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Hydrophobic CuO Nanosheets Functionalized with Organic Adsorbates.

Yulian HeZachary S FishmanKe R YangBrandon OrtizChaolun LiuJulia GoldsamtVictor S BatistaLisa D Pfefferle
Published in: Journal of the American Chemical Society (2018)
A new class of hydrophobic CuO nanosheets is introduced by functionalization of the cupric oxide surface with p-xylene, toluene, hexane, methylcyclohexane, and chlorobenzene. The resulting nanosheets exhibit a wide range of contact angles from 146° (p-xylene) to 27° (chlorobenzene) due to significant changes in surface composition induced by functionalization, as revealed by XPS and ATR-FTIR spectroscopies and computational modeling. Aromatic adsorbates are stable even up to 250-350 °C since they covalently bind to the surface as alkoxides, upon reaction with the surface as shown by DFT calculations and FTIR and 1H NMR spectroscopy. The resulting hydrophobicity correlates with H2 temperature-programmed reduction (H2-TPR) stability, which therefore provides a practical gauge of hydrophobicity.
Keyphrases
  • quantum dots
  • reduced graphene oxide
  • density functional theory
  • highly efficient
  • molecular dynamics
  • oxidative stress
  • dna damage
  • transition metal
  • high resolution
  • ultrasound guided