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Effect of ammonium carbonate on formation of calcium-deficient hydroxyapatite through double-step hydrothermal processing

机译:碳酸铵对两步水热法形成缺钙羟基磷灰石的影响

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摘要

Double-step hydrothermal processing is a process where powder compacts of calcium phosphates are exposed to vapor of solvent solution, followed by being immersed in the solution. In the present study, we investigated the effects of ammonium carbonate on formation of calcium-deficient hydroxyapatite (CDHA) through double-step hydrothermal processing. The synthesized CDHA has high crystallinity when the solution has relatively low concentration of the ammonium carbonate ranging from 0.01 to 0.25 mol dm~3. Carbonate content in the prepared samples were distinctly increased with increasing the concentration of ammonium carbonate to indicate formation of carbonate-containing calcium-deficient hydroxyapatite (CHAp) with low crystallinity. Morphology of the CHAp formed on the compacts varied progressively from rods and rosette-like shape to irregular shape with increase in the initial concentration of the ammonium carbonate in the solution. Application of ammonium carbonate in the double-step hydrothermal processing allows fabrication of irregular-shaped CDHA containing carbonate ions in both phosphate and hydroxide site, with low crystallinity, when the initial concentration of ammonium carbonate was 0.5 mol dm~3 and more.
机译:双步水热处理是将磷酸钙粉末压块暴露在溶剂溶液的蒸气中,然后浸入溶液中的过程。在本研究中,我们研究了碳酸铵通过双步水热处理对缺钙羟基磷灰石(CDHA)形成的影响。当溶液具有相对低浓度的碳酸铵浓度为0.01至0.25mol dm〜3时,合成的CDHA具有高结晶度。所制备样品中的碳酸盐含量随碳酸铵浓度的增加而明显增加,表明形成了具有低结晶度的含碳酸盐的缺钙羟基磷灰石(CHAp)。随着溶液中碳酸铵初始浓度的增加,在压坯上形成的CHAp的形态从棒状和玫瑰状逐渐变为不规则形状。当碳酸铵的初始浓度为0.5mol dm〜3以上时,通过在碳酸氢铵的两步处理中使用碳酸铵,可以制造在磷酸盐和氢氧化物部位均含有碳酸根离子的不规则形状的CDHA,且结晶性低。

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  • 来源
    《Journal of materials science》 |2011年第2期|p.209-216|共8页
  • 作者单位

    Graduate School of Engineering, Nagoya University, B2-3(611),Furo-cho, Chikusa-ku, Nagoya 464-8603, Japan;

    Graduate School of Engineering, Nagoya University, B2-3(611),Furo-cho, Chikusa-ku, Nagoya 464-8603, Japan;

    Graduate School of Engineering, Nagoya University, B2-3(611),Furo-cho, Chikusa-ku, Nagoya 464-8603, Japan;

    Graduate School of Engineering, Nagoya University, B2-3(611),Furo-cho, Chikusa-ku, Nagoya 464-8603, Japan;

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