Dai LiDong, Wu Lei, Li HePing, Hu HaiYing, Zhuang YuKai, Liu KaiXiang
Key Laboratory of High-Temperature and High-Pressure Study of the Earth's Interior, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang, Guizhou 550081, People's Republic of China.
J Phys Condens Matter. 2016 Nov 30;28(47):475501. doi: 10.1088/0953-8984/28/47/475501. Epub 2016 Sep 16.
The electrical transport properties of undoped and yttrium-doped strontium titanate (Sr(Ti1 - x Y x )O3 - δ , x = 0, 0.02) under high pressure were investigated with in situ impedance spectroscopy measurements. A pressure-induced conductivity switching for undoped and 2 mole% Y-doped strontium titanate is observed at around ~10.0 and 7.0 GPa respectively, which are caused by a cubic to tetragonal I4/mcm phase transition. The decrease of the phase transition point of 2 mole% Y-doped strontium titanate can be attributed to larger Y(3+) atoms occupying the B-site and the creation of more oxygen vacancies, which lead to octahedra tilting and symmetry breaking. The results of the voltage-bias dependence of grain-boundary impedance of undoped and 2 mole% Y-doped strontium titanate at different pressures revealed that Schottky-type potential barriers formed at grain boundaries are the key factor for the accumulation of oxygen vacancy at the interface under pressure.
通过原位阻抗谱测量研究了未掺杂和钇掺杂钛酸锶(Sr(Ti1 - x Y x )O3 - δ ,x = 0, 0.02)在高压下的电输运性质。分别在约10.0 GPa和7.0 GPa处观察到未掺杂和2摩尔%钇掺杂钛酸锶的压力诱导电导率切换,这是由立方相向四方I4/mcm相变引起的。2摩尔%钇掺杂钛酸锶相变点的降低可归因于较大的Y(3+)原子占据B位以及产生更多的氧空位,这导致八面体倾斜和对称性破坏。未掺杂和2摩尔%钇掺杂钛酸锶在不同压力下晶界阻抗的电压偏置依赖性结果表明,在压力作用下,晶界处形成的肖特基型势垒是界面处氧空位积累的关键因素。