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首页> 外文期刊>Journal of the European Ceramic Society >Bioactivity modulation of Bioglass powder by thermal treatment
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Bioactivity modulation of Bioglass powder by thermal treatment

机译:通过热处理调节生物玻璃粉末的生物活性

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摘要

A discussion of the effects of Bioglass~R powder crystallisation on the in vitro bioactivity in simulated body fluid (SBF) is presented. Starting from Bioglass~R powder, different glass-ceramics were obtained by thermal treatments between 580 °C and 800 °C, with variable crystallisation content (from 10 to 92 wt%). All samples (glass and glass-ceramics) showed apatite formation at their surface when immersed in SBF. In case of the glass and the samples with lowest crystallinity, the first step of apatite formation involved a homogenous dissolution followed by an amorphous calcium phosphate (CaP) layer precipitation. For the samples with a high crystallisation content, heterogeneous dissolution occurred. For the first time, the Stevels number of the amorphous phase is used to explain the possible dissolution of the crystalline phase present in materials with a similar chemical composition of the Bioglass~R. All samples presented at 21 days of immersion in SBF B-type hydroxycarbonate apatite crystals.
机译:讨论了Bioglass〜R粉末结晶对模拟体液(SBF)中体外生物活性的影响。从Bioglass®R粉末开始,通过在580°C至800°C之间的热处理获得不同的玻璃陶瓷,其结晶含量可变(从10到92 wt%)。当浸入SBF中时,所有样品(玻璃和玻璃陶瓷)在其表面均显示出磷灰石形成。在玻璃和样品的结晶度最低的情况下,磷灰石形成的第一步涉及均匀溶解,然后沉淀无定形磷酸钙(CaP)层。对于具有高结晶含量的样品,发生了异质溶解。第一次,无定形相的Stevels数用于解释在具有类似于Bioglass®R化学成分的材料中存在的结晶相的可能溶解。所有样品浸入SBF B型羟基碳酸盐磷灰石晶体中21天。

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