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Electrical property of nanocrystalline γ-Fe _2O _3 under high pressure

机译:高压下纳米晶γ-Fe_2O _3的电性能

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摘要

Using a microcircuit fabricated on a diamond anvil cell, in situ conductivity measurements on nanophase (NP) γ-Fe _2O _3 are obtained under high pressure. For NP γ-Fe _2O _3, the abrupt increase in electrical conductivity occurs at a pressure of 21.3 GPa, corresponding to a transition from maghemite to hematite. Above 26.4 GPa, conductivity increases smoothly with increasing pressure. No distinct abnormal change is observed during decompression, indicating that transformation is irreversible. The temperature-dependence of the conductivity of NP γ-Fe _2O _3 was investigated at several pressures, indicating the electrical conductivity of the sample increases with increasing pressure and temperature, and that a remarkable phenomenon of discontinuity occurs at 400 K. The abnormal change is attributed to the electronic phase transitions of NP γ-Fe_2O _3 due to the variation of inherent cation vacancies. Besides, the temperature-dependence of the electrical conductivity displays semiconductor-like behavior before 33.0 GPa.
机译:使用在金刚石砧座上制造的微电路,可以在高压下对纳米相(NP)γ-Fe_2O _3进行原位电导率测量。对于NPγ-Fe_2O _3,在21.3 GPa的压力下电导率突然增加,这对应于从赤铁矿到赤铁矿的转变。高于26.4 GPa,电导率随压力的增加而平稳增加。减压过程中未观察到明显的异常变化,表明转化是不可逆的。在几个压力下研究了NPγ-Fe_2O _3的电导率与温度的关系,表明样品的电导率随压力和温度的升高而增加,并且在400 K时出现明显的间断现象。归因于固有阳离子空位的变化,NPγ-Fe_2O_3的电子相变。此外,电导率的温度依赖性在33.0 GPa之前显示出类似半导体的行为。

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