Thermoresistive properties of (Copper, Neodymium) Acetylacetonate

A new material tetrakis-µ3- (methoxo)(methanol)-pentakis(acetylacetonate)(tricuprum (II), neodymium (III)) methanol (I) was synthesized as [Cu3Nd(AA)5(OCH3)4CH3OH] ∙ CH3OH,  where HAA = H3C–C(O)–CH2–C(O)–CH3. Based on the data of elemental analysis and physical-chemical research methods, it was foun...

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Main Authors: A.V. Osadchuk, V.V. Martyniuk, M.V. Evseeva, O.Y. Avramchuk
Format: Article
Language:English
Published: Vasyl Stefanyk Precarpathian National University 2022-12-01
Series:Фізика і хімія твердого тіла
Subjects:
Online Access:https://journals.pnu.edu.ua/index.php/pcss/article/view/5709
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author A.V. Osadchuk
V.V. Martyniuk
M.V. Evseeva
O.Y. Avramchuk
author_facet A.V. Osadchuk
V.V. Martyniuk
M.V. Evseeva
O.Y. Avramchuk
author_sort A.V. Osadchuk
collection DOAJ
description A new material tetrakis-µ3- (methoxo)(methanol)-pentakis(acetylacetonate)(tricuprum (II), neodymium (III)) methanol (I) was synthesized as [Cu3Nd(AA)5(OCH3)4CH3OH] ∙ CH3OH,  where HAA = H3C–C(O)–CH2–C(O)–CH3. Based on the data of elemental analysis and physical-chemical research methods, it was found that the obtained coordination complex (I) contains atoms of Copper (II) and Neodymium (III) in the ratio Cu:Nd = 3:1, and its composition corresponds to the gross formula: Cu3NdО16C31Н55. The measurement of electrical conductivity of the obtained material was performed in the compressed form. For the coordination complex (I), the number of valence electrons in one molecule was calculated to be 270; the mass of one molecule was calculated to be 163,65·10-20 кг; the total number of molecules in the volume of a cylindrical sample weighing 0.125 g and having volume of 17,74∙10-9 m3 was calculated to be 7,638·1013 молек.; and the total number of valence electrons as 20,6232·1015. In the temperature range of 303 – 423 K, the specific resistance of the compressed sample decreases from 2∙1012 to 5∙104 Ohm∙cm, which confirms that the isolated compound is a semiconductor with a band gap of 1,6125 еВ. The electrical conductivity properties of the coordination complex as a thermosensitive element were studied; for this purpose we used an experimental sample of compressed material with geometric dimensions of 1·10-3 m×0,5·10-3 m×0,5·10-3 m.
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spelling doaj.art-6998efa0ffd647909fef17a21b047bd12022-12-26T23:53:23ZengVasyl Stefanyk Precarpathian National UniversityФізика і хімія твердого тіла1729-44282309-85892022-12-0123480981410.15330/pcss.23.4.809-8145709Thermoresistive properties of (Copper, Neodymium) AcetylacetonateA.V. Osadchuk0V.V. Martyniuk1M.V. Evseeva2O.Y. Avramchuk3Vinnytsia National Technical University, Vinnytsia, UkraineVinnytsia National Technical University, Vinnytsia, UkraineNational Pirogov Memorial Medical University, Vinnytsya, UkraineZhytomyr Korolov Military Institute, Zhytomyr, UkraineA new material tetrakis-µ3- (methoxo)(methanol)-pentakis(acetylacetonate)(tricuprum (II), neodymium (III)) methanol (I) was synthesized as [Cu3Nd(AA)5(OCH3)4CH3OH] ∙ CH3OH,  where HAA = H3C–C(O)–CH2–C(O)–CH3. Based on the data of elemental analysis and physical-chemical research methods, it was found that the obtained coordination complex (I) contains atoms of Copper (II) and Neodymium (III) in the ratio Cu:Nd = 3:1, and its composition corresponds to the gross formula: Cu3NdО16C31Н55. The measurement of electrical conductivity of the obtained material was performed in the compressed form. For the coordination complex (I), the number of valence electrons in one molecule was calculated to be 270; the mass of one molecule was calculated to be 163,65·10-20 кг; the total number of molecules in the volume of a cylindrical sample weighing 0.125 g and having volume of 17,74∙10-9 m3 was calculated to be 7,638·1013 молек.; and the total number of valence electrons as 20,6232·1015. In the temperature range of 303 – 423 K, the specific resistance of the compressed sample decreases from 2∙1012 to 5∙104 Ohm∙cm, which confirms that the isolated compound is a semiconductor with a band gap of 1,6125 еВ. The electrical conductivity properties of the coordination complex as a thermosensitive element were studied; for this purpose we used an experimental sample of compressed material with geometric dimensions of 1·10-3 m×0,5·10-3 m×0,5·10-3 m.https://journals.pnu.edu.ua/index.php/pcss/article/view/5709temperaturethermistorconcentrationsemiconductorelectrical conductivity propertiescoordination complex
spellingShingle A.V. Osadchuk
V.V. Martyniuk
M.V. Evseeva
O.Y. Avramchuk
Thermoresistive properties of (Copper, Neodymium) Acetylacetonate
Фізика і хімія твердого тіла
temperature
thermistor
concentration
semiconductor
electrical conductivity properties
coordination complex
title Thermoresistive properties of (Copper, Neodymium) Acetylacetonate
title_full Thermoresistive properties of (Copper, Neodymium) Acetylacetonate
title_fullStr Thermoresistive properties of (Copper, Neodymium) Acetylacetonate
title_full_unstemmed Thermoresistive properties of (Copper, Neodymium) Acetylacetonate
title_short Thermoresistive properties of (Copper, Neodymium) Acetylacetonate
title_sort thermoresistive properties of copper neodymium acetylacetonate
topic temperature
thermistor
concentration
semiconductor
electrical conductivity properties
coordination complex
url https://journals.pnu.edu.ua/index.php/pcss/article/view/5709
work_keys_str_mv AT avosadchuk thermoresistivepropertiesofcopperneodymiumacetylacetonate
AT vvmartyniuk thermoresistivepropertiesofcopperneodymiumacetylacetonate
AT mvevseeva thermoresistivepropertiesofcopperneodymiumacetylacetonate
AT oyavramchuk thermoresistivepropertiesofcopperneodymiumacetylacetonate