Nguyen Darien K, Schyns Zoé O G, Korley LaShanda T J, Vlachos Dionisios G
Department of Chemical and Biomolecular Engineering, University of Delaware Newark Delaware 19716 USA
Center for Plastics Innovation, University of Delaware Newark Delaware 19716 USA.
Green Chem. 2025 Sep 16. doi: 10.1039/d5gc02799c.
Controllable functionalization of polyethylene (PE) waste could generate new polymeric materials that are generally difficult to manufacture sustainably while also addressing the growing plastics waste problem. However, these modifications remain challenging due to the inherent stability of the PE backbone. Non-thermal atmospheric plasma enables molecular activation under mild conditions while utilizing renewable energy but is primarily employed for surface modification, as plasmas do not penetrate the bulk of materials. Herein, controllable bulk oxidative functionalization of PE wax (PEW) and low-density PE (LDPE) of varying molecular weights was achieved, with up to 6 mol% oxygen incorporation, by manipulating melt viscosity. This functionalization was accomplished either through temperature adjustment or by introducing a melt viscosity modifier, removable simple extraction methods, to reduce LDPE viscosity, enhance diffusion and chain mobility, and enable bulk oxidation. The oxidized LDPE induces compatibilization in blends of poly(lactic acid) (PLA) and LDPE with improved interfacial adhesion and mechanical properties, such as a 70% increase in elongation-at-break values the control. These findings pave the way for catalyst-free upcycling of direct plastics waste and plastics waste-derived products, enabling the creation of high-value products across various markets.
聚乙烯(PE)废料的可控功能化能够生成新型聚合物材料,这些材料通常难以可持续制造,同时也能解决日益严重的塑料废料问题。然而,由于PE主链的固有稳定性,这些改性仍然具有挑战性。非热大气等离子体能够在温和条件下实现分子活化,同时利用可再生能源,但主要用于表面改性,因为等离子体无法穿透材料本体。在此,通过控制熔体粘度,实现了对不同分子量的PE蜡(PEW)和低密度PE(LDPE)的可控本体氧化功能化,氧掺入量高达6摩尔%。这种功能化可以通过调节温度或引入熔体粘度调节剂(可通过简单的萃取方法去除)来降低LDPE粘度、增强扩散和链迁移率,并实现本体氧化。氧化后的LDPE在聚乳酸(PLA)和LDPE的共混物中引发增容作用,改善了界面粘附性和机械性能,例如断裂伸长率值比对照提高了70%。这些发现为直接塑料废料和塑料废料衍生产品的无催化剂升级回收铺平了道路,能够在各个市场创造高价值产品。