Surface chemscal states of Cu2HgGeSe4 studied by X-ray photoelectron spectroscopy

The electronic structure and surface chemical states of a Cu2HgGeSe4 single crystal, grown by the Bridgman–Stockbarger method, were investigated using X-ray photoelectron spectroscopy (XPS) for pristine and Ar+ ion-irradiated surfaces. High-resolution core-level XPS spectra (Cu 2p, Hg 4f, Ge 3d, Se...

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Дата:2019
Автори: Tkach, Vira, O.Y. Khyzhun, N.M. Denysyuk, Luzhnyi Ivan Vasyliovych, Kopylova Kateryna Ihorivna
Формат: Data
Мова:Англійська
Опубліковано: DataverseUA 2019
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Онлайн доступ:https://doi.org/10.48788/DVUA/DGS7UW
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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
Luzhnyi Ivan Vasyliovych
Kopylova Kateryna Ihorivna
author2 Tkach, Vira
author_facet Tkach, Vira
Tkach, Vira
O.Y. Khyzhun
N.M. Denysyuk
Luzhnyi Ivan Vasyliovych
Kopylova Kateryna Ihorivna
author_sort Tkach, Vira
collection DSpace
description The electronic structure and surface chemical states of a Cu2HgGeSe4 single crystal, grown by the Bridgman–Stockbarger method, were investigated using X-ray photoelectron spectroscopy (XPS) for pristine and Ar+ ion-irradiated surfaces. High-resolution core-level XPS spectra (Cu 2p, Hg 4f, Ge 3d, Se 3d, Se 3p) and valence-band spectra were recorded before and after Ar+ ion sputtering to evaluate the core-level binding energies, chemical state preservation, and structural stability of the Cu2HgGeSe4 surface under ion-beam treatment.
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spelling doi-10-48788-DVUA-DGS7UW2026-08-20T02:00:02ZSurface chemscal states of Cu2HgGeSe4 studied by X-ray photoelectron spectroscopyhttps://doi.org/10.48788/DVUA/DGS7UWTkach, ViraO.Y. KhyzhunN.M. DenysyukLuzhnyi Ivan VasyliovychKopylova Kateryna IhorivnaDataverseUAThe electronic structure and surface chemical states of a Cu2HgGeSe4 single crystal, grown by the Bridgman–Stockbarger method, were investigated using X-ray photoelectron spectroscopy (XPS) for pristine and Ar+ ion-irradiated surfaces. High-resolution core-level XPS spectra (Cu 2p, Hg 4f, Ge 3d, Se 3d, Se 3p) and valence-band spectra were recorded before and after Ar+ ion sputtering to evaluate the core-level binding energies, chemical state preservation, and structural stability of the Cu2HgGeSe4 surface under ion-beam treatment.ChemistryEngineeringPhysicsSemiconductorsX-ray photoelectronic spectraElectronic structureen2019-09-01Tkach, ViraDepartment 47 of Surface Spectroscopy of Novel Materials, Frantsevich Institute for Problems of Materials ScienceData
spellingShingle Chemistry
Engineering
Physics
Semiconductors
X-ray photoelectronic spectra
Electronic structure
Tkach, Vira
O.Y. Khyzhun
N.M. Denysyuk
Luzhnyi Ivan Vasyliovych
Kopylova Kateryna Ihorivna
Surface chemscal states of Cu2HgGeSe4 studied by X-ray photoelectron spectroscopy
title Surface chemscal states of Cu2HgGeSe4 studied by X-ray photoelectron spectroscopy
title_full Surface chemscal states of Cu2HgGeSe4 studied by X-ray photoelectron spectroscopy
title_fullStr Surface chemscal states of Cu2HgGeSe4 studied by X-ray photoelectron spectroscopy
title_full_unstemmed Surface chemscal states of Cu2HgGeSe4 studied by X-ray photoelectron spectroscopy
title_short Surface chemscal states of Cu2HgGeSe4 studied by X-ray photoelectron spectroscopy
title_sort surface chemscal states of cu2hggese4 studied by x ray photoelectron spectroscopy
topic Chemistry
Engineering
Physics
Semiconductors
X-ray photoelectronic spectra
Electronic structure
url https://doi.org/10.48788/DVUA/DGS7UW
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