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Properties-Adjustable Alumina-Zirconia Nanolaminate Dielectric Fabricated by Spin-Coating

机译:旋涂法制备性能可调的氧化铝-氧化锆纳米叠层介质

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摘要

In this paper, an alumina-zirconia (Al2O3-ZrO2) nanolaminate dielectric was fabricated by spin-coating and the performance was investigated. It was found that the properties of the dielectric can be adjusted by changing the content of Al2O3/ZrO2 in nanolaminates: when the content of Al2O3 was higher than 50%, the properties of nanolaminates, such as the optical energy gap, dielectric strength (Vds), capacitance density, and relative permittivity were relatively stable, while the change of these properties became larger when the content of Al2O3 was less than 50%. With the content of ZrO2 varying from 50% to 100%, the variation of these properties was up to 0.482 eV, 2.12 MV/cm, 135.35 nF/cm2, and 11.64, respectively. Furthermore, it was demonstrated that the dielectric strength of nanolaminates were influenced significantly by the number (n) of bilayers. Every increment of one Al2O3-ZrO2 bilayer will enhance the dielectric strength by around 0.39 MV/cm (Vds ≈ 0.86 + 0.39n). This could be contributed to the amorphous alumina which interrupted the grain boundaries of zirconia.
机译:本文通过旋涂法制备了氧化铝-氧化锆(Al2O3-ZrO2)纳米层状电介质,并对其性能进行了研究。发现可以通过改变纳米层压板中Al2O3 / ZrO2的含量来调节电介质的性能:当Al2O3的含量高于50%时,纳米层压板的性能如光能隙,介电强度(Vds) ),电容密度和相对介电常数相对稳定,而当Al2O3的含量小于50%时,这些性能的变化变大。当ZrO2的含量在50%至100%之间变化时,这些性能的变化分别高达0.482 eV,2.12 MV / cm,135.35 nF / cm 2 和11.64。此外,已经证明,纳米层压体的介电强度受到双层数(n)的显着影响。每增加一层Al2O3-ZrO2双层,介电强度就会提高约0.39 MV / cm(Vds≈0.86 + 0.39n)。这可能导致无定形氧化铝中断了氧化锆的晶界。

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