Structural Studies of Mercury-Modified Amorphous Films of the Selenium-Antimony System

Authors

  • V.M. Rubish Institute for Information Recording of NAS of Ukraine, Uzhhorod, Ukraine; Uzhgorod National University, Uzhgorod, Ukraine
  • M.M. Pop Institute for Information Recording of NAS of Ukraine, Uzhhorod, Ukraine; Uzhgorod National University, Uzhgorod, Ukraine
  • R.P. Pisak Institute for Information Recording of NAS of Ukraine, Uzhhorod, Ukraine
  • L.I. Makar Institute for Information Recording of NAS of Ukraine, Uzhhorod, Ukraine
  • M.O. Durkot Institute for Information Recording of NAS of Ukraine, Uzhhorod, Ukraine
  • A.M. Solomon Institute of Electron Physics, Ukranian National Academy of Science, Uzhhorod
  • O.O. Spesyvykh Uzhgorod National University, Uzhgorod, Ukraine
  • V.V. Boryk Vasyl Stefanyk Precarpathian National University, Ivano-Frankivsk, Ukraine
  • R.O. Dzumedzey Vasyl Stefanyk Precarpathian National University, Ivano-Frankivsk, Ukraine

DOI:

https://doi.org/10.15330/pcss.25.1.164-169

Keywords:

chalcogenide amorphous films, X-ray diffractometry, Raman spectroscopy, structure

Abstract

The structure of mercury-modified amorphous films of the Se-Sb system was studied using the methods of X-ray diffractometry and Raman spectroscopy. It was ascertained that the structure of the phase that formed in the amorphous matrix of the films after their exposure in mercury vapor corresponds to the structure of crystalline mercury selenide in cubic modification.

The structure of nominally pure and mercury-modified amorphous Se100Sbx films (x = 3, 5, 7, 9) was investigated using X-ray diffractometry and Raman spectroscopy. It is shown that the matrix of nominally pure films is built mainly by elements of Se8 rings and Sen helical chains and contains a certain number of SbSe3/2 structural groups. Exposure of the films in mercury vapor leads to formation of mercury selenide (HgSe) crystalline inclusions in the cubic modification in their near-surface layers, as well as to the activation of the process of formation and growth of Se crystalline inclusions of the trigonal modification in the film bulk.

References

V.M. Rubish, V.K. Kyrylenko, M.O. Durkot, V.V. Boryk, R.O. Dzumedzey, I.M. Yurkin, M.M. Pop, Yu.M. Myslo, The influence of mercury vapor on the electrical resistance of chalcogenide amorphous films, Physics and Chemistry of Solid State, 24(2) 335 (2023); https://doi.org/10.15330/pcss.24.2.335-340.

V.K. Kyrylenko, V.M. Rubish, L.Nykyruy, R.P. Pisak, M.O. Durkot, Z.R. Zapukhlyak, V.I. Fedelesh, V.N. Uvarov, Electrical properties of mercury modified amorphous selenium, Mat. Intern. Meeting «Clusters and nanostructured materials (CNM-6)», Uzhgorod, Ukraine, 138 (2020).

V.M. Rubish, V.K. Kyrylenko, M.O. Durkot, L.I. Makar, A.A. Tarnai, L. Nykyrui, The impact of mercury vapor on the electric properties of amorphous selenium films; Proceedings of the 4th International Scientific conference “Actual problems of fundamental science”, Lutsk, 96(2021).

V.M. Rubish, L.I. Makar, V.K. Kyrylenko, L.I. Nykyruy, Z.R. Zapukhlyak, B.V. Popovich, G.V. Rizak, A.A. Spesivykh, Electrical properties of amorphous selenium films modified by mercury vapor, Materials of the school-conference of young scientists "Modern materials science: physics, chemistry, technologies, Uzhgorod, Ukraine, 188 (2021).

