Jang Yoon-Jung, Nguyen Sam, Hillmyer Marc A
Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, United States.
J Am Chem Soc. 2024 Feb 21;146(7):4771-4782. doi: 10.1021/jacs.3c12660. Epub 2024 Feb 7.
High-density polyethylene (HDPE) is a widely used commercial plastic due to its excellent mechanical properties, chemical resistance, and water vapor barrier properties. However, less than 10% of HDPE is mechanically recycled, and the chemical recycling of HDPE is challenging due to the inherent strength of the carbon-carbon backbone bonds. Here, we report chemically recyclable linear and branched HDPE with sparse backbone ester groups synthesized from the transesterification of telechelic polyethylene macromonomers. Stoichiometrically self-balanced telechelic polyethylenes underwent transesterification polymerization to produce the PE-ester samples with high number-average molar masses of up to 111 kg/mol. Moreover, the transesterification polymerization of the telechelic polyethylenes and the multifunctional diethyl 5-(hydroxymethyl)isophthalate generated branched PE-esters. Thermal and mechanical properties of the PE-esters were comparable to those of commercial HDPE and tunable through control of the ester content in the backbone. In addition, branched PE-esters showed higher levels of melt strain hardening compared with linear versions. The PE-ester was depolymerized into telechelic macromonomers through straightforward methanolysis, and the resulting macromonomers could be effectively repolymerized to generate a high molar mass recycled PE-ester sample. This is a new and promising method for synthesizing and recycling high-molar-mass linear and branched PE-esters, which are competitive with HDPE and have easily tailorable properties.
高密度聚乙烯(HDPE)因其优异的机械性能、耐化学性和水蒸气阻隔性能而成为一种广泛使用的商业塑料。然而,只有不到10%的HDPE进行机械回收,并且由于碳-碳主链键的固有强度,HDPE的化学回收具有挑战性。在此,我们报告了通过遥爪聚乙烯大分子单体的酯交换反应合成的具有稀疏主链酯基的可化学回收的线性和支化HDPE。化学计量自平衡的遥爪聚乙烯进行酯交换聚合反应,以生产数均摩尔质量高达111 kg/mol的PE-酯样品。此外,遥爪聚乙烯与多功能5-(羟甲基)间苯二甲酸二乙酯的酯交换聚合反应生成了支化PE-酯。PE-酯的热性能和机械性能与商业HDPE相当,并且可以通过控制主链中的酯含量来调节。此外,与线性版本相比,支化PE-酯表现出更高水平的熔体应变硬化。通过直接甲醇解将PE-酯解聚为遥爪大分子单体,所得大分子单体可以有效地再聚合以生成高摩尔质量的回收PE-酯样品。这是一种合成和回收高摩尔质量线性和支化PE-酯的新的有前景的方法,这些PE-酯与HDPE具有竞争力且具有易于定制的性能。