论文标题
BI2O3和(BI0.7Y0.3)2O3中的声子和氧扩散
Phonons and Oxygen Diffusion in Bi2O3 and (Bi0.7Y0.3)2O3
论文作者
论文摘要
我们报告了BI2O3和(BI0.7Y0.3)2O3中声子和氧扩散的研究。使用非弹性中子散射在高温下,在高温高达1083 K的BI2O3中已经测量了声子光谱。 Ab-Initio计算已用于计算BI2O3中成分原子的个体贡献,而(BI0.7Y0.3)2O3对状态的总声子密度。我们的计算结果表明,随着温度的升高,状态振动密度的尖峰结构完全丧失。 Ab-Initio分子动力学模拟表明,即使在δ相BI2O3中1000 K时,BI-BI相关性仍然在晶格中排序,而O-O之间的相关性显示出液体如无序行为。在(BI0.70.3)2O3的情况下,在500 k左右扩大的O-O相关性表明在(BI0.7Y0.3)2O3中的这种低温下,氧电导率可能是可能的,尽管电导率远低于在Bi2O3的高温高温Δ-CHASE中观察到的电导率。该结果与氧气的计算出的扩散系数和通过Qens实验观察一致。我们的AB-INITIO分子动力学计算预测,在较低的温度下(BI0.7Y0.3)2O3可以实现宏观扩散,这更适合于技术应用。我们的研究阐明了δ-BI2O3和(BI0.7Y0.3)2O3中扩散的简易方向。
We report investigation of phonons and oxygen diffusion in Bi2O3 and (Bi0.7Y0.3)2O3. The phonon spectra have been measured in Bi2O3 at high temperatures up to 1083 K using inelastic neutron scattering. Ab-initio calculations have been used to compute the individual contributions of the constituent atoms in Bi2O3 and (Bi0.7Y0.3)2O3 to the total phonon density of states. Our computed results indicate that as temperature is increased, there is a complete loss of sharp peak structure in the vibrational density of states. Ab-initio molecular dynamics simulations show that even at 1000 K in δ-phase Bi2O3, Bi-Bi correlations remain ordered in the crystalline lattice while the correlations between O-O show liquid like disordered behavior. In the case of (Bi0.7Y0.3)2O3, the O-O correlations broadened at around 500 K indicating that oxygen conductivity is possible at such low temperatures in (Bi0.7Y0.3)2O3 although the conductivity is much less than that observed in the undoped high temperature δ-phase of Bi2O3. This result is consistent with the calculated diffusion coefficients of oxygen and observation by QENS experiments. Our ab-initio molecular dynamics calculations predict that macroscopic diffusion is attainable in (Bi0.7Y0.3)2O3 at much lower temperatures, which is more suited for technological applications. Our studies elucidate the easy directions of diffusion in δ-Bi2O3 and (Bi0.7Y0.3)2O3.