Пропуск в контексте

SYNTHESIS OF NANOSIZED ZINC PHOSPHATE STABILIZED WITH BIOLOGICALLY ACTIVE SUBSTANCES

The article presents the results of a study of the interaction of zinc phosphate with biologically active substances using the method of quantum chemical modeling, which obtained models of molecules of biologically active substances (essential amino acids), as well as molecular systems Zn<inf>...

Полное описание

Сохранить в:
Библиографические подробности
Главные авторы: Blinova, A. A., Блинова, А. А., Rekhman, Z. A., Рехман, З. А., Blinov, A. V., Блинов, А. В., Lapin, V. A., Лапин, В. А., Pirogov, M. A., Пирогов, М. А.
Формат: Статья
Язык:English
Опубликовано: Bauman Press 2025
Темы:
Online-ссылка:https://dspace.ncfu.ru/handle/123456789/31847
Метки: Добавить метку
Нет меток, Требуется 1-ая метка записи!
id ir-123456789-31847
record_format dspace
spelling ir-123456789-318472025-08-12T12:45:20Z SYNTHESIS OF NANOSIZED ZINC PHOSPHATE STABILIZED WITH BIOLOGICALLY ACTIVE SUBSTANCES СИНТЕЗ НАНОРАЗМЕРНОГО ФОСФАТА ЦИНКА, СТАБИЛИЗИРОВАННОГО БИОЛОГИЧЕСКИ АКТИВНЫМИ ВЕЩЕСТВАМИ Blinova, A. A. Блинова, А. А. Rekhman, Z. A. Рехман, З. А. Blinov, A. V. Блинов, А. В. Lapin, V. A. Лапин, В. А. Pirogov, M. A. Пирогов, М. А. Chemical rigidity Zinc phosphate nanoparticles Elemental analysis Essential amino acids Lysine Quantum chemical modeling Scanning electron microscopy X-ray phase analysis The article presents the results of a study of the interaction of zinc phosphate with biologically active substances using the method of quantum chemical modeling, which obtained models of molecules of biologically active substances (essential amino acids), as well as molecular systems Zn<inf>3</inf>(PO<inf>4</inf>)<inf>2</inf>–an essential amino acid, in which the interaction of zinc phosphate with an amino acid occurred through an oxygen atom attached to the phosphorus atom in zinc phosphate, and the ionized amino group of the amino acid. As a result of quantum chemical modeling, it is established that the molecular system Zn<inf>3</inf>(PO<inf>4</inf>)<inf>2</inf>, an essential amino acid, is energetically advantageous and chemically stable. The optimal configuration with the largest total energy difference (73.646 kcal/mol) and chemical rigidity (0.144 eV) is the Zn<inf>3</inf>(PO<inf>4</inf>)<inf>2</inf>–lysine molecular system, in which the interaction occurs through the ionized H-amino group of lysine. The results of the analysis of the microstructure of zinc phosphate nanoparticles stabilized with L-lysine show that the surface of the samples consists of large aggregates with diameters of 6–17 Pn, which are small spherical particles with dimensions of 100–150 nm. The results of the analysis of the elemental composition allowed us to establish the presence of elements such as zinc and phosphorus in the structure. The phase composition of the samples is studied, as a result, it is determined that the sample of zinc phosphate nanoparticles stabilized with L-lysine has orthorhombic syngony with the space group P nma. The samples were examined by IR spectroscopy, which revealed that the amino acid interaction occurs when phosphate binds through amino groups in the amino acid molecule. 2025-08-12T12:42:35Z 2025-08-12T12:42:35Z 2025 Статья Blinova, A. A., Rekhman, Z. A., Kastarnova, E. S., Blinov, A. V., Lapin, V. A., Pirogov, M. A. SYNTHESIS OF NANOSIZED ZINC PHOSPHATE STABILIZED WITH BIOLOGICALLY ACTIVE SUBSTANCES // Herald of the Bauman Moscow State Technical University Series Natural Sciences. - 2025. - 1 (118). - pp. 119 - 136. https://dspace.ncfu.ru/handle/123456789/31847 en Herald of the Bauman Moscow State Technical University, Series Natural Sciences application/pdf Bauman Press
institution СКФУ
collection Репозиторий
language English
topic Chemical rigidity
Zinc phosphate nanoparticles
Elemental analysis
Essential amino acids
Lysine
Quantum chemical modeling
Scanning electron microscopy
X-ray phase analysis
spellingShingle Chemical rigidity
Zinc phosphate nanoparticles
Elemental analysis
Essential amino acids
Lysine
Quantum chemical modeling
Scanning electron microscopy
X-ray phase analysis
Blinova, A. A.
Блинова, А. А.
Rekhman, Z. A.
Рехман, З. А.
Blinov, A. V.
Блинов, А. В.
Lapin, V. A.
Лапин, В. А.
Pirogov, M. A.
Пирогов, М. А.
SYNTHESIS OF NANOSIZED ZINC PHOSPHATE STABILIZED WITH BIOLOGICALLY ACTIVE SUBSTANCES
