Influence of anionic substitution on the electrolyte electroreflectance study of band edge transitions in single crystal Cu2ZnSn(S xSe1-x)4 solid solutions
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2023-09-13 15:35
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LEVCENKO, Sergiu, DUMCHENKO, Dumitru, WANG, Yiping, HUANG, Ying-Sheng, HO, Ching-Hwa, ARUSHANOV, Ernest, TEZLEVAN, Victor, TIONG, Kwong-Kaw. Influence of anionic substitution on the electrolyte electroreflectance study of band edge transitions in single crystal Cu2ZnSn(S xSe1-x)4 solid solutions. In: Optical Materials, 2012, vol. 34, pp. 1362-1365. ISSN 0925-3467. DOI: https://doi.org/10.1016/j.optmat.2012.02.028
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Optical Materials
Volumul 34 / 2012 / ISSN 0925-3467

Influence of anionic substitution on the electrolyte electroreflectance study of band edge transitions in single crystal Cu2ZnSn(S xSe1-x)4 solid solutions

DOI:https://doi.org/10.1016/j.optmat.2012.02.028

Pag. 1362-1365

Levcenko Sergiu12, Dumchenko Dumitru12, Wang Yiping1, Huang Ying-Sheng1, Ho Ching-Hwa1, Arushanov Ernest2, Tezlevan Victor2, Tiong Kwong-Kaw3
 
1 National Taiwan University of Science and Technology, Taipei,
2 Institute of Applied Physics, Academy of Sciences of Moldova,
3 National Taiwan Ocean University, Keelung
 
 
Disponibil în IBN: 31 august 2023


Rezumat

Single crystals of Cu2ZnSn(SxSe1-x4 (CZTSSe) solid solutions were grown by chemical vapor transport technique using iodine trichloride as a transport agent. As confirmed by X-ray investigations, the as-grown CZTSSe solid solutions are single phase and crystallized in kesterite structure. The lattice parameters of CZTSSe were determined and the S contents of the obtained crystals were estimated by Vegard's law. The composition dependent band gaps of CZTSSe solid solutions were studied by electrolyte electroreflectance (EER) measurements at room temperature. From a detailed lineshape fit of the EER spectra, the band gaps of CZTSSe were determined accurately and were found to decrease almost linearly with the increase of Se content, which agreed well with the recent theoretical first-principle calculations by S. Chen, A. Walsh, J.H. Yang, X.G. Gong, L. Sun, P. X. Yang, J.H. Chu, S.H. Wei, Phys. Rev. B 83 (2011) 125201 (5pp). 

Cuvinte-cheie
optical properties, optical spectroscopy, Semiconductors