Abstract
Phenol is a commodity chemical frequently used in the manufacturing of resins, pharmaceuticals, and polymers. Yet, its industrial production from cumene requires harsh oxidative conditions followed by the Hock rearrangement. Polystyrene (PS) is a widely manufactured commodity polymer; however, it is among the least recycled plastics. Intriguingly, it is composed of contiguous cumene repeats that could serve as a phenol source, enhancing its value as a waste material. In this work, we leverage the similarity between cumene and PS to drive phenol production via a mild photooxidative HAT mechanism. Using Eosin Y under blue light irradiation and atmospheric pressure of oxygen, commercial PS resin was converted into hydroperoxyl PS. Subsequent acid-catalyzed Hock rearrangement afforded up to 21% yield of phenol. The photooxidation system was successfully applied to 8 post-consumer PS plastics, achieving phenol yields up to 23%, comparable to those of the current industrial Hock process. Our method introduces a mild catalytic strategy for converting post-consumer PS into phenol, offering a potential pathway for PS waste valorization.
| Original language | English (US) |
|---|---|
| Pages (from-to) | 12135-12140 |
| Number of pages | 6 |
| Journal | ACS Catalysis |
| Volume | 16 |
| Issue number | 13 |
| DOIs | |
| State | Published - Jul 3 2026 |
All Science Journal Classification (ASJC) codes
- Catalysis
- General Chemistry
Keywords
- Hock process
- hydrogen atom transfer
- phenol
- photooxidative degradation
- plastic waste
- polymer upcycling
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