PROPERTIES OF LEAD SULFIDE FILMS DEPOSITED FROM A COORDINATION COMPOUND [Pb(N2H4CS)2(CH3COO)2]

The position and the shape of intrinsic absorption edges was studied by optical spectroscopy. It allowed identifying the value of the band gap for thin lead sulfi de fi lms produced by spray pyrolysis of aqueous solutions of thiourea coordination compounds (TCS). The study of the optical properties...

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Main Authors: Karnushina Victoria Al., Semenov Viktor N., Lukin Anatoly N., Ovechkina Nadezhda M., Nikitin Leonid N.
Format: Article
Language:English
Published: Voronezh State University 2017-06-01
Series:Конденсированные среды и межфазные границы
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spelling doaj-d3f179f7c2c7427a80efedd345e55a002020-11-25T00:47:28ZengVoronezh State UniversityКонденсированные среды и межфазные границы1606-867X1606-867X2017-06-0119221522110.17308/kcmf.2017.19/194PROPERTIES OF LEAD SULFIDE FILMS DEPOSITED FROM A COORDINATION COMPOUND [Pb(N2H4CS)2(CH3COO)2]Karnushina Victoria Al.0Semenov Viktor N.1Lukin Anatoly N.2Ovechkina Nadezhda M.3Nikitin Leonid N.4the competitor for science degree of Master Science in Chemistryof the Department of General and Inorganic Chemistry, Voronezh State UniversityDr. Sci. (Chem.), Head of the Department of General and Inorganic Chemistry, Voronezh State UniversityCand. Sci. (Phys.-Math.), Associate Professor of the Department of Solid State Physics and Nanostructures, Voronezh State UniversityAssistant of the Department of Chemistry, Voronezh State Medical University. N. N. BurdenkoCand. Sci. (Eng.), Assistant Professor of the Department of Design and Production of Radio Equipment, Voronezh State Technical UniversityThe position and the shape of intrinsic absorption edges was studied by optical spectroscopy. It allowed identifying the value of the band gap for thin lead sulfi de fi lms produced by spray pyrolysis of aqueous solutions of thiourea coordination compounds (TCS). The study of the optical properties of PbS was focsued on determining the values of the band gap for samples which were synthesized in various conditions. The transmission spectra for thin fi lms were determined, which helped to determine the band gap for direct interband transitions by the intrinsic self-absorption edge. Graphical analysis of the intrinsic absorption edge allowed us to identify the type of optical transition and the energy of the intrinsic absorption edge for thin fi lms of lead sulfi de. By X-ray phase analysis the crystal structure of the fi lms was determined. Using the hot probe method at room temperature, we measured the values of electric resistance, differential thermoelectric power, and the resistivity and conductivity of PbS fi lms with different ratios of concentrations of the initial components. The results of X-ray phase analysis showed that fi lms of lead sulfi de with cubic structure are formed as a result of synthesis at all deposition temperatures between 300–450 С. The results of optical studies of PbS thin fi lm structures indicate that lead sulfi de is characterized by direct transitions with a band gap within 0.43 to 0.49 eV. The increase in concentration of thiourea in the initial solution leads to the decrease in the differential thermoelectric power and the increase in conductivity in PbS fi lms.
collection DOAJ
language English
format Article
sources DOAJ
author Karnushina Victoria Al.
Semenov Viktor N.
Lukin Anatoly N.
Ovechkina Nadezhda M.
Nikitin Leonid N.
spellingShingle Karnushina Victoria Al.
Semenov Viktor N.
Lukin Anatoly N.
Ovechkina Nadezhda M.
Nikitin Leonid N.
PROPERTIES OF LEAD SULFIDE FILMS DEPOSITED FROM A COORDINATION COMPOUND [Pb(N2H4CS)2(CH3COO)2]
Конденсированные среды и межфазные границы
author_facet Karnushina Victoria Al.
Semenov Viktor N.
Lukin Anatoly N.
Ovechkina Nadezhda M.
Nikitin Leonid N.
author_sort Karnushina Victoria Al.
title PROPERTIES OF LEAD SULFIDE FILMS DEPOSITED FROM A COORDINATION COMPOUND [Pb(N2H4CS)2(CH3COO)2]
title_short PROPERTIES OF LEAD SULFIDE FILMS DEPOSITED FROM A COORDINATION COMPOUND [Pb(N2H4CS)2(CH3COO)2]
title_full PROPERTIES OF LEAD SULFIDE FILMS DEPOSITED FROM A COORDINATION COMPOUND [Pb(N2H4CS)2(CH3COO)2]
title_fullStr PROPERTIES OF LEAD SULFIDE FILMS DEPOSITED FROM A COORDINATION COMPOUND [Pb(N2H4CS)2(CH3COO)2]
title_full_unstemmed PROPERTIES OF LEAD SULFIDE FILMS DEPOSITED FROM A COORDINATION COMPOUND [Pb(N2H4CS)2(CH3COO)2]
title_sort properties of lead sulfide films deposited from a coordination compound [pb(n2h4cs)2(ch3coo)2]
publisher Voronezh State University
series Конденсированные среды и межфазные границы
issn 1606-867X
1606-867X
publishDate 2017-06-01
description The position and the shape of intrinsic absorption edges was studied by optical spectroscopy. It allowed identifying the value of the band gap for thin lead sulfi de fi lms produced by spray pyrolysis of aqueous solutions of thiourea coordination compounds (TCS). The study of the optical properties of PbS was focsued on determining the values of the band gap for samples which were synthesized in various conditions. The transmission spectra for thin fi lms were determined, which helped to determine the band gap for direct interband transitions by the intrinsic self-absorption edge. Graphical analysis of the intrinsic absorption edge allowed us to identify the type of optical transition and the energy of the intrinsic absorption edge for thin fi lms of lead sulfi de. By X-ray phase analysis the crystal structure of the fi lms was determined. Using the hot probe method at room temperature, we measured the values of electric resistance, differential thermoelectric power, and the resistivity and conductivity of PbS fi lms with different ratios of concentrations of the initial components. The results of X-ray phase analysis showed that fi lms of lead sulfi de with cubic structure are formed as a result of synthesis at all deposition temperatures between 300–450 С. The results of optical studies of PbS thin fi lm structures indicate that lead sulfi de is characterized by direct transitions with a band gap within 0.43 to 0.49 eV. The increase in concentration of thiourea in the initial solution leads to the decrease in the differential thermoelectric power and the increase in conductivity in PbS fi lms.
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