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In Situ Growth of CuBi 2 O 4 /Bi 2 O 3 Z-Scheme Heterostructures for Bifunctional Photocatalytic Applications.

Sneha MondalLokanath PatraPugazhendi IlanchezhiyanBernaurdshaw NeppolianRavindra PandeyVattikondala Ganesh
Published in: Langmuir : the ACS journal of surfaces and colloids (2024)
In this study, we present an in situ solvothermal approach for synthesizing a highly efficient bifunctional CuBi 2 O 4 /Bi 2 O 3 composite catalyst for applications in H 2 production and the removal of organic pollutants. Various characterization techniques, including XRD, UV-vis DRS, SEM, TEM, and EIS, were used to characterize the prepared catalyst. Density functional theory calculations confirmed a Z-scheme mechanism, revealing the charge transfer mechanism from the Bi 2 O 3 surface to the CuBi 2 O 4 surface. The composite exhibited a photocurrent of 2.83 × 10 4 A/cm 2 and a hydrogen production rate of 526 μmolg -1 h -1 under natural sunlight. Moreover, the catalyst demonstrated efficient degradation of RhB up to 58% in 120 min under 50 W LED illumination. Additionally, multiple recycling tests confirmed its high stability and recyclability, making it a promising candidate for various applications in the field of photocatalysis.
Keyphrases
  • highly efficient
  • density functional theory
  • visible light
  • molecular dynamics
  • room temperature
  • molecular dynamics simulations
  • monte carlo