Soft mechanochemical synthesis and thermal stability of hydroxyapatites with different types of substitution

Author:

Eremina Natalya V.ORCID,Makarova Svetlana V.ORCID,Isaev Denis D.ORCID,Bulina Natalya V.ORCID

Abstract

The feasibility of soft mechanochemical synthesis was studied here for hydroxyapatite with various types of substitution. It was shown that this method allows obtaining hydroxyapatites substituted with copper or iron cations and hydroxyapatites cosubstituted with zinc cations and silicate groups. Thermal stability of the synthesized samples was evaluated. It was found that to preserve phase homogeneity of the material, the temperature during the preparation of ceramic products and coatings should not exceed 600–800 °C. An exception is the hydroxyapatite where a hydroxyl group is expected to be replaced by a copper cation during the synthesis at a degree of substitution x = 0.5. For this sample, the temperature of the the heat treatment can be increased to 1100–1200 °C because copper cations return to the hydroxyapatite crystal lattice at these temperatures, and the material becomes single-phase.

Publisher

Ural Federal University

Subject

Materials Chemistry,General Chemical Engineering,General Chemistry

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Crystallographic characterization and application of copper doped hydroxyapatite as a biomaterial;New Journal of Chemistry;2023

2. Molecular Dynamics Simulation of the Thermal Behavior of Hydroxyapatite;Nanomaterials;2022-11-29

3. Modeling and computational research of the Hydroxyapatite properties;Proceedings of the International Conference "Mathematical Biology and Bioinformatics";2022-10-27

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