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首页> 外文期刊>Journal of the European Ceramic Society >Design and processing of ZnO doped tricalcium phosphate based materials: Influence of β/α polymorph phase assemblage on microstructural evolution
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Design and processing of ZnO doped tricalcium phosphate based materials: Influence of β/α polymorph phase assemblage on microstructural evolution

机译:ZnO掺杂的磷酸三钙基材料的设计和加工:β/α多晶型物相组装对微观结构演变的影响

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摘要

Tricalcium phosphate (TCP) based biomaterials are excellent candidates in hard tissue engineering due to their similarity to the natural bone composition and outstanding properties. The presence of additives such as (Mg~(2+), Zn~(2+), F~-, CO_3~(2-) and/or SiO_4 ) in solid solution in the structure of TCP, affects the stability of its different polymorphs and therefore the properties of TCP based biomaterials. It is known that the incorporation of zinc in TCP in the non-toxic level stimulates bone growth and its mineralization, hence its interest. Nevertheless its effect on phase assemblage and microstructure evolution has not been clearly established. The main purpose of this study was to synthesize TCP and zinc doped monophasic/biphasic α/β-TCP dense biomaterials, by solid-state sintering process, with different ZnO contents and controlled phase proportions and microstructure on the final material. The effect of ZnO content and sintering temperature on phase assemblage, densification and microstructural evolution has been investigated.
机译:基于磷酸三钙(TCP)的生物材料由于其与天然骨骼组成的相似性和出色的性能而成为硬组织工程中的优秀候选材料。 TCP结构中固溶体中存在(Mg〜(2 +),Zn〜(2 +),F〜-,CO_3〜(2-)和/或SiO_4等添加剂,影响其稳定性。不同的多晶型物,因此基于TCP的生物材料的特性。已知以无毒程度将锌掺入TCP会刺激骨骼生长及其矿化作用,因此引起人们的兴趣。然而,其对相组装和微结构演变的影响尚未明确建立。这项研究的主要目的是通过固态烧结工艺,在最终材料上合成具有不同ZnO含量,可控相比例和微观结构的TCP和锌掺杂的单相/双相α/β-TCP致密生物材料。研究了ZnO含量和烧结温度对相组成,致密化和微观组织演变的影响。

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