Zhou Yuyang, Lin Yichao, Tawiah Benjamin, Sun Jun, Yuen Richard K K, Fei Bin
Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hong Kong 999077, China.
Centre of Micro/Nano Manufacturing Technology (MNMT-Dublin), School of Mechanical & Materials Engineering, University College Dublin, Dublin D04 KW52, Ireland.
ACS Appl Mater Interfaces. 2021 May 12;13(18):21876-21887. doi: 10.1021/acsami.1c05587. Epub 2021 May 3.
This study presents a novel and facile strategy for fabricating fire-resistant, ultraviolet (UV)-shielding, and tensile-enhanced polylactide (PLA) composites using two-dimensional (2D) MXene (TiC) flakes chemically modified with 9,10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide (DOPO). The thermal and burning performances of PLA composites were demonstrated by the limiting oxygen index, UL-94 test, and cone calorimetry. The UV-shielding and tensile performances were also examined. The results revealed that PLA/TiC-DOPO (3 wt %) displayed a V-0 rating in the UL-94 test. The enhancement against fire hazard was reflected by the significant reduction in the peak heat release rate (33.7%), total heat release (47%), peak CO production (58.8%), and total smoke production (41.7%). The improved fire-safety performance of the composites is attributed to the interplay of catalytic, barrier, and condensed effects of the TiC-DOPO nanosheets in the PLA matrix. PLA/TiC-DOPO also showed an increase (∼9%) in tensile strength and an "Excellent" level (UPF 50+) in the UV-protection assessment. In all, this study introduces a novel chemical modification strategy for 2D MXene flakes to fabricate multifunctional PLA composites, which are promising candidates for next-generation sustainable and protective plastic products.
本研究提出了一种新颖且简便的策略,用于制备具有耐火、紫外线(UV)屏蔽和拉伸增强性能的聚乳酸(PLA)复合材料,该复合材料使用经9,10 - 二氢 - 9 - 氧杂 - 10 - 磷杂菲 - 10 - 氧化物(DOPO)化学改性的二维(2D)MXene(TiC)薄片。通过极限氧指数、UL - 94测试和锥形量热法对PLA复合材料的热性能和燃烧性能进行了表征。还对其紫外线屏蔽性能和拉伸性能进行了测试。结果表明,PLA/TiC - DOPO(3 wt%)在UL - 94测试中达到了V - 0等级。热释放峰值速率(33.7%)、总热释放量(47%)、CO生成峰值(58.8%)和总烟雾生成量(41.7%)的显著降低反映了复合材料对火灾危险的增强防护。复合材料防火安全性能的提高归因于TiC - DOPO纳米片在PLA基体中的催化、阻隔和凝聚效应的相互作用。PLA/TiC - DOPO在拉伸强度方面也提高了约9%,并且在紫外线防护评估中达到了“优秀”水平(UPF 50+)。总之,本研究为二维MXene薄片引入了一种新颖的化学改性策略,以制备多功能PLA复合材料,这些复合材料有望成为下一代可持续和防护性塑料产品的候选材料。