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alpha-tricalcium phosphate synthesis from amorphous calcium phosphate: structural characterization and hydraulic reactivity

机译:非晶磷酸钙的α-三钙合成:结构表征和液压反应性

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摘要

In the present study, amorphous tricalcium phosphate (TCP) has been synthetized by a wet route to obtain low temperature alpha-TCP at 650 degrees C (LT-alpha TCP) and compare its structural, physical-chemical and thermal properties with those of alpha-TCP obtained by the conventional solid-state reaction method at 1400 degrees C (HT-alpha TCP). Even if no significant differences were observed concerning the values of lattice parameters measured by Rietveld refinement, LT-alpha TCP presented lower crystallinity and higher crystal strains than HT-alpha TCP. The reactivity in water of the alpha-TCP obtained by the two different routes was assessed. Both raw samples appeared relatively inert in solution and did not favour the nucleation of calcium deficient apatite (CDA); the LT-alpha TCP and HT-alpha TCP were converted into apatite only after milling. The mechanical process leads to a decrease in crystallinity and the formation of an amorphous phase, which is supported in this work by Raman spectroscopy. The faster rate of conversion of milled LT-alpha TCP compared to HT-alpha TCP can be assigned to its higher specific surface area, lower crystallinity and higher residual crystal strain; these favour the dissolution of the alpha-TCP phase. Finally, the setting properties of alpha-TCP-based bone cements were compared regarding their synthesis route. Although the synthesis route does not significantly affect the setting times, the kinetic of conversion into CDA was faster for LT-alpha TCP than for HT-alpha TCP. Thus, the modulation of the dissolution rate of alpha-TCP-based cement determined by the preparation route and the grinding process allows control of the overall setting reaction.
机译:在本研究中,通过湿法合成了无定形磷酸三钙(TCP),以在650℃下获得低温α-TCP(LT-alpha-TCP),并将其结构、物理化学和热性能与在1400℃下通过常规固相反应方法获得的α-TCP(HT-alpha-TCP)进行了比较。即使通过Rietveld细化测量的晶格参数值没有显著差异,LT-alpha-TCP的结晶度和晶体应变也低于HT-alpha-TCP。评估了通过两种不同途径获得的α-TCP在水中的反应性。两种原始样品在溶液中表现出相对惰性,不利于缺钙磷灰石(CDA)的成核;LT-alpha-TCP和HT-alpha-TCP仅在研磨后转化为磷灰石。机械过程导致结晶度降低并形成非晶相,这一点在本研究中得到了拉曼光谱的支持。与HT-alpha-TCP相比,研磨LT-alpha-TCP的转化率更快,这可以归因于其更高的比表面积、更低的结晶度和更高的残余结晶应变;这些有利于α-TCP相的溶解。最后,就合成路线比较了α-TCP基骨水泥的固化性能。虽然合成路线对凝固时间没有显著影响,但LT-alpha-TCP转化为CDA的动力学比HT-alpha-TCP更快。因此,由制备路线和研磨过程确定的α-TCP基水泥溶解速率的调节允许控制整体凝固反应。

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  • 来源
    《Journal of Materials Science》 |2021年第24期|共15页
  • 作者单位

    Univ Toulouse 3 Paul Sabatier CIRIMAT Univ Toulouse CNRS INP ENSIACET 4 Allee Emile Monso F-31030 Toulouse 4 France;

    Univ Politecn Cataluna Biomat Biomech &

    Tissue Engn Grp Dept Mat Sci &

    Engn Av Eduard Maristany 10-14 Barcelona 08019 Spain;

    Univ Toulouse 3 Paul Sabatier CIRIMAT Univ Toulouse CNRS INP ENSIACET 4 Allee Emile Monso F-31030 Toulouse 4 France;

    Univ Toulouse 3 Paul Sabatier CIRIMAT Univ Toulouse CNRS INP ENSIACET 4 Allee Emile Monso F-31030 Toulouse 4 France;

    Univ Politecn Cataluna Biomat Biomech &

    Tissue Engn Grp Dept Mat Sci &

    Engn Av Eduard Maristany 10-14 Barcelona 08019 Spain;

    Univ Toulouse 3 Paul Sabatier CIRIMAT Univ Toulouse CNRS INP ENSIACET 4 Allee Emile Monso F-31030 Toulouse 4 France;

    Univ Toulouse 3 Paul Sabatier CIRIMAT Univ Toulouse CNRS INP ENSIACET 4 Allee Emile Monso F-31030 Toulouse 4 France;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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