4.7 Article

AACVD Synthesis and Characterization of Iron and Copper Oxides Modified ZnO Structured Films

Journal

NANOMATERIALS
Volume 10, Issue 3, Pages -

Publisher

MDPI
DOI: 10.3390/nano10030471

Keywords

AACVD; zinc oxide; iron oxide; copper oxide; structured films; water contact angle

Funding

  1. Czech Science Foundation (GACR) [20-20123S]
  2. Becas Chile (CONICYT)
  3. Ramon y Cajal programme
  4. MEYS CR [LM2018110]

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Non-modified (ZnO) and modified (Fe2O3@ZnO and CuO@ZnO) structured films are deposited via aerosol assisted chemical vapor deposition. The surface modification of ZnO with iron or copper oxides is achieved in a second aerosol assisted chemical vapor deposition step and the characterization of morphology, structure, and surface of these new structured films is discussed. X-ray photoelectron spectrometry and X-ray diffraction corroborate the formation of ZnO, Fe2O3, and CuO and the electron microscopy images show the morphological and crystalline characteristics of these structured films. Static water contact angle measurements for these structured films indicate hydrophobic behavior with the modified structures showing higher contact angles compared to the non-modified films. Overall, results show that the modification of ZnO with iron or copper oxides enhances the hydrophobic behavior of the surface, increasing the contact angle of the water drops at the non-modified ZnO structures from 122 degrees to 135 degrees and 145 degrees for Fe2O3@ZnO and CuO@ZnO, respectively. This is attributed to the different surface properties of the films including the morphology and chemical composition.

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