0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Sign in to save

Highly efficient recycling of polyester wastes to diols using Ru and Mo dual-atom catalyst

Figshare 2024 42 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Minhao Tang, Ji Shen, Yiding Wang, Yanfei Zhao, Tao Gan, Xusheng Zheng, Dingsheng Wang, Buxing Han, Zhimin Liu

Summary

Researchers developed a ruthenium-molybdenum dual-atom catalyst on titanium dioxide that converts polyester plastic waste into valuable diol chemicals with 100% selectivity under mild conditions, with distinct atomic sites driving hydrolysis and hydrogenation while preventing unwanted side reactions, offering a promising circular economy pathway for polyester recycling.

The chemical recycling of polyester wastes is of great significance for sustainable development, which also provides an opportunity to access various oxygen-containing chemicals, but generally suffers from low efficiency or separation difficulty. Herein, we report anatase TiO2 supported Ru and Mo dual-atom catalysts, which achieve transformation of various polyesters into corresponding diols in 100% selectivity via hydrolysis and subsequent hydrogenation in water under mild conditions (e.g., 160 °C, 4 MPa). Compelling evidence is provided for the coexistence of Ru single-atom and O-bridged Ru and Mo dual-atom sites within this kind of catalysts. It is verified that the Ru single-atom sites activate H2 for hydrogenation of carboxylic acid derived from polyester hydrolysis, and the O-bridged Ru and Mo dual-atom sites suppress hydrodeoxygenation of the resultant alcohols due to a high reaction energy barrier. Notably, this kind of dual-atom catalysts can be regenerated with high activity and stability. This work presents an effective way to reconstruct polyester wastes into valuable diols, which may have promising application potential.

Share this paper