Formation of nanodimensional structures in precipitated hydroxyapatite by fluorine substitution

被引:0
|
作者
Ekaterina A. Bogdanova
Vladimir M. Skachkov
Irina S. Medyankina
Hartmuth Schröttner
Nail A. Sabirzyanov
Andrey A. Rempel
机构
[1] Institute of Solid State Chemistry of the Ural Branch of the Russian Academy of Sciences,Institute for Electron Microscopy and Nanoanalysis
[2] Graz University of Technology,undefined
[3] Institute of Metallurgy of the Ural Branch of the Russian Academy of Sciences,undefined
来源
SN Applied Sciences | 2020年 / 2卷
关键词
Hydroxyapatite; Fluorapatite; Nanopowders; Bioactive ceramics;
D O I
暂无
中图分类号
学科分类号
摘要
Hydroxyapatite Ca10(PO4)6(OH)2 is a bioactive compound, which is of great interest for medical application as a component of artificial bones and implants. The modification of its composition via anion and cation substitution can strongly affect its properties due to the formation of nanosized particles in the basic structure. In this work the influence of fluorine substitution of hydroxyl groups is examined. The powders of fluorine-substituted hydroxyapatite Ca10(PO4)6(OH)2−xFx (x = 1; 1.5; 2) were precipitated by chemical condensation from solutions. Such characteristics of powders as phase composition, morphology, particle size distribution, density, specific surface area have been studied. It was established that partial replacement of hydroxyl groups by fluorine leads to a decrease in the particle size to 10 nm. The degree of substitution affects the mechanical properties of synthesized powders and ceramics after annealing. A comparison of the particle size distribution in the initial samples and the distribution of grains in the sintered ceramics confirmed that the ceramics inherits the structure of the powders, which has a positive effect on its strength characteristics.
引用
收藏
相关论文
共 50 条
  • [31] Hydrothermal Synthesis of Hydroxyapatite Fibers Precipitated by Propionmide
    Hao Li-Jing
    Yang Hui
    Zhao Na-Ru
    Wang Ying-Jun
    JOURNAL OF INORGANIC MATERIALS, 2013, 28 (01) : 63 - 68
  • [32] Characterisation of Suspension Precipitated Nanocrystalline Hydroxyapatite Powders
    Mallik, P. K.
    Swain, P. K.
    Patnaik, S. C.
    5TH NATIONAL CONFERENCE ON PROCESSING AND CHARACTERIZATION OF MATERIALS, 2016, 115
  • [33] SUBSTITUTION OF FLUORINE BY A HYDROXYMETHYL GROUP
    FRIDMAN, AL
    IVSNINA, TN
    IVSNIN, VP
    SENICHEV, YN
    JOURNAL OF GENERAL CHEMISTRY USSR, 1969, 39 (05): : 1151 - &
  • [34] Aromatic substitution products with fluorine
    Bancroft, WD
    Whearty, SF
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1931, 17 : 183 - 186
  • [35] Simulation of scattering processes of optical radiation by nanodimensional structures
    G. G. Levin
    Ya. A. Ilyushin
    S. Yu. Zolotarevskii
    S. A. Kononogov
    Measurement Techniques, 2009, 52 : 1289 - 1293
  • [36] A method for monitoring thicknesses of nanodimensional bilayer film structures
    A. I. Stognij
    N. N. Novitskii
    O. M. Stukalov
    Technical Physics Letters, 2003, 29 : 147 - 150
  • [37] SIMULATION OF SCATTERING PROCESSES OF OPTICAL RADIATION BY NANODIMENSIONAL STRUCTURES
    Levin, G. G.
    Ilyushin, Ya. A.
    Zolotarevskii, S. Yu.
    Kononogov, S. A.
    MEASUREMENT TECHNIQUES, 2009, 52 (12) : 1289 - 1293
  • [38] Dielectric evaluation of fluorine substituted hydroxyapatite
    Horiuchi, Naohiro
    Endo, Juria
    Nozaki, Kosuke
    Nakamura, Miho
    Nagai, Akiko
    Katayama, Keiichi
    Yamashita, Kimihiro
    JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 2013, 121 (1417) : 770 - 774
  • [39] PROTON NMR IN FLUORINE SUBSTITUTED HYDROXYAPATITE
    LOCKAMY, F
    CASABELLA, PA
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1976, 21 (03): : 371 - 371
  • [40] MECHANISM FOR FLUORINE INHIBITION OF DIFFUSION IN HYDROXYAPATITE
    YOUNG, RA
    VANDERLU.W
    ELLIOTT, JC
    NATURE, 1969, 223 (5207) : 729 - &