Zhejiang Ruico Advanced Material Co., Ltd., Huzhou 313018, Zhejiang Province, China.
Beijing University of Chemical Technology, 100029 Beijing, China.
Int J Biol Macromol. 2023 Jul 15;243:125050. doi: 10.1016/j.ijbiomac.2023.125050. Epub 2023 May 29.
The large-scale application of ecofriendly polymeric materials has become a key focus of scientific research with the trend toward sustainable development. Mechanical properties and fire safety are two critical considerations of biopolymers for large-scale applications. Polylactic acid (PLA) is a flammable, melt-drop carrying, and strong but brittle polymer. Hence, it is essential to achieve both flame retardancy and mechanical enhancement to improve safety and broaden its application. This study reviews the recent research on the flame retardant functionalization and mechanical reinforcement of PLA. It classifies PLA according to the type of the flame retardant strategy employed, such as surface-modified fibers, modified nano/micro fillers, small-molecule and macromolecular flame retardants, flame retardants with fibers or polymers, and chain extension or crosslinking with other flame retardants. The functionalization strategies and main parameters of the modified PLA systems are summarized and analyzed. This study summarizes the latest advances in the fields of flame retardancy and mechanical reinforcement of PLA.
随着可持续发展趋势的到来,环保型聚合物材料的大规模应用已成为科学研究的重点。对于大规模应用而言,生物聚合物的两个关键考虑因素是机械性能和消防安全。聚乳酸(PLA)是一种易燃、熔融滴落、强但易碎的聚合物。因此,为了提高安全性并拓宽其应用范围,必须实现阻燃和机械增强。本研究综述了 PLA 的阻燃功能化和机械增强的最新研究进展。它根据所采用的阻燃策略的类型对 PLA 进行分类,例如表面改性纤维、改性纳米/微填料、小分子和大分子阻燃剂、具有纤维或聚合物的阻燃剂以及与其他阻燃剂的链延伸或交联。总结和分析了改性 PLA 体系的功能化策略和主要参数。本研究总结了 PLA 阻燃和机械增强领域的最新进展。