V.M. Rubish, V.K. Kyrylenko, M.O. Durkot, L.I. Makar, R.P. Pisak, T.I. Yasinko, L.I. Nykyruy, Z.R. Zapukhlyak, The influence of mercury concentration and temperature on the electrical resistance of Hg modified amorphous films, Proc. XVII Freik Intern. Conf. «Physics and technology of thin films and nanosystems (ICPTTFN-XVIII», Ivano-Frankivsk, Ukraine, 190 (2021).

V.M. Rubish, V.K. Kyrylenko, L.I. Makar, M.O. Durkot, M.M. Pop, Electrical conductivity of mercury-modified amorphous films of selenium-tellurium system, Materials collection of the jubilee conference “30 years of the Institute of Electron Physics, National Academy of Sciences of Ukraine”, Uzhgorod, Ukraine, 222 (2022).

V.K. Kyrylenko, M.O. Durkot, Effect of mercury vapor on electrical resistance of amorphous Se100-хTeх films, Data Recording, Storage and Processing: collection of science papers based on the materials of the Annual Final Scientific Conference. К.: Institute for information recording of NAS of Ukraine, 45 (2022).

V.M. Rubish, V.K. Kyrylenko, L.I. Nykyrui, R.O.Dzumedzey, V.V. Boryk, M.M.Pop, Effect of mercury vapor on the electrical resistance of amorphous films of the Se-As and Se-Sb systems, Proceedings of the IX Ukrainian Scientific Conference on Semiconductor Physics, Uzhgorod, Ukraine, 356 (2023).

M.O. Durkot, S.A. Kostiukevych, K.V. Kostiukevych, L.I. Makar, R.P. Pisak, V.M. Rubish, I.M. Yurkin, T.I. Yasinko, Structure and electrical conductivity of mercury-modified amorphous films of the selenium-tellurium system. Proceedings of the IX Ukrainian Scientific Conference on Semiconductor Physics. Uzhgorod, Ukraine, 368 (2023).

V.K. Kyrylenko, M.M. Pop, V.M. Rubish, Study of dependences of electrical resistance of arsenic and antimony selenides amorphous films on exposure time in mercury vapor, Data Recording, Storage and Processing: collection of science papers based on the materials of the Annual Final Scientific Conference. К.: Institute for information recording of NAS of Ukraine, 31 (2023).

L.I. Makar, S. Mudry, L. Nykyruy, R.P. Pisak, V.M. Rubish, I. Shtablavyi, S.A. Bespalov, A.M. Solomon, R.S. Yavorskyi, Formation of HgSe nanocrystalline inclusions in the matrix of amorphous selenium films, Mat. Intern. Meeting «Clusters and nanostructured materials (CNM-6)», Uzhgorod, Ukraine, 267 (2020).

A.M. Solomon, V.M. Rubish, R.P. Pisak, X-ray studies of mercury-modified amorphous selenium films. Proceedings of the jubilee conference "30 years of the Institute of Electronic Physics of the National Academy of Sciences of Ukraine, Uzhgorod, Ukraine, 220 (2022).

V.M. Rubish, O.M. Hreshchuk, M.O. Durkot, L.I. Makar, S.І. Mudry, R.P. Pisak, A.M. Solomon, I.І. Shtablavyi, V.O. Yukhymchuk, T.I. Yasinko, Structure and surface morphology of mercury modified selenium thin films, Data Recording, Storage and Processing, 25(1) 22 (2023) https://doi.org/10.35681/1560-9189.2023.25.1.286997.

V.M. Rubish, S.M. Hasinets, M.O. Durkot, L.I. Makar, R.P. Pisak, V.O. Stefanovych, T.I. Yasinko, S.A. Kostiukevych, K.V. Kostiukevych, Impact of laser radiation and mercury vapor on the structure of amorphous Se100-xTex films, Data Recording, Storage and Processing, 24(2) 3 (2022).

