Efficient photoreforming of plastic waste using a high-entropy oxide catalyst
arXiv:2412.00496 · doi:10.1016/j.jcat.2024.115808
Abstract
Simultaneous catalytic hydrogen (H2) production and plastic waste degradation under light, known as photoreforming, is a novel approach to green fuel production and efficient waste management. Here, we use a high-entropy oxide (HEO), a new family of catalysts with five or more principal cations in their structure, for plastic degradation and simultaneous H2 production. The HEO shows higher activity than that of P25 TiO2, a benchmark photocatalyst, for the degradation of polyethylene terephthalate (PET) plastics in water. Several valuable products are produced by photoreforming of PET bottles and microplastics including H2, terephthalate, ethylene glycol and formic acid. The high activity is attributed to the diverse existence of several cations in the HEO lattice, lattice defects, and appropriate charge carrier lifetime. These findings suggest that HEOs possess high potential as new catalysts for concurrent plastic waste conversion and clean H2 production.
References in corpus (8)
- High entropy oxides: An emerging prospect for magnetic rare earth - transition metal perovskites
- Defective high-entropy oxide photocatalyst with high activity for CO2 conversion
- Significant CO2 photoreduction on a high-entropy oxynitride
- Visible-light photocatalytic oxygen production on a high-entropy oxide by multiple-heterojunction introduction
- Brookite TiO2 as an active photocatalyst for photoconversion of plastic wastes to acetic acid and simultaneous hydrogen production: Comparison with anatase and rutile
- Understanding high photocatalytic activity of the TiO2 high-pressure columbite phase by experiments and first-principles calculations
- Impact of high-pressure columbite phase of titanium dioxide (TiO2) on catalytic photoconversion of plastic waste and Simultaneous hydrogen (H2) production
- Impact of high-pressure torsion on hydrogen production from photodegradation of polypropylene plastic wastes