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Effect of Electrical Polarization on the Behavior of Bioactive Glass Containing MgO and B_2O_3 in SBf

机译:电极化对SBf中含MgO和B_2O_3的生物活性玻璃行为的影响

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摘要

We investigated the electrical polarizability of MgO and B_2O_3 containing bioactive glass (MBG). The MBG material with good manufacturing properties but low bioactivity was electrically polarized at a high dc field. The electrical polarizability of MBG was evaluated by thermally stimulated depolarization current (TSDC) measurements and immersion in simulated body fluid (SBF). The early precipitation of calcium phosphate on the negatively charged surface of the treated MBG demonstrated the increased bioactivity of the material and confirmed its polarizability. It is suggested that the electrical interactions between the polarized MBG and ions in SBF promoted the formation of the calcium phosphate precipitation. Accordingly, the increased bioactivity of the MBG in SBF is suggested to demonstrate the conversion of MBG into electrovector ceramics by the polarization treatment.
机译:我们研究了含MgO和B_2O_3的生物活性玻璃(MBG)的电极化率。具有良好制造性能但生物活性低的MBG材料在高dc电场下电极化。 MBG的电极化性通过热激发去极化电流(TSDC)测量和浸入模拟体液(SBF)中进行评估。磷酸钙在处理过的MBG带负电荷的表面上的早期沉淀表明该材料具有更高的生物活性,并证实了其极化性。建议极化的MBG与SBF中的离子之间的电相互作用促进了磷酸钙沉淀的形成。因此,建议MBG在SBF中增加的生物活性以证明通过极化处理MBG向电载体陶瓷的转化。

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