Jaafar Mohd Zaim, Mohd Ridzuan Farah Fazlina, Mohamad Kassim Mohamad Haafiz, Abu Falah
Bioresource Technology Division, School of Industrial Technology, Universiti Sains Malaysia, Penang 11800, Penang, Malaysia.
Green Biopolymer, Coatings & Packaging Cluster, School of Industrial Technology, Universiti Sains Malaysia, Penang 11800, Penang, Malaysia.
Polymers (Basel). 2023 Jan 30;15(3):691. doi: 10.3390/polym15030691.
All-cellulose composite (ACC) films from oil palm empty fruit bunches (OPEFBs) were successfully fabricated through the surface selective dissolution of cellulose fibers in 8 wt% LiCl/DMAc via the solution casting method. The effect of dissolution time on the properties of the ACC films was assessed in the range of 5-45 min. The results showed that under the best conditions, there were sufficiently dissolved fiber surfaces that improved the interfacial adhesion while maintaining a sizable fraction of the fiber cores, acting as reinforcements for the material. The ACC films have the highest tensile strength and modulus of elasticity of up to 35.78 MPa and 2.63 GPa after 15 min of dissolution. Meanwhile, an X-ray diffraction analysis proved that cellulose I and II coexisted, which suggests that the crystallite size and degree of crystallinity of the ACC films had significantly declined. This is due to a change in the cellulose structure, which results in fewer voids and enhanced stress distribution in the matrix. Scanning electron microscopy revealed that the interfacial adhesion improved between the reinforcing fibers and matrices as the failure behavior of the film composite changed from fiber pullout to fiber breakage and matrix cracking. On the other hand, the thermal stability of the ACC film showed a declining trend as the dissolution time increased. Therefore, the best dissolution time to formulate the ACC film was 15 min, and the obtained ACC film is a promising material to replace synthetic polymers as a green composite.
通过溶液浇铸法,在8 wt%的LiCl/DMAc中对油棕空果串(OPEFBs)中的纤维素纤维进行表面选择性溶解,成功制备了全纤维素复合材料(ACC)薄膜。在5-45分钟的范围内评估了溶解时间对ACC薄膜性能的影响。结果表明,在最佳条件下,有足够溶解的纤维表面,在保持相当一部分纤维芯作为材料增强体的同时,改善了界面粘附性。溶解15分钟后,ACC薄膜的拉伸强度和弹性模量最高,分别达到35.78 MPa和2.63 GPa。同时,X射线衍射分析证明纤维素I和II共存,这表明ACC薄膜的微晶尺寸和结晶度显著下降。这是由于纤维素结构的变化,导致基体中的空隙减少,应力分布增强。扫描电子显微镜显示,随着薄膜复合材料的失效行为从纤维拔出转变为纤维断裂和基体开裂,增强纤维与基体之间的界面粘附性得到改善。另一方面,随着溶解时间的增加,ACC薄膜的热稳定性呈下降趋势。因此,制备ACC薄膜的最佳溶解时间为15分钟,所获得的ACC薄膜是一种有前途的材料,可作为绿色复合材料替代合成聚合物。