A.A. Tarnai, R.P. Pisak, Study of the influence of mercury vapor on the structure of amorphous selenium films, Data Recording, Storage and Processing: collection of science papers based on the materials of the Annual Final Scientific Conference. К.: Institute for information recording of NAS of Ukraine, 54 (2022).

D.R. McCann, L. Cartz, Bond distances and chain angle of hexagonal selenium at high pressure, J. Appl. Phys., 43(11) 4473 (1972); https://doi.org/10.1063/1.1660946.

S.Yu. Paranchich, L.D. Paranchich, V.N. Makogonenko, V.B. Lototskii, Structural, electric and thermal properties of FexHg1-xSe. Inorganic Materials, 25(2) 198 (1989).

V.M. Rubish, L.I. Makar, S. Mudry, L.I. Nykyruy, R.P. Pisak, I. Shtablavyi, A.M. Solomon, L. Katanova, X-ray and FESEM study of mercury modified crystallized selenium films. Mat. Intern. Meeting «Clusters and nanostructured materials (CNM-6)». Uzhgorod, Ukraine, 290 (2020).

M.A. Sozanskyi, V.Y. Stadnik, P.Y. Shapoval, Y.Y. Yatchyshyn, R.I. Hlad, Hydrochemical synthesis of mercury selenide (HgSe) on glass substrates, Materials of the 4th All-Ukrainian Scientific and Practical Conference of young scientists and students “Physics and chemistry of solid bodies. Status, achievements and prospects”, Lutsk, 73 (2016).

M. Esmaeili-Zare, M. Salavati-Niasari, A. Sobhani, Simple sonochemical synthesis and characterization of HgSe nanoparticles, Ultrasonics Sonochemistry, 19(5) 1079 (2012);

https://doi.org/10.1016/j.ultsonch.2012.01.013.

M.Salavati-Niasari, M.Esmaeili-Zare, A.Sobhani, Cubic HgSe nanoparticles: sonochemical synthesis and characterisation, Micro & Nano Letters, 7(12) 1300 (2012); https://doi.org/10.1049/mnl.2012.0709.

Feltz A. Amorphe und glasartige anorganische Festkörper. Berlin, Akademie-Verlag, 1983; 460.

A. Meshalkin, A.P. Paiuk, L.A. Revutska, E. Achimova, A.V. Stronski,A. Prisakar, G. Triduh, V. Abashkin, A. Korchevoy, V.Yu. Goroneskul, Direct surface-relief grating recordingusing selenium layers, Optoelectronics and semiconductor technology, 53. 240 (2018).

V.M. Rubish, O.M. Hreshchuk, M.O. Durkot, L.I. Makar, M.M. Pop, I.M. Yurkin, V.O. Yukhymchuk, T.I. Yasinko, Structural investigations of photosensitive composites «Au Nps/Selenium film», Data Recording, Storage and Processing, 22(4) 12 (2020); https://doi.org/10.35681/1560-9189.2020.22.4.225889.

V.O. Yukhymchuk, V.M. Rubish, V.M. Dzhagan, O.M. Hreshchuk, O.F. Isaieva, N.V. Mazur, M.O. Durkot, A.A. Kryuchyn, V.K. Kyrylenko, V.M. Novichenko, V.V. Kremenytskyi, Z.V. Maksimenko, M.Ya. Valakh, Surface-enhanced Raman scattering of As2S3 and Se thin films formed on Au nanostructures, Semiconductor Physics, Quantum Electronics & Optoelectronics, 26(1) 049 (2023); https://doi.org/10.15407/spqeo26.01.049.

Published

2024-03-07

How to Cite

Rubish, V., Pop, M., Pisak, R., Makar, L., Durkot, M., Solomon, A., … Dzumedzey, R. (2024). Structural Studies of Mercury-Modified Amorphous Films of the Selenium-Antimony System. Physics and Chemistry of Solid State, 25(1), 164–169. https://doi.org/10.15330/pcss.25.1.164-169

Issue

Section

Scientific articles (Physics)

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