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通过分子动力学模拟研究 45S5 生物活性玻璃中镓和铝的结构作用。

Study of the structural role of gallium and aluminum in 45S5 bioactive glasses by molecular dynamics simulations.

机构信息

Department of Chemical and Geological Sciences, University of Modena and Reggio Emilia, via G. Campi 183, 41125 Modena, Italy.

出版信息

J Phys Chem B. 2013 Apr 18;117(15):4142-50. doi: 10.1021/jp400721g. Epub 2013 Apr 4.

Abstract

The structural properties of phosphosilicate glasses based on the 45S5 Bioglass doped with gallium and aluminum (46.2 SiO2·24.3Na2O·26.9CaO·2.6P2O5·1.0X2O3, X = Ga or Al) are investigated by means of classical molecular dynamics simulations. Structural features of the two compositions are compared with those of the original 45S5 Bioglass in order to relate them to the different known bioactivities of these materials. Differences in the coordination environments of Ga and Al, network connectivity, and ion aggregation reveal a microscopic model of these glasses which supports the interpretation of the experimental data and provides new insight into the different biological behaviors of Ga- and Al-containing phosphosilicate glasses. Although Ga is found predominantly in a 4-fold coordination environment, small amounts of 5- and 6-fold coordinated atoms have been detected depending on the interatomic potential model employed. This suggests its possible intermediate role in phosphosilicate glasses. On the contrary, Al plays a network former role and leads to glasses with a more polymerized structure. Interestingly, the results show an increased propensity for aggregation of the Ca(2+) and PO4(3-) ions in the Al-containing phosphosilicate glasses with respect to the Ga-containing ones. This leads to insoluble calcium-phosphate-rich regions not detected in the bioactive glasses.

摘要

通过使用经典分子动力学模拟研究了掺镓和掺铝的 45S5 生物玻璃基磷硅酸盐玻璃的结构性质(46.2SiO2·24.3Na2O·26.9CaO·2.6P2O5·1.0X2O3,X = Ga 或 Al)。比较了这两种组成的结构特征与原始 45S5 生物玻璃的结构特征,以将它们与这些材料的不同已知生物活性联系起来。Ga 和 Al 的配位环境、网络连接和离子聚集的差异揭示了这些玻璃的微观模型,该模型支持对实验数据的解释,并为含 Ga 和 Al 的磷硅酸盐玻璃的不同生物学行为提供了新的见解。尽管 Ga 主要以 4 配位环境存在,但根据所使用的原子间势能模型,检测到少量的 5 配位和 6 配位原子。这表明它在磷硅酸盐玻璃中可能具有中间作用。相反,Al 起网络形成剂的作用,导致玻璃具有更聚合的结构。有趣的是,结果表明,与含 Ga 的磷硅酸盐玻璃相比,含 Al 的磷硅酸盐玻璃中 Ca(2+)和 PO4(3-)离子的聚集倾向增加。这导致在生物活性玻璃中未检测到不溶性富钙磷酸盐区域。

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