Optical, structural, and morphological characterization of cadmium carbonate thin films by CBD two formulations

The purpose of this paper is establishing two stables and originals formulations routes for the synthesis of cadmium carbonate (CdCO3) by chemical bath deposition (CBD) and the analysis of the physical properties of the synthesized materials, such as optical, chemical, structural and morphological p...

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Bibliographic Details
Published inOptical materials Vol. 109; p. 110295
Main Authors Ruvalcaba-Manzo, S.G., Castillo, S.J., Ochoa-Landín, R., Flores-Acosta, M., Ramírez-Bon, R.
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.11.2020
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Summary:The purpose of this paper is establishing two stables and originals formulations routes for the synthesis of cadmium carbonate (CdCO3) by chemical bath deposition (CBD) and the analysis of the physical properties of the synthesized materials, such as optical, chemical, structural and morphological properties by using characterization techniques such as optical absorption by diffuse reflectance, X-ray Diffraction (XRD), X-ray Photoelectron Spectroscopy (XPS), Scanning electron microscopy (SEM) and Raman. The direct bandgaps values related to direct transitions of electrons from the valence band to the conduction band of CdCO3 thin films are 3.81 and 3.79 eV. By X-ray diffraction (XRD) technique was determined as a hexagonal structure with space group R-3c (167) for CdCO3 thin films. Finally, the expected chemical composition of CdCO3 thin films was proving by the low- and high-resolution X-ray Photoelectron Spectroscopy (XPS) spectra. The Raman spectra show five vibrational characteristics frequencies of CdCO3 and evidencing that the synthesized thin films correspond to CdCO3. [Display omitted] •Successfully obtention of two originals formulations for CdCO3 thin films synthesized by CBD method.•Optical and XRD results indicate a direct bandgap of 3.81 and 3.79 eV, and a hexagonal polycrystalline structure for CdCO3 thin films.•The morphological study revealed rods and spherical agglomerated formations of 10 and 1 μm, respectively.•High definition XPS spectra confirm the chemical composition of the CdCO3 thin films-.•The Raman spectra confirm the composition of CdCO3 thin films by five vibrational characteristical frequencies of CdCO3.
ISSN:0925-3467
1873-1252
DOI:10.1016/j.optmat.2020.110295