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首页> 外文期刊>International Journal of Quantum Chemistry >Physico-chemical and thermochemical studies of the hydrolytic conversion of amorphous tricalcium phosphate into apatite
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Physico-chemical and thermochemical studies of the hydrolytic conversion of amorphous tricalcium phosphate into apatite

机译:非晶态磷酸三钙水解转化为磷灰石的物理化学和热化学研究

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摘要

The conversion of amorphous tricalcium phosphate with different hydration ratio into apatite in water at 25 ° C has been studied by microcalorimetry and several physical-chemical methods. The hydrolytic transformation was dominated by two strong exothermic events. A fast, relatively weak, wetting process and a very slow but strong heat release assigned to a slow internal rehydration and the crystallization of the amorphous phase into an apatite. The exothermic phenomenon related to the rehydration exceeded the crystalline transformation enthalpy. Rehydration occurred before the conversion of the amorphous phase into apatite and determined the advancement of the hydrolytic reaction. The apatitic phases formed evolved slightly with time after their formation. The crystallinity increased whereas the amount of HpO(4)(2-) ion decreased. These data allow a better understanding of the behavior of biomaterials involving amorphous phases such as hydroxyapatite plasma-sprayed coatings. © 2004 Elsevier Inc. All rights reserved.
机译:在25°C下,不同水合比的非晶态磷酸三钙在水中的转化为磷灰石;已经通过微量量热法和几种物理化学方法研究了C。水解转化主要由两个强烈的放热事件决定。快速,相对较弱的润湿过程以及非常缓慢但强烈的热释放,这导致缓慢的内部水化和非晶相结晶为磷灰石。与再水化有关的放热现象超过了结晶转化焓。在无定形相转化为磷灰石之前发生了水合,并确定了水解反应的进展。形成的脂蛋白阶段在形成后随时间略有发展。结晶度增加而HpO(4)(2-)离子的数量减少。这些数据可以更好地理解涉及非晶相的生物材料的行为,例如羟基磷灰石等离子喷涂涂层。 &复制; 2004 Elsevier Inc.保留所有权利。

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