Obtaining of Biologically Soluble Membranes Based on Polymeric Nanofibres and Hydroxyapatite of Calcium

In this paper, the possibility of obtaining a synthetic hydroxyapatite of calcium from a biological waste material is shown. The characteristics influencing the synthesis process are studied. Based on the results of the X-ray analysis and the obtained electron microscope images, it can be concluded...

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Main Authors: Ch. Daulbayev, G. Mitchell, A. Zakhidov, F. Sultanov, Z. Mansurov
Format: Article
Language:English
Published: al-Farabi Kazakh National University 2018-05-01
Series:Eurasian Chemico-Technological Journal
Online Access:http://ect-journal.kz/index.php/ectj/article/view/690
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author Ch. Daulbayev
G. Mitchell
A. Zakhidov
F. Sultanov
Z. Mansurov
author_facet Ch. Daulbayev
G. Mitchell
A. Zakhidov
F. Sultanov
Z. Mansurov
author_sort Ch. Daulbayev
collection DOAJ
description In this paper, the possibility of obtaining a synthetic hydroxyapatite of calcium from a biological waste material is shown. The characteristics influencing the synthesis process are studied. Based on the results of the X-ray analysis and the obtained electron microscope images, it can be concluded that the synthesized HAP has a Ca/P ratio of 1.5 and with crystals with an average size of 2 microns. In work, experiments on obtaining biologically soluble films based on nanoscale polymer fibers and calcium hydroxyapatite were carried out. As a result, the main parameters of the process for the electroforming of nano-sized fibers with HAP are determined. The proposed method allows the laying of strictly directed nanofibers from a polymer with a diameter of 50 to 500 nm. The use of different types of electrodes makes it possible to vary the size of nanofibers. The characteristics such as solution viscosity, high voltage and optimum parameters were selected, which allowed obtaining films from biologically soluble polymer nanofibers and HAP. Also, experiments were conducted to introduce medicines into the film structure.
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spelling doaj.art-d99a0c84c91e4ea882f15b1fb0234b072022-12-21T22:10:42Zengal-Farabi Kazakh National UniversityEurasian Chemico-Technological Journal1562-39202522-48672018-05-0120211912410.18321/ectj690690Obtaining of Biologically Soluble Membranes Based on Polymeric Nanofibres and Hydroxyapatite of CalciumCh. Daulbayev0G. Mitchell1A. Zakhidov2F. Sultanov3Z. Mansurov4Al-Farabi Kazakh National University, 71 al-Farabi Ave., 050040 Almaty, Kazakhstan; Institute of Combustion Problems, Bogenbay Batyr str. 172, 050012 Almaty, KazakhstanPolytechnic Institute of Leiria, R. Gen. Norton de Matos, 2411-901 Leiria, PortugalThe University of Texas at Dallas, 800 W Campbell Rd, Richardson, TX 75080, USAAl-Farabi Kazakh National University, 71 al-Farabi Ave., 050040 Almaty, Kazakhstan; Institute of Combustion Problems, Bogenbay Batyr str. 172, 050012 Almaty, KazakhstanInstitute of Combustion Problems, Bogenbay Batyr str. 172, 050012 Almaty, KazakhstanIn this paper, the possibility of obtaining a synthetic hydroxyapatite of calcium from a biological waste material is shown. The characteristics influencing the synthesis process are studied. Based on the results of the X-ray analysis and the obtained electron microscope images, it can be concluded that the synthesized HAP has a Ca/P ratio of 1.5 and with crystals with an average size of 2 microns. In work, experiments on obtaining biologically soluble films based on nanoscale polymer fibers and calcium hydroxyapatite were carried out. As a result, the main parameters of the process for the electroforming of nano-sized fibers with HAP are determined. The proposed method allows the laying of strictly directed nanofibers from a polymer with a diameter of 50 to 500 nm. The use of different types of electrodes makes it possible to vary the size of nanofibers. The characteristics such as solution viscosity, high voltage and optimum parameters were selected, which allowed obtaining films from biologically soluble polymer nanofibers and HAP. Also, experiments were conducted to introduce medicines into the film structure.http://ect-journal.kz/index.php/ectj/article/view/690
spellingShingle Ch. Daulbayev
G. Mitchell
A. Zakhidov
F. Sultanov
Z. Mansurov
Obtaining of Biologically Soluble Membranes Based on Polymeric Nanofibres and Hydroxyapatite of Calcium
Eurasian Chemico-Technological Journal
title Obtaining of Biologically Soluble Membranes Based on Polymeric Nanofibres and Hydroxyapatite of Calcium
title_full Obtaining of Biologically Soluble Membranes Based on Polymeric Nanofibres and Hydroxyapatite of Calcium
title_fullStr Obtaining of Biologically Soluble Membranes Based on Polymeric Nanofibres and Hydroxyapatite of Calcium
title_full_unstemmed Obtaining of Biologically Soluble Membranes Based on Polymeric Nanofibres and Hydroxyapatite of Calcium
title_short Obtaining of Biologically Soluble Membranes Based on Polymeric Nanofibres and Hydroxyapatite of Calcium
title_sort obtaining of biologically soluble membranes based on polymeric nanofibres and hydroxyapatite of calcium
url http://ect-journal.kz/index.php/ectj/article/view/690
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AT gmitchell obtainingofbiologicallysolublemembranesbasedonpolymericnanofibresandhydroxyapatiteofcalcium
AT azakhidov obtainingofbiologicallysolublemembranesbasedonpolymericnanofibresandhydroxyapatiteofcalcium
AT fsultanov obtainingofbiologicallysolublemembranesbasedonpolymericnanofibresandhydroxyapatiteofcalcium
AT zmansurov obtainingofbiologicallysolublemembranesbasedonpolymericnanofibresandhydroxyapatiteofcalcium