Publications by authors named "Shen-Yuan Bao"

Evolutionary algorithm-aided density functional theory calculations were utilized to determine the stable adsorption structures of HO at ZnO(112̄0) extensively under different coverages. By decomposing the adsorption energetics, we illustrate that HO dissociation to a large extent is actually hampered by the barrier for induced distortion of the ZnO surface, and once the surface becomes less difficult to be distorted it will exhibit higher hydrophilicity or even superhydrophilicity. Specifically, photo-stimulation modelling suggests that the surface Zn-O bonds can be weakened by photo-excitation, and the layer of fully dissociated HO can be then facilitated to form.

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Synopsis of recent research by authors named "Shen-Yuan Bao"

  • - Shen-Yuan Bao's recent research focuses on the interaction between water molecules and the ZnO(112̄0) surface, utilizing density functional theory calculations enhanced by evolutionary algorithms to explore stable adsorption structures of water.
  • - The study reveals that the dissociation of water molecules is significantly hindered due to the energy barrier posed by the distortion of the ZnO surface, and that reducing this barrier can lead to improved hydrophilicity of the surface.
  • - Findings indicate that photo-excitation can weaken Zn-O bonds, facilitating the formation of a fully dissociated water layer on the surface, which has implications for enhancing the hydrophilic properties of ZnO materials.