description The article presents the results of a study of the interaction of zinc phosphate with biologically active substances using the method of quantum chemical modeling, which obtained models of molecules of biologically active substances (essential amino acids), as well as molecular systems Zn<inf>3</inf>(PO<inf>4</inf>)<inf>2</inf>–an essential amino acid, in which the interaction of zinc phosphate with an amino acid occurred through an oxygen atom attached to the phosphorus atom in zinc phosphate, and the ionized amino group of the amino acid. As a result of quantum chemical modeling, it is established that the molecular system Zn<inf>3</inf>(PO<inf>4</inf>)<inf>2</inf>, an essential amino acid, is energetically advantageous and chemically stable. The optimal configuration with the largest total energy difference (73.646 kcal/mol) and chemical rigidity (0.144 eV) is the Zn<inf>3</inf>(PO<inf>4</inf>)<inf>2</inf>–lysine molecular system, in which the interaction occurs through the ionized H-amino group of lysine. The results of the analysis of the microstructure of zinc phosphate nanoparticles stabilized with L-lysine show that the surface of the samples consists of large aggregates with diameters of 6–17 Pn, which are small spherical particles with dimensions of 100–150 nm. The results of the analysis of the elemental composition allowed us to establish the presence of elements such as zinc and phosphorus in the structure. The phase composition of the samples is studied, as a result, it is determined that the sample of zinc phosphate nanoparticles stabilized with L-lysine has orthorhombic syngony with the space group P nma. The samples were examined by IR spectroscopy, which revealed that the amino acid interaction occurs when phosphate binds through amino groups in the amino acid molecule.
format Статья
author Blinova, A. A.
Блинова, А. А.
Rekhman, Z. A.
Рехман, З. А.
Blinov, A. V.
Блинов, А. В.
Lapin, V. A.
Лапин, В. А.
Pirogov, M. A.
Пирогов, М. А.
author_facet Blinova, A. A.
Блинова, А. А.
Rekhman, Z. A.
Рехман, З. А.
Blinov, A. V.
Блинов, А. В.
Lapin, V. A.
Лапин, В. А.
Pirogov, M. A.
Пирогов, М. А.
author_sort Blinova, A. A.
title SYNTHESIS OF NANOSIZED ZINC PHOSPHATE STABILIZED WITH BIOLOGICALLY ACTIVE SUBSTANCES
title_short SYNTHESIS OF NANOSIZED ZINC PHOSPHATE STABILIZED WITH BIOLOGICALLY ACTIVE SUBSTANCES
title_full SYNTHESIS OF NANOSIZED ZINC PHOSPHATE STABILIZED WITH BIOLOGICALLY ACTIVE SUBSTANCES
title_fullStr SYNTHESIS OF NANOSIZED ZINC PHOSPHATE STABILIZED WITH BIOLOGICALLY ACTIVE SUBSTANCES
title_full_unstemmed SYNTHESIS OF NANOSIZED ZINC PHOSPHATE STABILIZED WITH BIOLOGICALLY ACTIVE SUBSTANCES
title_sort synthesis of nanosized zinc phosphate stabilized with biologically active substances
publisher Bauman Press
publishDate 2025
url https://dspace.ncfu.ru/handle/123456789/31847
work_keys_str_mv AT blinovaaa synthesisofnanosizedzincphosphatestabilizedwithbiologicallyactivesubstances
AT blinovaaa synthesisofnanosizedzincphosphatestabilizedwithbiologicallyactivesubstances
AT rekhmanza synthesisofnanosizedzincphosphatestabilizedwithbiologicallyactivesubstances
AT rehmanza synthesisofnanosizedzincphosphatestabilizedwithbiologicallyactivesubstances
AT blinovav synthesisofnanosizedzincphosphatestabilizedwithbiologicallyactivesubstances
AT blinovav synthesisofnanosizedzincphosphatestabilizedwithbiologicallyactivesubstances
AT lapinva synthesisofnanosizedzincphosphatestabilizedwithbiologicallyactivesubstances
AT lapinva synthesisofnanosizedzincphosphatestabilizedwithbiologicallyactivesubstances
AT pirogovma synthesisofnanosizedzincphosphatestabilizedwithbiologicallyactivesubstances
AT pirogovma synthesisofnanosizedzincphosphatestabilizedwithbiologicallyactivesubstances
AT blinovaaa sinteznanorazmernogofosfatacinkastabilizirovannogobiologičeskiaktivnymiveŝestvami
AT blinovaaa sinteznanorazmernogofosfatacinkastabilizirovannogobiologičeskiaktivnymiveŝestvami
AT rekhmanza sinteznanorazmernogofosfatacinkastabilizirovannogobiologičeskiaktivnymiveŝestvami
AT rehmanza sinteznanorazmernogofosfatacinkastabilizirovannogobiologičeskiaktivnymiveŝestvami
AT blinovav sinteznanorazmernogofosfatacinkastabilizirovannogobiologičeskiaktivnymiveŝestvami
AT blinovav sinteznanorazmernogofosfatacinkastabilizirovannogobiologičeskiaktivnymiveŝestvami
AT lapinva sinteznanorazmernogofosfatacinkastabilizirovannogobiologičeskiaktivnymiveŝestvami
AT lapinva sinteznanorazmernogofosfatacinkastabilizirovannogobiologičeskiaktivnymiveŝestvami
AT pirogovma sinteznanorazmernogofosfatacinkastabilizirovannogobiologičeskiaktivnymiveŝestvami
AT pirogovma sinteznanorazmernogofosfatacinkastabilizirovannogobiologičeskiaktivnymiveŝestvami
_version_ 1842245888345374720