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Photochemically engineered ultra-stable 1T MoS 2 by flow synthesis.

Wanqing ChenManas Ranjan PandaMeysam Sharifzadeh MirsherkalooKourosh Kalantar-ZadehMainak Majumder
Published in: Chemical communications (Cambridge, England) (2022)
A novel synthesis method for stable conversion of 2H to 1T MoS 2 is developed by photoirradiation of ammonium intercalated 2H-MoS 2 . The synthesized 1T phase in the final product showed excellent long-term stability, and orders of magnitude improvement in electrical conductivity. The denser active sites in the synthesized material contributed to an enhanced HER activity. The methodology can be translated to a continuous flow process paving the way for the large-scale production of 1T MoS 2 .
Keyphrases
  • quantum dots
  • room temperature
  • reduced graphene oxide
  • transition metal
  • visible light
  • highly efficient
  • ionic liquid
  • high resolution