Analysis of Ag2CdSnS4 Compound by X-ray photoelectron spectroscopy

Electronic structure of Ag2CdSnS4 single crystal grown by the horizontal gradient freeze technique.For the crystal under consideration, X-ray photoelectron core-level and valence-band spectra for pristine measured. The present X-ray photoelectron spectroscopy (XPS) results indicate that Ag2CdSnS4 s...

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Дата:2014
Автори: Tkach, Vira, O.Y. Khyzhun, N.M. Denysyuk
Формат: Data
Мова:Англійська
Опубліковано: DataverseUA 2014
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Онлайн доступ:https://doi.org/10.48788/DVUA/9EMD4Y
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Назва журналу:Open Data Repository of the National Academy of Sciences of Ukraine

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Open Data Repository of the National Academy of Sciences of Ukraine
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author Tkach, Vira
O.Y. Khyzhun
N.M. Denysyuk
author2 Tkach, Vira
author_facet Tkach, Vira
Tkach, Vira
O.Y. Khyzhun
N.M. Denysyuk
author_sort Tkach, Vira
collection DSpace
description Electronic structure of Ag2CdSnS4 single crystal grown by the horizontal gradient freeze technique.For the crystal under consideration, X-ray photoelectron core-level and valence-band spectra for pristine measured. The present X-ray photoelectron spectroscopy (XPS) results indicate that Ag2CdSnS4 single crystal surface is very rigid, with respect to Ar+ ion-irradiation. For the Ag2CdSnS4 compound, the X-ray emission bands representing the energy distribution of the valence Ag 3d, Cd 3d and S 2p states were recorded and compared on a common energy scale with the XPS valence-band spectrum. Results of such a comparison indicate that the S 2p states contribute predominantly in the upper and central portions of the valence band of the Ag2CdSnS4 single crystal. In addition, our data reveal that the Ag 4d and Cd 4d states contribute mainly in the central portion and at the bottom of the valence band, respectively.
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spelling doi-10-48788-DVUA-9EMD4Y2026-08-21T02:00:01ZAnalysis of Ag2CdSnS4 Compound by X-ray photoelectron spectroscopyhttps://doi.org/10.48788/DVUA/9EMD4YTkach, ViraO.Y. KhyzhunN.M. DenysyukDataverseUAElectronic structure of Ag2CdSnS4 single crystal grown by the horizontal gradient freeze technique.For the crystal under consideration, X-ray photoelectron core-level and valence-band spectra for pristine measured. The present X-ray photoelectron spectroscopy (XPS) results indicate that Ag2CdSnS4 single crystal surface is very rigid, with respect to Ar+ ion-irradiation. For the Ag2CdSnS4 compound, the X-ray emission bands representing the energy distribution of the valence Ag 3d, Cd 3d and S 2p states were recorded and compared on a common energy scale with the XPS valence-band spectrum. Results of such a comparison indicate that the S 2p states contribute predominantly in the upper and central portions of the valence band of the Ag2CdSnS4 single crystal. In addition, our data reveal that the Ag 4d and Cd 4d states contribute mainly in the central portion and at the bottom of the valence band, respectively.ChemistryPhysicsSemiconductorsX-ray photoelectronic spectraElectronic structureen2014-05-10Tkach, ViraUHV ANALYSIS SYSTEM CentreData
spellingShingle Chemistry
Physics
Semiconductors
X-ray photoelectronic spectra
Electronic structure
Tkach, Vira
O.Y. Khyzhun
N.M. Denysyuk
Analysis of Ag2CdSnS4 Compound by X-ray photoelectron spectroscopy
title Analysis of Ag2CdSnS4 Compound by X-ray photoelectron spectroscopy
title_full Analysis of Ag2CdSnS4 Compound by X-ray photoelectron spectroscopy
title_fullStr Analysis of Ag2CdSnS4 Compound by X-ray photoelectron spectroscopy
title_full_unstemmed Analysis of Ag2CdSnS4 Compound by X-ray photoelectron spectroscopy
title_short Analysis of Ag2CdSnS4 Compound by X-ray photoelectron spectroscopy
title_sort analysis of ag2cdsns4 compound by x ray photoelectron spectroscopy
topic Chemistry
Physics
Semiconductors
X-ray photoelectronic spectra
Electronic structure
url https://doi.org/10.48788/DVUA/9EMD4Y
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AT oykhyzhun analysisofag2cdsns4compoundbyxrayphotoelectronspectroscopy
AT nmdenysyuk analysisofag2cdsns4compoundbyxrayphotoelectronspectroscopy