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Effect of electric field polarization and temperature on the effective permittivity and conductivity of porous anodic aluminium oxide membranes

机译:电场极化和温度对多孔阳极氧化铝膜的有效介电常数和电导率的影响

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摘要

Porous insulators offer new opportunities for the controlled guest–host synthesis of nanowires for future integrated circuits characterized by low propagation delay, crosstalk and power consumption. We propose a method to estimate the effect of the electric field polarization and temperature on the electrical properties of different types of synthesized porous anodic aluminium oxide membranes. It results that the effective permittivity along the pore axis is generally 20% higher than the one in the orthogonal direction. The type of solution and the voltage level applied during anodization are the main parameters affecting the AAO templates characteristics, i.e. their porosity and chemical content. The values of permittivity of the final material, are typically in the range 2.6–3.2 for large pore diameter membranes including phosphorus element and having a low water content, and in the range 3.5–4 for the ones with smaller pores, and showing sulphur element incorporation. Moreover, the dc conductivity of the different membranes appears to be correlated to the pore density.
机译:多孔绝缘体为纳米线的受控客体-主体合成提供了新的机会,从而为未来的集成电路提供了低传播延迟,串扰和功耗的特点。我们提出了一种方法来估算电场极化和温度对不同类型的合成多孔阳极氧化铝膜电性能的影响。结果是,沿孔隙轴的有效介电常数通常比正交方向的有效介电常数高20%。阳极氧化过程中溶液的类型和施加的电压水平是影响AAO模板特性的主要参数,即其孔隙率和化学含量。对于大孔径的膜(包括磷元素且水分含量低),最终材料的介电常数通常在2.6–3.2的范围内,对于孔径较小且显示硫元素的膜,其介电常数的值通常在3.5–4的范围内成立。而且,不同膜的直流电导率似乎与孔密度有关。

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