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Program of scientific and technological cooperation between Republic of Serbia and Republic of Portugal [451-03-02328/2012-14/03]

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Publications

XPS measurements of air-exposed Cd(Zn)1xFexTe1ySey surfaces revisited

Medić-Ilić, Mirjana; Bundaleski, Nenad; Ivanović, Nenad; Teodoro, Orlando M. N. D.; Rakočević, Zlatko Lj.; Minić, Dragica M.; Romčević, Nebojša Ž.; Radisavljević, Ivana

(2020)

TY  - JOUR
AU  - Medić-Ilić, Mirjana
AU  - Bundaleski, Nenad
AU  - Ivanović, Nenad
AU  - Teodoro, Orlando M. N. D.
AU  - Rakočević, Zlatko Lj.
AU  - Minić, Dragica M.
AU  - Romčević, Nebojša Ž.
AU  - Radisavljević, Ivana
PY  - 2020
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/8910
AB  - Recently introduced model for quantitative analysis of in-depth non-uniform surfaces is applied to reexamine the X-ray Photoelectron Spectroscopy (XPS) data of Cd0.99Fe0.01Te0.97Se0.03 and Zn0.98Fe0.02Te0.91Se0.09 crystalline samples. Special attention is paid to the precise identification of phases which form the bulk-like near-surface region and the surface overlayers (the oxide layer and the layer of organic impurities), as well as the influence of surface morphology on the measurements. The obtained results fully support earlier qualitative estimations, but also provide new quantitative insight into the composition of the three investigated regions. The near-surface region of Cd0.99Fe0.01Te0.97Se0.03 and Zn0.98Fe0.02Te0.91Se0.09 samples is slightly electropositive, with cation/anion ratio 52:48 and 53:47, respectively. Model surface structures, which are fully compatible with the experimental results, comprise 0.76 nm thick CdTeO3 layer at the surface of Cd0.99Fe0.01Te0.97Se0.03 and 0.33 nm thick mixed ZnO/TeO2 oxide layer on Zn0.98Fe0.02Te0.91Se0.09. In both samples the oxide layer is only a few atomic layers thick, implying that it suppresses further rapid migration of oxygen into the bulk.
T2  - Vacuum
T1  - XPS measurements of air-exposed Cd(Zn)1xFexTe1ySey surfaces revisited
VL  - 176
SP  - 109340
DO  - 10.1016/j.vacuum.2020.109340
ER  - 
@article{
author = "Medić-Ilić, Mirjana and Bundaleski, Nenad and Ivanović, Nenad and Teodoro, Orlando M. N. D. and Rakočević, Zlatko Lj. and Minić, Dragica M. and Romčević, Nebojša Ž. and Radisavljević, Ivana",
year = "2020",
abstract = "Recently introduced model for quantitative analysis of in-depth non-uniform surfaces is applied to reexamine the X-ray Photoelectron Spectroscopy (XPS) data of Cd0.99Fe0.01Te0.97Se0.03 and Zn0.98Fe0.02Te0.91Se0.09 crystalline samples. Special attention is paid to the precise identification of phases which form the bulk-like near-surface region and the surface overlayers (the oxide layer and the layer of organic impurities), as well as the influence of surface morphology on the measurements. The obtained results fully support earlier qualitative estimations, but also provide new quantitative insight into the composition of the three investigated regions. The near-surface region of Cd0.99Fe0.01Te0.97Se0.03 and Zn0.98Fe0.02Te0.91Se0.09 samples is slightly electropositive, with cation/anion ratio 52:48 and 53:47, respectively. Model surface structures, which are fully compatible with the experimental results, comprise 0.76 nm thick CdTeO3 layer at the surface of Cd0.99Fe0.01Te0.97Se0.03 and 0.33 nm thick mixed ZnO/TeO2 oxide layer on Zn0.98Fe0.02Te0.91Se0.09. In both samples the oxide layer is only a few atomic layers thick, implying that it suppresses further rapid migration of oxygen into the bulk.",
journal = "Vacuum",
title = "XPS measurements of air-exposed Cd(Zn)1xFexTe1ySey surfaces revisited",
volume = "176",
pages = "109340",
doi = "10.1016/j.vacuum.2020.109340"
}
Medić-Ilić, M., Bundaleski, N., Ivanović, N., Teodoro, O. M. N. D., Rakočević, Z. Lj., Minić, D. M., Romčević, N. Ž.,& Radisavljević, I.. (2020). XPS measurements of air-exposed Cd(Zn)1xFexTe1ySey surfaces revisited. in Vacuum, 176, 109340.
https://doi.org/10.1016/j.vacuum.2020.109340
Medić-Ilić M, Bundaleski N, Ivanović N, Teodoro OMND, Rakočević ZL, Minić DM, Romčević NŽ, Radisavljević I. XPS measurements of air-exposed Cd(Zn)1xFexTe1ySey surfaces revisited. in Vacuum. 2020;176:109340.
doi:10.1016/j.vacuum.2020.109340 .
Medić-Ilić, Mirjana, Bundaleski, Nenad, Ivanović, Nenad, Teodoro, Orlando M. N. D., Rakočević, Zlatko Lj., Minić, Dragica M., Romčević, Nebojša Ž., Radisavljević, Ivana, "XPS measurements of air-exposed Cd(Zn)1xFexTe1ySey surfaces revisited" in Vacuum, 176 (2020):109340,
https://doi.org/10.1016/j.vacuum.2020.109340 . .
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Surface composition of Cd1-xFe(Mn)(x)Te1-ySey systems exposed to air

