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An n- to p-type conductivity transition induced by oxygen adsorption on alpha-Fe2O3

机译:氧在α-Fe2O3上的吸附诱导n到p型电导率跃迁

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The simultaneous measurements of conductance and work function changes induced by gaseous ambient have been performed on alpha-Fe2O3 thick film polycrystalline samples kept at 280 degreesC and exposed to different gaseous atmospheres. The switching from n- to p-type conductivity on alpha-Fe2O3 is shown to have an electronic origin, which is due to the oxygen adsorption and formation of a surface inversion layer and, therefore, to the inversion of the surface conduction type. The modeling of the n-p switching is described in terms of conductance dependence on the band bending induced by gaseous ambient. (C) 2004 American Institute of Physics.
机译:由气态环境引起的电导和功函数变化的同时测量是在保持在280℃并暴露于不同气态气氛的α-Fe2O3厚膜多晶样品上进行的。已显示出在α-Fe2O3上从n型电导率转换为p型电导率具有电子起源,这是由于氧的吸附和表面反转层的形成,以及表面导电型的反转。 n-p开关的建模是根据电导率与气态环境引起的能带弯曲的相关性来描述的。 (C)2004美国物理研究所。

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