Teamsinsungvon Arpaporn, Ruksakulpiwat Chaiwat, Ruksakulpiwat Yupaporn
School of Polymer Engineering, Institute of Engineering, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand.
Center of Excellence on Petrochemical and Materials Technology, Chulalongkorn University, Bangkok 10330, Thailand.
Polymers (Basel). 2022 Aug 14;14(16):3310. doi: 10.3390/polym14163310.
A mixed oxide of titania-silica oxides (TiSi oxides) was successfully prepared via the sol-gel technique from our previous work. The use of TiSi oxides to improve the mechanical properties, photocatalytic efficiency, antibacterial property, permeability tests, and biodegradability of polylactic acid (PLA) was demonstrated in this study. The influence of different types and contents of TiSi oxides on crystallization behavior, mechanical properties, thermal properties, and morphological properties was presented. In addition, the effect of using TiSi oxides as a filler in PLA composites on these properties was compared with the use of titanium dioxide (TiO), silicon dioxide (SiO), and TiOSiO. Among the prepared biocomposite films, the PLA/TiSi films showed an improvement in the tensile strength and Young's modulus (up to 5% and 31%, respectively) in comparison to neat PLA films. Photocatalytic efficiency to degrade methylene blue (MB), hydrolytic degradation, and in vitro degradation of PLA are significantly improved with the addition of TiSi oxides. Furthermore, PLA with the addition of TiSi oxides exhibited an excellent antibacterial effect on Gram-negative bacteria ( or ) and Gram-positive bacteria ( or ), indicating the improved antimicrobial effectiveness of PLA composites. Importantly, up to 5% TiSi loading could promote more PLA degradation via the water absorption ability of mixed oxides. According to the research results, the PLA composite films produced with TiSi oxide were transparent, capable of screening UV radiation, and exhibited superior antibacterial efficacy, making them an excellent food packaging material.
通过我们之前工作中的溶胶-凝胶技术成功制备了二氧化钛-二氧化硅混合氧化物(TiSi氧化物)。本研究展示了使用TiSi氧化物来改善聚乳酸(PLA)的机械性能、光催化效率、抗菌性能、渗透性测试和生物降解性。介绍了不同类型和含量的TiSi氧化物对结晶行为、机械性能、热性能和形态性能的影响。此外,将在PLA复合材料中使用TiSi氧化物作为填料对这些性能的影响与使用二氧化钛(TiO)、二氧化硅(SiO)和TiOSiO的情况进行了比较。在所制备的生物复合薄膜中,与纯PLA薄膜相比,PLA/TiSi薄膜的拉伸强度和杨氏模量有所提高(分别高达5%和31%)。添加TiSi氧化物后,PLA降解亚甲基蓝(MB)的光催化效率、水解降解和体外降解均得到显著改善。此外,添加TiSi氧化物的PLA对革兰氏阴性菌(或)和革兰氏阳性菌(或)表现出优异的抗菌效果,表明PLA复合材料的抗菌有效性得到提高。重要的是,高达5%的TiSi负载量可通过混合氧化物的吸水能力促进更多PLA的降解。根据研究结果,用TiSi氧化物制备的PLA复合薄膜是透明的,能够屏蔽紫外线辐射,并具有优异的抗菌功效,使其成为一种优异的食品包装材料。