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Fabrication of Carbonate Apatite Block through a Dissolution–Precipitation Reaction Using Calcium Hydrogen Phosphate Dihydrate Block as a Precursor

机译:以磷酸氢钙二水合物为先驱体通过沉淀-沉淀反应制备碳酸盐磷灰石块

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摘要

Carbonate apatite (CO3Ap) block, which is a bone replacement used to repair defects, was fabricated through a dissolution–precipitation reaction using a calcium hydrogen phosphate dihydrate (DCPD) block as a precursor. When the DCPD block was immersed in NaHCO3 or Na2CO3 solution at 80 °C, DCPD converted to CO3Ap within 3 days. β-Tricalcium phosphate was formed as an intermediate phase, and it was completely converted to CO3Ap within 2 weeks when the DCPD block was immersed in Na2CO3 solution. Although the crystal structures of the DCPD and CO3Ap blocks were different, the macroscopic structure was maintained during the compositional transformation through the dissolution–precipitation reaction. CO3Ap block fabricated in NaHCO3 or Na2CO3 solution contained 12.9 and 15.8 wt % carbonate, respectively. The diametral tensile strength of the CO3Ap block was 2 MPa, and the porosity was approximately 57% regardless of the carbonate solution. DCPD is a useful precursor for the fabrication of CO3Ap block.
机译:碳酸盐磷灰石(CO3Ap)块是用于修复缺损的骨替代物,是通过溶解-沉淀反应使用磷酸氢钙二水合物(DCPD)块作为前体制成的。将DCPD块浸入80°C的NaHCO3或Na2CO3溶液中时,DCPD在3天内转化为CO3Ap。形成了β-磷酸三钙作为中间相,当DCPD块浸入Na2CO3溶液中后2周内,它已完全转化为CO3Ap。尽管DCPD和CO3Ap嵌段的晶体结构不同,但通过溶解-沉淀反应在组成转变过程中仍保持了宏观结构。在NaHCO3或Na2CO3溶液中制备的CO3Ap嵌段分别包含12.9和15.8 wt%的碳酸盐。与碳酸盐溶液无关,CO 3 Ap嵌段的径向拉伸强度为2MPa,并且孔隙率为约57%。 DCPD是制造CO3Ap嵌段的有用前体。

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