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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Gravure printed sol-gel derived AlOOH hybrid nanocomposite thin films for printed electronics
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Gravure printed sol-gel derived AlOOH hybrid nanocomposite thin films for printed electronics

机译:凹版印刷溶胶-凝胶衍生的AlOOH杂化纳米复合薄膜,用于印刷电子产品

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摘要

We report a sol-gel approach to fabricate aluminum oxyhydroxide (AlOOH)-based inks for the gravure printing of high-dielectric-constant nanocomposite films. By reacting 3-glycidoxypropyl-trimethoxysilane (GPTS) with aluminum oxyhydroxide (AlOOH) nanoparticles under constant bead milling, inks suitable for gravure printing were obtained. The calculated relative dielectric constants based on the measured capacitances and film thicknesses for the gravure-printed GPTS : AlOOH nanocomposites varied between 7 and 11 at a frequency of 10 kHz. The dielectric constant depended on the mixing ratio of the composite and was found to follow the Maxwell-Garnett ternary-system mixing rule, indicating the presence of microanopores, which affect the electrical properties of the fabricated films. An increasing leakage current with increasing AlOOH content was observed. The high leakage current was reduced by printing two-layer films. The double-layered gravure-coated films exhibited a similar capacitance density, but a clearly lower leakage current and fewer electrical breakdowns compared to single-layered films with comparable film compositions and film thicknesses. The best composite yielded a capacitance density of 109 +/- 2 pF mm(-2) at 10 kHz frequency and a leakage current density of 60 +/- 20 mu A cm(-2) at a 0.5 MV cm(-1) electric field as a single layer. The calculated relative dielectric constant at 10 kHz frequency for this composition was 11.2 +/- 0.5.
机译:我们报告了溶胶-凝胶方法来制造用于高介电常数纳米复合膜凹版印刷的氢氧化铝(AlOOH)基油墨。通过使3-环氧丙氧基丙基-三甲氧基硅烷(GPTS)与氢氧化铝(AlOOH)纳米粒子在恒定的珠磨条件下反应,获得了适用于凹版印刷的油墨。基于凹版印刷的GPTS:AlOOH纳米复合材料的测量电容和薄膜厚度,计算出的相对介电常数在10 kHz的频率范围内介于7和11之间。介电常数取决于复合材料的混合比,并且发现其遵循Maxwell-Garnett三元系统混合规则,表明存在微孔/纳米孔,这会影响所制备薄膜的电性能。观察到随着AlOOH含量的增加泄漏电流增加。通过印刷两层膜可以降低高漏电流。与具有可比的膜组成和膜厚度的单层膜相比,双层凹版涂布膜表现出相似的电容密度,但是明显更低的泄漏电流和更少的电击穿。最好的复合材料在10 kHz频率下产生的电容密度为109 +/- 2 pF mm(-2),在0.5 MV cm(-1)的情况下产生的泄漏电流密度为60 +/- 20μAcm(-2)电场作为单层。对于该组合​​物,在10kHz频率下计算的相对介电常数为11.2 +/- 0.5。

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