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Poole-Frenkel effect in sputter-deposited CuAlO_(2+x) nanocrystals

机译:溅射沉积CuAlO_(2 + x)纳米晶体的Poole-Frenkel效应

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摘要

Field-assisted thermionic emission within a sputter-deposited, nanocrystalline thin film of CuAlO_(2.06) is observed for the first time, and explained in terms of the Poole-Frenkel model. The presence of adsorbed oxygen ions as trap-states at the grain boundary regions of the nanostructured thin film is considered to manifest this phenomenon. Under an applied field, the barrier of the trap potential is lowered and thermal emission of charge carriers takes place at different sample temperatures to induce nonlinearity in the current (I)-voltage (V) characteristics of the nanomaterial. Fitting of the Poole-Frenkel model with the I-V data shows that the nonlinearity is effective above 50 V under the operating conditions. Calculations of the energy of the trap level, acceptor level and Fermi level reveal the existence of deep level trap-states and a shallow acceptor level with acceptor concentration considerably higher than the trap-states. Hall measurements confirm the p-type semiconductivity of the film, with a hole concentration around 10~(18) cm~(-3). Thermopower measurements give a room-temperature Seebeck coefficient around 130 μV K~(-1). This temperature-dependent conductivity enhancement within CuAlO_2 nanomaterial may find interesting applications in transparent electronics and high-voltage applications for power supply networks.
机译:首次观察到溅射沉积的CuAlO_(2.06)纳米晶体薄膜中的场辅助热电子发射,并根据Poole-Frenkel模型进行了解释。认为在纳米结构的薄膜的晶界区域处存在作为阱态的吸附氧离子可以证明这一现象。在施加的电场下,陷阱电势的势垒降低,并且载流子的热发射在不同的样品温度下发生,以引起纳米材料的电流(I)-电压(V)特性的非线性。 I-V数据对Poole-Frenkel模型的拟合表明,在工作条件下,非线性在50 V以上有效。陷阱能级,受主能级和费米能级的能量计算表明存在深能级陷阱态和浅受主能级,受主浓度大大高于陷阱态。霍尔测量结果证实了薄膜的p型半导电性,其空穴浓度约为10〜(18)cm〜(-3)。热功率测量得出的室温塞贝克系数约为130μVK〜(-1)。 CuAlO_2纳米材料中这种与温度相关的电导率增强可能会在透明电子学和电源网络的高压应用中找到有趣的应用。

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