DOI: 10.1002/pen.70833 ISSN: 0032-3888

Structure Designed Methylpiperidine Ionic Liquids for Efficient and Recyclable PET Glycolysis

Jianhui Li, Ruoke Liu, Zichen Wang, Qi Wang, Wei Guan, Canjie Zhang, Xiaochun Chen

ABSTRACT

Developing efficient and recyclable catalysts is crucial for advancing the chemical recycling of polyethylene terephthalate (PET). In this study, a series of ionic liquids derived from methylpiperidine (MP) with adjustable structures were constructed, and their application in PET glycolysis was evaluated. By adjusting the substitution positions on the MP framework, introducing alkyl chains, and changing the coordinating metal center, the catalytic system was optimized to enhance reaction activity and durability. The optimized catalyst (1‐C 6 ‐2MP/Zn(OAc) 3 ) enabled PET to degrade rapidly, achieving a BHET yield of 93.27% within 60 min at 185°C using 4 wt% catalyst. Moreover, this system demonstrated excellent reusability, maintaining a BHET yield above 90% after 10 consecutive cycles. Kinetic analysis indicated that the reaction followed a pseudo‐first‐order model, with an apparent activation energy of 79.59 kJ mol −1 , suggesting a relatively low energy barrier. The catalyst also showed good applicability in commercial PET glycolysis. Overall, this study revealed clear structure‐performance relationships and provided guidance for the rational design of robust ionic liquid catalysts for sustainable PET recycling.