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Mendeleev Communications, 2016, Volume 26, Issue 6, Pages 543–545
DOI: https://doi.org/10.1016/j.mencom.2016.11.029
(Mi mendc2275)
 

This article is cited in 19 scientific papers (total in 19 papers)

Communications

Vacuum-made nanocomposite of low-temperature hydroxyapatite and hard nonstoichiometric titanium monoxide with enhanced mechanical properties

S. V. Rempelab, A. A. Valeevaab, E. A. Bogdanovaa, H. Schroettnerc, N. A. Sabirzyanova, A. A. Rempelab

a Institute of Solid State Chemistry, Ural Branch of the Russian Academy of Sciences, Ekaterinburg, Russian Federation
b Department of Chemistry, Ural Federal University, Ekaterinburg, Russian Federation
c Institute for Electron Microscopy and Nanoanalysis, Graz University of Technology, Graz, Austria
Abstract: The doping of hydroxyapatite (HAp) with 10 or 20 wt% titanium monoxide (TiOy), substoichiometric TiO0.92 or super-stoichiometric TiO1.23, leads to a considerable reduction in the initial temperature of composite compaction and to an increase in the microhardness and density of the composite material, as compared to plain HAp.
Document Type: Article
Language: English


Citation: S. V. Rempel, A. A. Valeeva, E. A. Bogdanova, H. Schroettner, N. A. Sabirzyanov, A. A. Rempel, “Vacuum-made nanocomposite of low-temperature hydroxyapatite and hard nonstoichiometric titanium monoxide with enhanced mechanical properties”, Mendeleev Commun., 26:6 (2016), 543–545
Linking options:
  • https://www.mathnet.ru/eng/mendc2275
  • https://www.mathnet.ru/eng/mendc/v26/i6/p543
  • This publication is cited in the following 19 articles:
    1. Shima Mahtabian, Seyed Mehdi Mirhadi, Nahid Hassanzadeh Nemati, Melika Sharifi, Fariborz Tavangarian, “Influence of Biomimetic Apatite Coating on the Biobehavior of TiO2 Scaffolds”, J Bionic Eng, 21:4 (2024), 1975  crossref
    2. S.V. Rempel, A.A. Valeeva, A.A. Rempel, “Solubility of TiOy/HAp nanocomposites in body simulated fluid”, Ceramics International, 48:17 (2022), 25213  crossref
    3. S.V. Rempel, D.A. Eselevich, Z.S. Vinokurov, H. Schroettner, A.A. Rempel, “In situ synchrotron Kh-ray diffraction study of heat-induced structural changes in TiOy/HAp nanocomposites”, Ceramics International, 48:2 (2022), 2843  crossref
    4. B. R. Gel'chinskiy, I. A. Balyakin, A. A. Yuryev, A. A. Rempel, “High-entropy alloys: properties and prospects of application as protective coatings”, Russian Chem. Reviews, 91:6 (2022), RCR5023  mathnet  mathnet  crossref  isi  scopus
    5. S.V. Rempel, D.A. Eselevich, H. Schroettner, A.A. Valeeva, A.A. Rempel, “Thermal behaviour of TiOy/HAp nanocomposites”, Ceramics International, 47:7 (2021), 9613  crossref
    6. M.I. Chebanenko, D.P. Danilovich, A.A. Lobinsky, V.I. Popkov, A.A. Rempel, A.A. Valeeva, “Novel high stable electrocatalyst based on non-stoichiometric nanocrystalline niobium carbide toward effective hydrogen evolution”, International Journal of Hydrogen Energy, 46:32 (2021), 16907  crossref
    7. A. A. Valeeva, A. A. Rempel, S. V. Rempel', S. I. Sadovnikov, A. I. Gusev, “Nonstoichiometry, structure and properties of nanocrystalline oxides, carbides and sulfides”, Russian Chem. Reviews, 90:5 (2021), 601–626  mathnet  mathnet  crossref  isi  scopus
    8. I. B. Dorosheva, A. A. Valeeva, A. A. Rempel, THE 2ND INTERNATIONAL CONFERENCE ON PHYSICAL INSTRUMENTATION AND ADVANCED MATERIALS 2019, 2314, THE 2ND INTERNATIONAL CONFERENCE ON PHYSICAL INSTRUMENTATION AND ADVANCED MATERIALS 2019, 2020, 050046  crossref
    9. Vadim I. Popkov, Anastasia K. Bachina, Albina A. Valeeva, Artem A. Lobinsky, Evgeny Y. Gerasimov, Andrey A. Rempel, “Synthesis, morphology and electrochemical properties of spherulite titania nanocrystals”, Ceramics International, 46:15 (2020), 24483  crossref
    10. Albina A. Valeeva, Svetlana Z. Nazarova, Andrey A. Rempel, “Nanosize effect on phase transformations of titanium oxide Ti2O3”, Journal of Alloys and Compounds, 817 (2020), 153215  crossref
    11. Albina A. Valeeva, Svetlana Z. Nazarova, Hartmuth Schröttner, Evgeny Yu. Gerasimov, Andrey A. Rempel, “Effects of high mechanical treatment and long-term annealing on crystal structure and thermal stability of Ti2O3 nanocrystals”, RSC Adv., 10:43 (2020), 25717  crossref
    12. Svetlana V. Rempel, Andrey A. Rempel, Albina A. Valeeva, “Effect of Stoichiometry and Ordering on the Microstructure of Titanium Monoxide TiOy”, ACS Omega, 5:35 (2020), 22513  crossref
    13. Svetlana V. Rempel, Danil A. Eselevich, Evgeny Yu. Gerasimov, Albina A. Valeeva, “Impact of titanium monoxide stoichiometry and heat treatment on the properties of TiOy/HAp nanocomposite”, Journal of Alloys and Compounds, 800 (2019), 412  crossref
    14. M. A. Zykin, E. O. Anokhin, P. E. Kazin, “Cobalt-containing calcium fluorohydroxyapatites with properties of field-induced single-ion magnets”, Russ Chem Bull, 68:4 (2019), 751  crossref
    15. A.I. Ivanets, I.L. Shashkova, N.V. Kitikova, M.V. Maslova, N.V. Mudruk, “New heterogeneous synthesis of mixed Ti-Ca-Mg phosphates as efficient sorbents of 137Cs, 90Sr and 60Co radionuclides”, Journal of the Taiwan Institute of Chemical Engineers, 104 (2019), 151  crossref
    16. A. Ezerskyte-Miseviciene, A. Kareiva, “Everything old is new again: a reinspection of solid-state method for the fabrication of high quality calcium hydroxyapatite bioceramics”, Mendeleev Commun., 29:3 (2019), 273–275  mathnet  crossref
    17. A. A. Rempel, A. A. Valeeva, A. S. Kurlov, G. Klinser, W. Sprengel, “Size effect in nonstoichiometric titanium monoxide and vanadium carbide nanocrystals measured by positron lifetime spectroscopy”, Mendeleev Commun., 29:5 (2019), 486–488  mathnet  crossref
    18. S. V. Rempel, D. A. Eselevich, A. A. Valeeva, A. A. Rempel, “Structure of a HAp/TiOy Nanocomposite Studied by Vibrational Spectroscopy Techniques”, Inorg Mater, 54:9 (2018), 898  crossref
    19. I. B. Dorosheva, A. A. Valeeva, A. A. Rempel, AIP Conference Proceedings, 1885, 2017, 020006  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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