纳米粉末乳剂在石蜡油中的介电性能

J. A. Mergos, M. D. Athanassopoulou, T. Argyropoulos, C. Dervos
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引用次数: 2

摘要

本文研究了绝缘有机液体石蜡油中纳米颗粒包体诱导的极化现象。在5% w/v的液体基质中测试了Al2O3、TiO2、CuO、Cu2O和Fe2O3的细金属氧化物粉末和纳米粉末。超声处理达到乳化效果。记录了纯油和乳剂在20 Hz-1 MHz频率范围内的相对介电常数和损耗正切(tand)。结果取决于晶粒尺寸和特定化合物。在氧化铝纳米颗粒的情况下,介电行为主要是由吸附水引起的颗粒表面极化现象。这种效应可以通过添加二氧化钛纳米粒子部分抵消。钛和氧化铁(在较小程度上)增加了中高频和高频的介电常数。铜(I)和(II)氧化物在频率范围的高端表现出明显的弛豫机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dielectric properties of nanopowder emulsions in paraffin oil
This work investigates polarization phenomena induced by nanoparticle inclusions in paraffin oil, an insulating organic liquid. Fine metal oxide powders and nanopowders of Al2O3, TiO2, CuO, Cu2O and Fe2O3 were tested at concentrations up to 5% w/v in the liquid matrix. Emulsification was attained by ultrasound treatment. The relative dielectric constant and loss tangent (tand) of both pure oil and emulsions were recorded in the 20 Hz–1 MHz frequency range. Results depend both on grain size and on the specific compound. In the case of alumina nanoparticles, dielectric behavior is dominated by grain surface polarization phenomena induced by adsorbed water. This effect can be partially cancelled out by the addition of titania nanoparticles. Titanium and (to a lesser extent) ferric oxide increased the dielectric constant at middle and high frequencies. Copper (I) and (II) oxides exhibit a distinct relaxation mechanism at the high end of the frequency range.
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