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Mining the Carbon Intermediates in Plastic Waste Upcycling for Constructing C-S Bond.
Kang, Hongxing; He, Dong; Turchiano, Christopher; Yan, Xingxu; Chai, Jingtong; Weed, Melanie; Elliott, Gregory I; Onofrei, David; Pan, Xiaoqing; Xiao, Xiangheng; Gu, Jing.
Afiliação
  • Kang H; Department of Chemistry and Biochemistry, San Diego State University, 5500 Campanile Drive, San Diego, California 92182, United States.
  • He D; Department of Physics, Wuhan University, Wuhan, Hubei 430072, China.
  • Turchiano C; Department of Chemistry and Biochemistry, San Diego State University, 5500 Campanile Drive, San Diego, California 92182, United States.
  • Yan X; Department of Materials Science and Engineering, University of California, Irvine, California 92697, United States.
  • Chai J; Department of Chemistry and Biochemistry, San Diego State University, 5500 Campanile Drive, San Diego, California 92182, United States.
  • Weed M; Department of Chemistry and Biochemistry, San Diego State University, 5500 Campanile Drive, San Diego, California 92182, United States.
  • Elliott GI; Department of Chemistry and Biochemistry, San Diego State University, 5500 Campanile Drive, San Diego, California 92182, United States.
  • Onofrei D; Department of Chemistry and Biochemistry, San Diego State University, 5500 Campanile Drive, San Diego, California 92182, United States.
  • Pan X; Department of Materials Science and Engineering, University of California, Irvine, California 92697, United States.
  • Xiao X; Department of Physics and Astronomy, University of California, Irvine Irvine, California 92697, United States.
  • Gu J; Department of Physics, Wuhan University, Wuhan, Hubei 430072, China.
J Am Chem Soc ; 146(27): 18639-18649, 2024 Jul 10.
Article em En | MEDLINE | ID: mdl-38916586
ABSTRACT
Postconsumer plastics are generally perceived as valueless with only a small portion of plastic waste being closed-loop recycled into similar products while most of them are discarded in landfills. Depositing plastic waste in landfills not only harms the environment but also signifies a substantial economic loss. Alternatively, constructing value-added chemical feedstocks via mining the waste-derived intermediate species as a carbon (C) source under mild electrochemical conditions is a sustainable strategy to realize the circular economy. This proof-of-concept work provides an attractive "turning trash to treasure" strategy by integrating electrocatalytic polyethylene terephthalate (PET) plastic upcycling with a chemical C-S coupling reaction to synthesize organosulfur compounds, hydroxymethanesulfonate (HMS). HMS can be produced efficiently (Faradaic efficiency, FE of ∼70%) via deliberately capturing electrophilic intermediates generated in the PET monomer (ethylene glycol, EG) upcycling process, followed by coupling them with nucleophilic sulfur (S) species (i.e., SO32- and HSO3-). Unlike many previous studies conducted under alkaline conditions, PET upcycling was performed over an amorphous MnO2 catalyst under near-neutral conditions, allowing for the stabilization of electrophilic intermediates. The compatibility of this strategy was further investigated by employing biomass-derived compounds as substrates. Moreover, comparable HMS yields can be achieved with real-world PET plastics, showing its enormous potential in practical application. Lastly, Density function theory (DFT) calculation reveals that the C-C cleavage step of EG is the rate-determining step (RDS), and amorphous MnO2 significantly decreases the energy barriers for both RDS and C-S coupling when compared to the crystalline counterpart.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Estados Unidos