Olaiya N G, Obaseki O S, Mersal Gaber A M, Ibrahim Mohamed M, Hessien Mahmoud M, Grace Olaiya Funmilayo, Afzal Asif, Khanam Taslima, Rashedi Ahmad
Department of Industrial and Production Engineering, Federal University of Technology Akure, PMB 704, Ondo state, Nigeria.
Department of Physical Sciences, Landmark University, PMB 1001, Omu-Aran, Kwara State, Nigeria.
R Soc Open Sci. 2022 Jun 1;9(6):211411. doi: 10.1098/rsos.211411. eCollection 2022 Jun.
The miscibility between hydrophobic and hydrophilic biopolymers has been of significant challenge. This study used a novel simplified chitin modification method to produce phthalic chitin using phthalic anhydride in a substitution reaction. The FT-IR functional group analysis was used to confirm the substitution reaction. The modified chitin was used as compatibilizer in polylactic acid (PLA)/starch biocomposite to enhance its properties. The biocomposite was prepared using melt extrusion and compression moulding technique. The biocomposite's morphological, thermomechanical and water absorption properties were characterized using scanning electron microscope, tensile test, dynamic mechanical analysis, thermogravimetry analysis, differential scanning calorimetry, thickness swelling and water absorption test. The FT-IR study shows a successful substitution reaction of the amine hydrogen ion present in the chitin as opposed to substituting the hydrogen ion in the hydroxide group. The tensile and impact properties of biocomposite incorporated with modified chitin showed better results compared with other samples. The SEM images showed uniform miscibility of the modified biocomposite. The dynamic mechanical analysis showed improved modulus value with the incorporation of modified chitin. The thermal properties showed improved thermal stability of the modified biocomposite. Furthermore, the percentage of water absorbed by biocomposite with modified chitin is reduced compared with the PLA/starch biocomposite. The produced biodegradable ternary blend can be used as a substitute for plastics in industrial applications.
疏水性和亲水性生物聚合物之间的互溶性一直是一项重大挑战。本研究采用一种新型的简化几丁质改性方法,通过邻苯二甲酸酐在取代反应中制备邻苯二甲酸几丁质。利用傅里叶变换红外光谱(FT-IR)官能团分析来确认取代反应。改性几丁质用作聚乳酸(PLA)/淀粉生物复合材料的增容剂以增强其性能。生物复合材料采用熔融挤出和压缩成型技术制备。使用扫描电子显微镜、拉伸试验、动态力学分析、热重分析、差示扫描量热法、厚度膨胀和吸水性测试对生物复合材料的形态、热机械和吸水性能进行表征。FT-IR研究表明,几丁质中存在的胺氢离子发生了成功的取代反应,而不是取代羟基中的氢离子。与其他样品相比,掺入改性几丁质的生物复合材料的拉伸和冲击性能表现出更好的结果。扫描电子显微镜图像显示改性生物复合材料具有均匀的互溶性。动态力学分析表明,掺入改性几丁质后模量值有所提高。热性能表明改性生物复合材料的热稳定性有所提高。此外,与PLA/淀粉生物复合材料相比,掺入改性几丁质的生物复合材料的吸水率降低。所制备的可生物降解三元共混物可在工业应用中用作塑料的替代品。