Yiwei Rao, Shuo Wen, Fangxin Zhao, Shiyu Shen, Chenglong Yu, Yanqing Peng, Yichao Lin, Changguang Yao
Upcycling waste polyesters into valuable materials to address plastic pollution and reduce the waste of carbon resources is a necessary and highly challenging task. Herein, we present an "aminolysis-dehydrogenative polymerization" strategy that enables one-pot upcycling of polycaprolactone (PCL) into polyamides (PAs) and poly-(ester amide)-s (PEAs) in high yields with controllable ester-to-amide ratios and tunable functional moieties. Detailed mechanism analysis elucidates that the process involves four kinds of reactions: aminolysis, dehydrogenative cross-coupling of amine and alcohol, transesterification, and dehydrogenative self-coupling of alcohol. Significantly, the upcycling of post-consumer PCL into PAs and PEAs is also achieved, demonstrating a strong industrial application potential of this approach.