Rietveld Refinement of Sintered Magnesium Substituted Calcium Apatite

被引:7
作者
Sader, M. S. [1 ]
Moreira, E. L. [2 ]
Moraes, V. C. A. [2 ]
Araujo, J. C. [3 ]
LeGeros, R. Z.
Soares, G. A. [1 ]
机构
[1] Univ Fed Rio de Janeiro, PEMM, COPPE, POB 68505, BR-21941972 Rio de Janeiro, Brazil
[2] Ctr Brasileiro Pesquisas Fis, BR-22290000 Rio De Janeiro, Brazil
[3] UERJ, FFP, BR-24435000 Sao Goncalo, Brazil
来源
BIOCERAMICS 21 | 2009年 / 396-398卷
关键词
Ca-deficient apatite; Mg substitution; Rietveld method; NEUTRON POWDER DIFFRACTION; BONE;
D O I
10.4028/www.scientific.net/KEM.396-398.277
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The incorporation of magnesium in the synthetic apatite has been associated with biomineralization process and osteoporosis therapy in human and animals. Magnesium easily replaces calcium in the apatite lattice and influences or controls the hydroxyapatite crystallization processes. In this work, Mg-substituted calcium deficient apatite, with Mg/Ca ratio = 0.1, 0.15 and 0.2 were synthesized by precipitation method. Then, sintered at 1000 degrees C and compared with a commercial product labeled as tricalcium, phosphate sintered at the 1000 degrees C. The sintered products showed tricalcium phosphate (beta-TCP) structure. The Mg2+ substitution in the Ca(4) and Ca(5) sites of beta-TCP and the lattice parameter changes were estimated using the Rietveld method. Using this method, the formulas Ca-2.73(Mg-0.27)(PO4)(2), Ca-2.71(Mg-0.29)(PO4)(2) and Ca-2.70(Mg0.23Mg0.07)(PO4)(2) were calculated for the samples with Mg/Ca ratio = 0.1, 0.15 and 0.2 respectively.
引用
收藏
页码:277 / 280
页数:4
相关论文
共 50 条
  • [21] Recommended X-ray single-crystal structure refinement and Rietveld refinement procedure for tremolite
    Ballirano, Paolo
    Celata, Beatrice
    Pacella, Alessandro
    Bosi, Ferdinando
    ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE CRYSTAL ENGINEERING AND MATERIALS, 2021, 77 : 537 - 549
  • [22] In situ synthesis of magnesium-substituted biphasic calcium phosphate and in vitro biodegradation
    Kim, Tae-Wan
    Lee, Hyeong-Shin
    Kim, Dong-Hyun
    Jin, Hyeong-Ho
    Hwang, Kyu-Hong
    Lee, Jong Kook
    Park, Hong-Chae
    Yoon, Seog-Young
    MATERIALS RESEARCH BULLETIN, 2012, 47 (09) : 2506 - 2512
  • [23] RIETVELD REFINEMENT OF THE CRYSTAL-STRUCTURE OF OLIVENITE - A TWINNED MONOCLINIC STRUCTURE
    BURNS, PC
    HAWTHORNE, FC
    CANADIAN MINERALOGIST, 1995, 33 : 885 - 888
  • [24] Weighting scheme for the minimization function in Rietveld refinement and the accuracy of structural parameters
    Toraya, H
    EPDIC 5, PTS 1 AND 2, 1998, 278-2 : 20 - 25
  • [25] STRUCTURE REFINEMENTS WITH A NEW VERSION OF THE RIETVELD-REFINEMENT PROGRAM RIETAN
    KIM, YI
    IZUMI, F
    NIPPON SERAMIKKUSU KYOKAI GAKUJUTSU RONBUNSHI-JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 1994, 102 (04): : 401 - 404
  • [26] Quantitative analysis of liquid-phase-sintered SiC by using the Rietveld method
    Ortiz, AL
    Cumbrera, FL
    Sánchez-Bajo, F
    Guiberteau, F
    Xu, H
    Padture, NP
    BOLETIN DE LA SOCIEDAD ESPANOLA DE CERAMICA Y VIDRIO, 2000, 39 (03): : 347 - 350
  • [27] X-ray Diffraction and Rietveld Refinement in Deferrified Clays for Forensic Science
    Prandel, Luis V.
    Melo, Vander de F.
    Brinatti, Andre M.
    Saab, Sergio da C.
    Salvador, Fabio A. S.
    JOURNAL OF FORENSIC SCIENCES, 2018, 63 (01) : 251 - 257
  • [28] Bayesian approach to the Rietveld refinement of Poisson-distributed powder diffraction data
    Bergmann, J.
    Monecke, T.
    JOURNAL OF APPLIED CRYSTALLOGRAPHY, 2011, 44 : 13 - 16
  • [29] Quantitative analysis of energetic materials with X-ray diffraction and Rietveld refinement
    Herrmann, M
    Engel, W
    EUROPEAN POWDER DIFFRACTION, PTS 1 AND 2, 2000, 321-3 : 60 - 64
  • [30] Rietveld refinement of the gadolinium strontium oxide SrGd2O4
    Chaker, H
    Kabadou, A
    Toumi, M
    Ben Hassen, R
    POWDER DIFFRACTION, 2003, 18 (04) : 288 - 292