Bundaleski, Nenad; Radisavljević, Ivana; Trigueiro, Joao; Tolstogouzov, Alexander; Rakočević, Zlatko Lj.; Medić, Mirjana; Teodoro, Orlando M. N. D.; Romčević, Nebojša Ž.; Ivanović, Nenad

(2017)

TY  - JOUR
AU  - Bundaleski, Nenad
AU  - Radisavljević, Ivana
AU  - Trigueiro, Joao
AU  - Tolstogouzov, Alexander
AU  - Rakočević, Zlatko Lj.
AU  - Medić, Mirjana
AU  - Teodoro, Orlando M. N. D.
AU  - Romčević, Nebojša Ž.
AU  - Ivanović, Nenad
PY  - 2017
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/1422
AB  - Using X-ray induced Photoelectron Spectroscopy, Time of Flight Secondary Ion Mass Spectrometry and Atomic Force Microscopy we have investigated elemental composition, structure and oxidation process taking place at the surfaces of polycrystalline Cd0.99Fe0.01Te0.97Se0.03 and Cd0.95Mn0.05Te0.97Se0.03 systems stored in ambient conditions. The surface oxidation destroys the native CdTe matrix and provokes substantial atomic rearrangement in the first few atomic layers. The near surface region of both systems is enriched in Cd and to some extent Te-deficient, but the surface structure, morphology and the native oxide composition are all found to be considerably different. In Cd0.99Fe0.01Te0.97Se0.03 system both Fe and Se dopants diffuse into the bulk and oxidation of its surface results in formation of a thin CdTeO3 layer which covers the CdTe matrix. In Cd0.95Mn0.05Te0.97Se0.03 system oxygen-rich atmosphere triggers Mn and Se out diffusion and the nonuniform oxide layer predominantly consists of MnO and a small amount of Te-oxide which both lay underneath a thin layer of metallic Cd segregated at the top of the surface. (C) 2016 Elsevier B.V. All rights reserved.
T2  - Materials Chemistry and Physics
T1  - Surface composition of Cd1-xFe(Mn)(x)Te1-ySey systems exposed to air
VL  - 189
SP  - 35
EP  - 43
DO  - 10.1016/j.matchemphys.2016.12.029
ER  - 
@article{
author = "Bundaleski, Nenad and Radisavljević, Ivana and Trigueiro, Joao and Tolstogouzov, Alexander and Rakočević, Zlatko Lj. and Medić, Mirjana and Teodoro, Orlando M. N. D. and Romčević, Nebojša Ž. and Ivanović, Nenad",
year = "2017",
abstract = "Using X-ray induced Photoelectron Spectroscopy, Time of Flight Secondary Ion Mass Spectrometry and Atomic Force Microscopy we have investigated elemental composition, structure and oxidation process taking place at the surfaces of polycrystalline Cd0.99Fe0.01Te0.97Se0.03 and Cd0.95Mn0.05Te0.97Se0.03 systems stored in ambient conditions. The surface oxidation destroys the native CdTe matrix and provokes substantial atomic rearrangement in the first few atomic layers. The near surface region of both systems is enriched in Cd and to some extent Te-deficient, but the surface structure, morphology and the native oxide composition are all found to be considerably different. In Cd0.99Fe0.01Te0.97Se0.03 system both Fe and Se dopants diffuse into the bulk and oxidation of its surface results in formation of a thin CdTeO3 layer which covers the CdTe matrix. In Cd0.95Mn0.05Te0.97Se0.03 system oxygen-rich atmosphere triggers Mn and Se out diffusion and the nonuniform oxide layer predominantly consists of MnO and a small amount of Te-oxide which both lay underneath a thin layer of metallic Cd segregated at the top of the surface. (C) 2016 Elsevier B.V. All rights reserved.",
journal = "Materials Chemistry and Physics",
title = "Surface composition of Cd1-xFe(Mn)(x)Te1-ySey systems exposed to air",
volume = "189",
pages = "35-43",
doi = "10.1016/j.matchemphys.2016.12.029"
}
Bundaleski, N., Radisavljević, I., Trigueiro, J., Tolstogouzov, A., Rakočević, Z. Lj., Medić, M., Teodoro, O. M. N. D., Romčević, N. Ž.,& Ivanović, N.. (2017). Surface composition of Cd1-xFe(Mn)(x)Te1-ySey systems exposed to air. in Materials Chemistry and Physics, 189, 35-43.
https://doi.org/10.1016/j.matchemphys.2016.12.029
Bundaleski N, Radisavljević I, Trigueiro J, Tolstogouzov A, Rakočević ZL, Medić M, Teodoro OMND, Romčević NŽ, Ivanović N. Surface composition of Cd1-xFe(Mn)(x)Te1-ySey systems exposed to air. in Materials Chemistry and Physics. 2017;189:35-43.
doi:10.1016/j.matchemphys.2016.12.029 .
Bundaleski, Nenad, Radisavljević, Ivana, Trigueiro, Joao, Tolstogouzov, Alexander, Rakočević, Zlatko Lj., Medić, Mirjana, Teodoro, Orlando M. N. D., Romčević, Nebojša Ž., Ivanović, Nenad, "Surface composition of Cd1-xFe(Mn)(x)Te1-ySey systems exposed to air" in Materials Chemistry and Physics, 189 (2017):35-43,
https://doi.org/10.1016/j.matchemphys.2016.12.029 . .
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