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超薄膜纳米复合材料中钴铁氧体纳米颗粒的介电性能。

Dielectric properties of cobalt ferrite nanoparticles in ultrathin nanocomposite films.

机构信息

Universidade de Brasília, Instituto de Física, Brasília DF 70910-900, Brazil.

出版信息

Phys Chem Chem Phys. 2013 Dec 7;15(45):19853-61. doi: 10.1039/c3cp53602e. Epub 2013 Oct 22.

Abstract

Multilayered nanocomposite films (thickness 50-90 nm) of cobalt ferrite nanoparticles (np-CoFe2O4, 18 nm) were deposited on top of interdigitated microelectrodes by the layer-by-layer technique in order to study their dielectric properties. For that purpose, two different types of nanocomposite films were prepared by assembling np-CoFe2O4 either with poly(3,4-ethylenedioxy thiophene):poly(styrene sulfonic acid) or with polyaniline and sulfonated lignin. Despite the different film architectures, the morphology of both was dominated by densely-packed layers of nanoparticles surrounded by polyelectrolytes. The dominant effect of np-CoFe2O4 was also observed after impedance spectroscopy measurements, which revealed that dielectric behavior of the nanocomposites was largely influenced by the charge transport across nanoparticle-polyelectrolyte interfaces. For example, nanocomposites containing np-CoFe2O4 exhibited a single low-frequency relaxation process, with time constants exceeding 15 ms. At 1 kHz, the dielectric constant and the dissipation factor (tan δ) of these nanocomposites were 15 and 0.15, respectively. These values are substantially inferior to those reported for pressed pellets made exclusively of similar nanoparticles. Impedance data were further fitted with equivalent circuit models from which individual contributions of particle's bulk and interfaces to the charge transport within the nanocomposites could be evaluated. The present study evidences that such nanocomposites display a dielectric behavior dissimilar from that exhibited by their individual counterparts much likely due to enlarged nanoparticle-polyelectrolyte interfaces.

摘要

多层纳米复合薄膜(厚度 50-90nm)的钴铁氧体纳米粒子(np-CoFe2O4,18nm)通过层层技术沉积在叉指微电极上,以研究其介电性能。为此,通过组装 np-CoFe2O4 与聚(3,4-亚乙基二氧噻吩):聚(苯乙烯磺酸)或与聚苯胺和磺化木质素,制备了两种不同类型的纳米复合薄膜。尽管薄膜结构不同,但两种薄膜的形态都由纳米粒子紧密堆积层和聚电解质组成。阻抗谱测量也观察到了 np-CoFe2O4 的主要影响,这表明纳米复合材料的介电行为主要受到纳米粒子-聚电解质界面上的电荷传输的影响。例如,含有 np-CoFe2O4 的纳米复合材料表现出单一的低频弛豫过程,时间常数超过 15ms。在 1kHz 时,这些纳米复合材料的介电常数和损耗因子(tanδ)分别为 15 和 0.15。这些值明显低于仅由相似纳米粒子制成的压制颗粒报道的值。阻抗数据进一步用等效电路模型进行拟合,从该模型中可以评估颗粒体相和界面在纳米复合材料中对电荷传输的单独贡献。本研究表明,这些纳米复合材料表现出与它们各自的同类材料不同的介电行为,这很可能是由于纳米粒子-聚电解质界面的扩大。

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