthermore, LPU composite resin mitigated the oxidative stress and also suppressed the proliferation of Escherichia coli (a Gram-negative bacterium), and Staphylococcus aureus (a Gram-positive bacterium) compared to pure PU. This study introduces a novel strategy for preparing LPU composite resin through the integration of bio-based additives, achieving enhanced bio-content, superior mechanical strength, wet wood-bonding ability, and improved bioactive properties such as antibacterial and antioxidant activity, thereby presenting a sustainable and reliable alternative to petrochemical-based constituents.

摘要

复合树脂中使用的传统添加剂广泛应用于各种工业和家庭应用中,特别是在聚合物复合薄膜和木材胶粘剂中,由于其石化来源,对环境和健康构成重大担忧。为应对这一挑战,我们开发了一种新型聚氨酯(LPU)复合树脂,其中集成了牛皮纸木质素(KL)作为生物基添加剂,具有优异的多功能性能。合成过程包括使聚(ε-己内酯)二醇和柠檬酸与2,4-甲苯二异氰酸酯反应,随后加入KL和蓖麻油(CO)作为反应性生物添加剂以增强LPU的功能。CO不仅提高了LPU的生物含量,还在合成过程中促进了KL的加工性能。使用FTIR、WAXS、X-FESEM和SS-CP-MAS C NMR技术对LPU进行了表征。与纯PU薄膜(3.6±1.5 MPa)相比,LPU5薄膜的拉伸强度显著更高(8.1±1.0 MPa)。与纯PU相比,LPU15木材胶粘剂在湿环境中具有更高的生物含量、优异的剪切强度和明显的木材破坏。此外,与纯PU相比,LPU复合树脂减轻了氧化应激,还抑制了大肠杆菌(革兰氏阴性菌)和金黄色葡萄球菌(革兰氏阳性菌)的增殖。本研究介绍了一种通过整合生物基添加剂制备LPU复合树脂的新策略,实现了更高的生物含量、卓越的机械强度、湿木材粘结能力以及改善的生物活性特性,如抗菌和抗氧化活性,从而为基于石化的成分提供了一种可持续且可靠的替代品。

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