Department of Chemistry and Thomas Young Centre, University College London, 20 Gordon Street, London WC1H 0AJ, UK.
J Phys Chem B. 2012 Oct 18;116(41):12614-20. doi: 10.1021/jp304200f. Epub 2012 Oct 1.
The low solubility (high durability) of yttrium aluminosilicate (YAS) glass is one of its most important properties for use in in situ radiotherapy. Simple parameters, such as silica or yttria content or network connectivity, are not sufficient to rationalize the dependence of the solubility on the glass composition observed experimentally. We performed classical molecular dynamics (MD) simulations of eight different YAS glasses of known solubility and analyzed the MD trajectories to identify specific structural features that are correlated and can be used to predict the solubility. We show that the (Si-)O-Si coordination number CN(SiOSi), the yttrium-yttrium clustering ratio R(YY), and the number of intratetrahedral O-Si-O bonds per yttrium atom N(intra) can be combined into a single structural descriptor s = f(CN(SiOSi),R(YY),N(intra)) with a high correlation with the solubility. The parameter s can thus be calculated from MD simulations and used to predict the solubility of YAS compositions, allowing one to adjust them to the range required by radiotherapy applications. For instance, its trend shows that high-silica- and low-yttria-content YAS glasses should be sufficiently durable for the radiotherapy application, although additional clinical considerations may set a lower limit to the yttria content.
YAS 玻璃的低溶解度(高耐久性)是其在原位放射治疗中应用的最重要特性之一。简单的参数,如二氧化硅或氧化钇含量或网络连通性,不足以合理说明实验观察到的溶解度对玻璃成分的依赖性。我们对已知溶解度的八种不同 YAS 玻璃进行了经典的分子动力学(MD)模拟,并分析了 MD 轨迹,以确定与溶解度相关且可用于预测溶解度的特定结构特征。我们表明,(硅-)O-Si 配位数 CN(SiO-Si)、钇-钇聚集比 R(YY)和每个钇原子的四面体内 O-Si-O 键数 N(intra)可以组合成一个单一的结构描述符 s = f(CN(SiO-Si),R(YY),N(intra)),与溶解度高度相关。因此,可以从 MD 模拟中计算参数 s,并用于预测 YAS 成分的溶解度,从而可以调整它们以适应放射治疗应用所需的范围。例如,其趋势表明,高硅低钇含量的 YAS 玻璃应该足以耐受放射治疗应用,尽管额外的临床考虑可能会将钇含量设定为下限。