Sutipanwihan Naipaporn, Kitsawat Veerapat, Sintharm Praewpakun, Phisalaphong Muenduen
Bio-Circular-Green economy Technology & Engineering Center, BCGeTEC, Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok 10330, Thailand.
Polymers (Basel). 2024 Sep 20;16(18):2652. doi: 10.3390/polym16182652.
In this paper, green composite films comprising natural rubber (NR), cellulose (CE), and chitosan (CS) were successfully fabricated through a simple, facile, cost-effective method in order to improve mechanical, chemical, and antimicrobial properties of NR composite films. Chitosan with a low molecular weight of 30,000-50,000 g/mol (CS-L) and a medium molecular weight of 300,000-500,000 g/mol (CS-M) was used for the fabrication. The composite films were prepared via a latex aqueous microdispersion method with different weight ratios of NR:CE:CS-L/CS-M. Fourier transform infrared spectroscopy (FTIR) results demonstrated strong interactions of hydrogen bonds between CE and CS-L/CS-M in the composite films. The tensile strength and the modulus of the composite films in dried form were found to significantly increase with the reinforcement of CE and CS-L/CS-M. The maximum tensile strength (13.8 MPa) and Young's modulus (12.7 MPa) were obtained from the composite films reinforced with CE at 10 wt.% and CS-L at 10 wt.%. The high elongation of 500-526% was obtained from the composite films reinforced with CE at 10 wt.% and CS (CS-L or CS-M) at 5.0 wt.%. The modification could also significantly promote antimicrobial activities and chemical resistance against non-polar solvents in the composite films. The NR composite films have potential uses as flexible films for sustainable green packaging.
在本文中,通过一种简单、便捷、经济高效的方法成功制备了包含天然橡胶(NR)、纤维素(CE)和壳聚糖(CS)的绿色复合薄膜,以改善NR复合薄膜的机械、化学和抗菌性能。使用了低分子量为30,000 - 50,000 g/mol的壳聚糖(CS-L)和中分子量为300,000 - 500,000 g/mol的壳聚糖(CS-M)来进行制备。通过乳胶水分散法以不同的NR:CE:CS-L/CS-M重量比制备复合薄膜。傅里叶变换红外光谱(FTIR)结果表明复合薄膜中CE与CS-L/CS-M之间存在强烈的氢键相互作用。发现干燥形式的复合薄膜的拉伸强度和模量随着CE和CS-L/CS-M的增强而显著增加。从含有10 wt.%的CE和10 wt.%的CS-L增强的复合薄膜中获得了最大拉伸强度(13.8 MPa)和杨氏模量(12.7 MPa)。从含有10 wt.%的CE和5.0 wt.%的CS(CS-L或CS-M)增强的复合薄膜中获得了500 - 526%的高伸长率。这种改性还可以显著促进复合薄膜的抗菌活性和对非极性溶剂的耐化学性。NR复合薄膜有潜力用作可持续绿色包装的柔性薄膜。