论文标题
苏打石灰磷脂中的密度扩散关系
Density-Diffusion Relationship in Soda-Lime Phosphosilicate
论文作者
论文摘要
植入人体时,生物活性眼镜释放离子,例如钠。但是,释放的离子过多会导致与细胞毒性有关的问题。离子释放控制被认为是开发新的生物活性眼镜的主要挑战之一。在这里,我们使用分子动力学模拟来研究原子磷酸化生物活性系统中原子动力学的影响。扩散系数显示了三个主要状态,密度增加。与其他元素相比,修饰符的迁移率受密度的增加,尤其是NA的增加显着影响。我们使用修改的Arrhenian模型访问45S5熔体的复杂动态行为,并通过评估网络连接性和配对熵熵来将其与结构变化相关联。总体而言,我们的结果提出了生物活性眼镜的合理设计的一步,以及控制生物活性玻璃离子释放的关键。
Bioactive glasses release ions such as sodium when implanted in the human body. However, an excess of the released ions can cause problems related to cytotoxicity. The ion release control is considered one of the primary challenges in developing new bioactive glasses. Here, we use molecular dynamics simulations to investigate the effect of the density on atoms' dynamics in an archetypal phosphosilicate bioactive system. The diffusion coefficient displays three main regimes with increasing density. The mobility of the modifiers is significantly affected by the increase of the density, especially Na, compared to other elements. We use a modified Arrhenian model to access the complex dynamic behavior of 45S5 melts and correlate it to the structural changes by evaluating the network connectivity and pair-excess entropy. Overall, our results present a step toward the rational design of bioactive glasses and a key to controlling the ion release of bioactive glasses.