论文标题
从头开始描述金红石TiO2中Ti位点的电场梯度的异常温度升高
Ab initio based description of the unusual temperature increase of the electric field gradient at Ti sites in rutile TiO2
论文作者
论文摘要
结合了TiO2金红石结构的精确Ab Inti算电子条带结构与Ti均方根位移的温度演化相结合,我们在TiO2的TI位点的电场梯度引起了令人困惑的温度升高。我们的方法采用了一个程序,即在其中心振动的球体内部平均两个四极电子密度成分(L = 2),在其中心,引入温度依赖性的关键因素是Debye-Waller因子的平方根。尽管Debye-Waller因子总是降低相应的傅立叶成分,但由于相反符号之间的相互作用,在TIO2中,它导致整个总和与温度的净增加,从而导致电场梯度的生长。定量地,我们发现电场梯度的增加仅是实验值的一半,我们将其归因于Anharmonic效应或强大的氧气位置影响。另外,我们的方法再现了不对称参数ETA的异常温度依赖性,该参数首先随温度而降低,然后增加,然后增加。
Combining a precise ab initio electron band structure calculation of the TiO2 rutile structure with the temperature evolution of the Ti mean-square displacements, we reproduce a puzzling temperature increase of the electric field gradient at Ti sites in TiO2, observed experimentally. Our method employs a procedure of averaging two quadrupole electron density components (L = 2) inside a sphere vibrating with the Ti nucleus at its center, where the key factor introducing the temperature dependence is the square root of the Debye-Waller factor. Although the Debye-Waller factor always reduces the corresponding Fourier component, in TiO2 due to the interplay between terms of opposite signs, it results in a net increase of the whole sum with temperature, leading to the growth of the electric field gradient. Quantitatively, we find that the increase of electric field gradient is only half of the experimental value, which we ascribe to anharmonic effects or a strong oxygen position influence. In addition, our method reproduces the unusual temperature dependence of the asymmetry parameter eta, which first decreases with temperature, goes to zero and then increases.