Institute of Mathematical and Physical Sciences, Aberystwyth University, Aberystwyth, Ceredigion SY23 3BZ, UK.
J Phys Chem B. 2010 May 6;114(17):5742-6. doi: 10.1021/jp907587e.
Containerless high energy X-ray diffraction measurements have been performed on molten Al(2)O(3)-SiO(2) as a function of composition. The data show a strong distortion of the SiO(4) tetrahedral units and a breakdown of intermediate range order as alumina is added. For silica-rich compositions, the X-ray pair distribution functions are consistent with the presence of 4-fold oxygen triclusters predicted by molecular dynamics simulations, where these liquids exhibit relatively high viscosities compared to other binary silicates. For higher alumina content liquids, the average cation-oxygen coordination number gradually increases with increasing Al(2)O(3) content, but the pair distribution functions change very little with composition, suggesting the increased presence of disordered AlO(n) (n = 4,5,6) polyhedra are associated with low viscosity melts. A comparison of the liquid and glassy X-ray pair distributions functions at the alumina-rich mullite composition indicate a significant distortion of the polyhedra in the melt, suggesting structural changes are temperature dependent.
已针对熔融 Al(2)O(3)-SiO(2)进行了无容器高能 X 射线衍射测量,其组成作为函数。数据表明,随着氧化铝的加入,SiO(4)四面体单元发生强烈变形,中间范围有序性破坏。对于富硅的成分,X 射线配分函数与分子动力学模拟预测的 4 重氧三簇的存在一致,与其他二元硅酸盐相比,这些液体具有相对较高的粘度。对于具有更高氧化铝含量的液体,随着 Al(2)O(3)含量的增加,平均阳离子-氧配位数逐渐增加,但配分函数随组成变化很小,表明无序 AlO(n)(n = 4,5,6)多面体的增加与低粘度熔体有关。富氧化铝莫来石组成的液体和玻璃态 X 射线配分函数的比较表明熔体中多面体发生了显著变形,表明结构变化与温度有关。