Wurtzite CuGaO: A New Direct and Narrow Band Gap Oxide Semiconductor Applicable as a Solar Cell Absorber.

An oxide semiconductor β-CuGaO with a wurtzite-derived β-NaFeO structure has been synthesized. Structural characterization has been carried out by Rietveld analysis using XRD and SAED, and it was shown that the lattice size is very close to that of zinc oxide. The optical absorption spectrum indicat...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 136; no. 9; pp. 3378 - 3382
Autores principales: Takahisa Omata, Hiraku Nagatani, Issei Suzuki, Masao Kita, Hiroshi Yanagi, Naoki Ohashi
Formato: Artículo
Publicado: American Chemical Society 3/5/2014
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:An oxide semiconductor β-CuGaO with a wurtzite-derived β-NaFeO structure has been synthesized. Structural characterization has been carried out by Rietveld analysis using XRD and SAED, and it was shown that the lattice size is very close to that of zinc oxide. The optical absorption spectrum indicated that the band gap is 1.47 eV, which matches the band gap required to achieve the theoretical maximum conversion efficiency for a single-junction solar cell. The thermoelectromotive force indicated p-type conduction in its intrinsic state. Density functional theory calculations were performed to understand the electronic structure and optical properties of the semiconductor. These calculations indicated that β-CuGaO is a direct semiconductor and intense absorption of light occurs near the band edge. These properties render this new material promising as an absorber in solar cells.