Yue Liang, Su Yong-Liang, Li Mingzhe, Yu Luxia, Montgomery S Macrae, Sun Xiaohao, Finn M G, Gutekunst Will R, Ramprasad Rampi, Qi H Jerry
George W. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA, 30332, USA.
School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA, 30332, USA.
Adv Mater. 2023 Jul;35(29):e2300954. doi: 10.1002/adma.202300954. Epub 2023 Jun 3.
A depolymerizable vitrimer that allows both reprocessability and monomer recovery by a simple and scalable one-pot two-step synthesis of vitrimers from cyclic lactones is reported. Biobased δ-valerolactone with alkyl substituents (δ-lactone) has low ceiling temperature; thus, their ring-opening-polymerized aliphatic polyesters are capable of depolymerizing back to monomers. In this work, the amorphous poly(δ-lactone) is solidified into an elastomer (i.e., δ-lactone vitrimer) by a vinyl ether cross-linker with dynamic acetal linkages, giving the merits of reprocessing and healing. Thermolysis of the bulk δ-lactone vitrimer at 200 °C can recover 85-90 wt% of the material, allowing reuse without losing value and achieving a successful closed-loop life cycle. It further demonstrates that the new vitrimer has excellent properties, with the potential to serve as a biobased and sustainable replacement of conventional soft elastomers for various applications such as lenses, mold materials, soft robots, and microfluidic devices.
报道了一种可解聚的玻璃态高聚物,它通过从环状内酯简单且可扩展的一锅两步法合成玻璃态高聚物,实现了再加工性和单体回收。带有烷基取代基的生物基δ-戊内酯(δ-内酯)具有较低的平衡温度;因此,它们经开环聚合得到的脂肪族聚酯能够解聚回单体。在这项工作中,无定形聚(δ-内酯)通过带有动态缩醛键的乙烯基醚交联剂固化成弹性体(即δ-内酯玻璃态高聚物),具备了再加工和自愈的优点。本体δ-内酯玻璃态高聚物在200℃下进行热解可回收85-90wt%的材料,使其能够在不损失价值的情况下重复使用,并实现成功的闭环生命周期。这进一步表明,这种新型玻璃态高聚物具有优异的性能,有潜力作为传统软质弹性体的生物基和可持续替代品,用于各种应用,如镜片、模具材料、软体机器人和微流控装置。