论文标题
压力调整nanio $ _2 $中的Jahn-Teller过渡温度
Pressure tuning the Jahn-Teller transition temperature in NaNiO$_2$
论文作者
论文摘要
Nanio $ _2 $是一种分层材料,由Nao $ _6 $的交替层和Jahn-Teller-Active Nio $ _6 $ Edge-Edge共享octoctra。在环境压力下,它经历了从单斜角到菱形结构的广泛过渡到$ \ sim $ 465 k和$ \ sim $ 495 K之间的,与远程轨道订购的损失有关。在这项工作中,我们介绍了一项对粉末的NANIO $ _2 $的中子粉末衍射研究的结果,这是从环境压力到$ \ sim $ 5 GPA在290 K和490 K之间的压力和温度的函数。290K和460 K和460 K等均质压缩在Monoclinic阶段中均在整个Monoclinic阶段到最大压力在整个过程中,而不是490 k在490 k的最大压力中。单位电池量安装在二阶Birch-Murnaghan状态方程中,$ b = 113(1)$ GPA。我们在490 K时观察到,Jahn-Teller延伸相的比例随着压力的增加而增加,从0.71(2)GPA的67.8(6)%到4.20(6)GPA的80.2(9)%。使用此观察结果,与中子衍射测量值(从5.46(9)GPA到0.342(13)GPA)的中子衍射测量结果,我们表明Jahn-Teller Teller Transition温度随压力而增加。我们的结果用于呈现Nanio $ _2 $的结构压力温度相图。据我们所知,这是对压力对带有边缘共享Jahn-Teller延伸的材料中压力对Jahn Teller Transition温度的影响的首次衍射研究,也是对JT活性边缘共享镍酸盐的首次可变压力研究。
NaNiO$_2$ is a layered material consisting of alternating layers of NaO$_6$ and Jahn-Teller-active NiO$_6$ edge-sharing octahedra. At ambient pressure it undergoes a broad phase transition from a monoclinic to rhombohedral structure between $\sim$465 K and $\sim$495 K, associated with the loss of long-range orbital ordering. In this work, we present the results of a neutron powder diffraction study on powdered NaNiO$_2$ as a function of pressure and temperature from ambient pressure to $\sim$5 GPa between 290 K and 490 K. The 290 K and 460 K isothermal compressions remained in the monoclinic phase up to the maximum pressures studied, whereas the 490 K isotherm was mixed-phase throughout. The unit-cell volume was fitted to a 2nd-order Birch-Murnaghan equation of state, with $B=113(1)$ GPa. We observe at 490 K that the fraction of Jahn-Teller-distorted phase increases with increasing pressure, from 67.8(6)% at 0.71(2) GPa to 80.2(9)% at 4.20(6) GPa. Using this observation, in conjunction with neutron diffraction measurements at 490 K from 5.46(9) GPa to 0.342(13) GPa, we show that the Jahn-Teller transition temperature increases with pressure. Our results are used to present a structural pressure-temperature phase diagram for NaNiO$_2$. To our knowledge, this is the first diffraction study of the effect of pressure on the Jahn-Teller transition temperature in materials with edge-sharing Jahn-Teller-distorted octahedra, and the first variable-pressure study on a JT-active edge-sharing nickelate.