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Long-term water sorption and solubility of experimental bioactive composites based on amorphous calcium phosphate and bioactive glass

机译:基于非晶磷酸钙和生物活性玻璃的实验生物活性复合材料的长期吸水和溶解度

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摘要

The aim of this study was to evaluate water sorption and solubility of two series of experimental composites containing amorphous calcium phosphate (ACP) or bioactive glass (BG). Water sorption and solubility were measured for up to 287 days. The surface precipitation of calcium phosphates was evaluated by scanning electron microscopy. The ACP-series showed higher water sorption (223–568 μg/mm~(3)) than the BG-series (40–232 μg/mm~(3)). In contrast, the ACP-series had generally lower solubility (37–106 μg/mm~(3)) than the BG-series (1–506 μg/mm~(3)). The constant specimen mass for the ACP-series was attained after 14 days of water immersion, while the mass decrease due to long-term solubility in the BG-series lasted beyond 287 days. Calcium phosphates precipitated in composites with the BG filler loading of 10 wt% or more, as well as in all of the ACP-containing composites. The experimental composite series showed water sorption and solubility considerably higher than commercial materials.
机译:该研究的目的是评估含有无定形磷酸钙(ACP)或生物活性玻璃(BG)的两系列实验复合材料的水吸附和溶解性。测量水吸附和溶解度最多287天。通过扫描电子显微镜评估磷酸钙的表面沉淀。 ACP系列显示出比BG系列(40-232μg/ mm〜(3))更高的吸水吸附(223-568μg/ mm〜(3))。相反,ACP系列通常比BG系列(1-506μg/ mm〜(3))溶解度较低(37-106μg/ mm〜(3))。在水浸14天后,达到ACP系列的恒定样品质量,而BG系列中长期溶解度的质量降低持续超过287天。磷酸钙以复合材料沉淀,Bg填料负载量为10wt%以上,以及所有含ACP复合材料。实验性复合系列显示出水吸附和溶解度远远高于商业材料。

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