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Boosting photocatalytic hydrogen production by creating isotype heterojunctions and single-atom active sites in highly-crystallized carbon nitride

  • Shaohua Shen
  • , Jie Chen
  • , Yiqing Wang
  • , Chung Li Dong
  • , Fanqi Meng
  • , Qinghua Zhang
  • , Yiliang Huangfu
  • , Zhi Lin
  • , Yu Cheng Huang
  • , Yanrui Li
  • , Mingtao Li
  • , Lin Gu
  • Xi'an Jiaotong University
  • Tamkang University
  • CAS - Institute of Physics

Research output: Contribution to journalArticlepeer-review

74 Scopus citations

Abstract

Carbon nitride-based photocatalysts hold an enormous potential in producing hydrogen. A strategy to simultaneously create isotype heterojunctions and active sites in highly-crystallized carbon nitride is anticipated to significantly boost the photocatalytic activity, but is yet to be realized. Herein, we find that cobalt salt added in the ionothermal synthesis can promote the phase transition of heptazine-based crystalline carbon nitride (CCN) to triazine-based poly(triazine imide) (PTI), rendering the creation of single-atom cobalt coordinated isotype CCN/PTI heterojunction. Co-CCN/PTI exhibits an appreciable apparent quantum yield of 20.88% at 425 nm for photocatalytic hydrogen production with a rate achieving 3538 μmol h−1 g−1 (λ > 420 nm), which is 4.8 times that of CCN and 27.6 times that of PTI. The high photocatalytic activity is attributed to the Type II isotype highly-crystallized CCN/PTI heterojunction for promoting charge carrier migration, and the single-atom Co sites for accelerating surface oxidation reaction.

Original languageEnglish
Pages (from-to)520-528
Number of pages9
JournalScience Bulletin
Volume67
Issue number5
DOIs
StatePublished - 15 Mar 2022

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • Crystalline carbon nitride
  • Isotype heterojunctions
  • Photocatalytic hydrogen production
  • Poly(triazine imide)
  • Single-atom cobalt

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