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首页> 外文期刊>Acta biomaterialia >Biomimetic apatite sintered at very low temperature by spark plasma sintering: physico-chemistry and microstructure aspects.
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Biomimetic apatite sintered at very low temperature by spark plasma sintering: physico-chemistry and microstructure aspects.

机译:通过火花等离子体烧结在非常低温下烧结生物料理磷灰石:物理化学和微观结构方面。

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摘要

Nanocrystalline apatites analogous to bone mineral are very promising materials for the preparation of highly bioactive ceramics due to their unique intrinsic physico-chemical characteristics. Their surface reactivity is indeed linked to the presence of a metastable hydrated layer on the surface of the nanocrystals. Yet the sintering of such apatites by conventional techniques, at high temperature, strongly alters their physico-chemical characteristics and biological properties, which points out the need for "softer" sintering processes limiting such alterations. In the present work a non-conventional technique, spark plasma sintering, was used to consolidate such nanocrystalline apatites at non-conventional, very low temperatures (T<300 degrees C) so as to preserve the surface hydrated layer present on the nanocrystals. The bioceramics obtained were then thoroughly characterized by way of complementary techniques. In particular, microstructural, nanostructural and other major physico-chemical features were investigated and commented on. This work adds to the current international concern aiming at improving the capacities of present bioceramics, in view of elaborating a new generation of resorbable and highly bioactive ceramics for bone tissue engineering.
机译:与骨矿物类似的纳米晶磷灰石是非常有希望的材料,用于制备高度生物活性陶瓷,因为它们独特的内在物理化学特性。它们的表面反应性确实与纳米晶体表面上的亚稳水合层的存在相关联。然而,在高温下,通过常规技术烧结这种磷灰石,强烈改变它们的物理化学特性和生物特性,这指出了对限制这些改变的“更柔软”的烧结过程的需要。在本作工作中,使用非常规技术火花血浆烧结,用于在非常规的非常低的温度(T 300℃)下巩固这种纳米晶磷灰石,以便保持存在于纳米晶体上的表面水合层。然后通过互补技术彻底地表征获得的生物陶瓷。特别地,研究了微观结构,纳米结构和其他主要的物理化学特征和评论。鉴于阐述骨组织工程的新一代可再生和高度生物活跃的陶瓷,本作旨在提高现有杀生物陶瓷的能力的目前的国际问题。

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