首页> 外文期刊>Journal of Electronic Materials >Study of Dielectric Behavior and Charge Conduction Mechanism of Poly(Vinyl Alcohol) (PVA)-Copper (Cu) and Gold (Au) Nanocomposites as a Bio-resorbable Material for Organic Electronics
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Study of Dielectric Behavior and Charge Conduction Mechanism of Poly(Vinyl Alcohol) (PVA)-Copper (Cu) and Gold (Au) Nanocomposites as a Bio-resorbable Material for Organic Electronics

机译:聚(乙烯醇)-铜(Cu)和金(Au)纳米复合材料作为有机电子可吸收材料的介电行为和电荷传导机理的研究

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摘要

Poly(vinyl alcohol) (PVA) embedded with varying concentrations of chemically synthesized copper (Cu) and gold (Au) nanoparticles (NPs) were prepared using ex situ sol-gel casting method. The addition of almost the same concentration of CuNPs in PVA improves the conducting properties, while that of AuNPs improves the dielectric nature of composite films. It has been found that addition of AuNPs up to similar to 0.4 wt.% concentration enhaneces the capacitive nature due to the formation of small Coulomb tunneling knots as internal capacitors. The dielectric studies suggest the Maxwell-Wagner interfacial polarization as the dominant dielectric relaxation process, whereas the I-V characteristics indicate bulk limited Poole-Frenkel emission at high voltages as the dominant charge transport mechanism operating at room temperature in all specimens. These novel features lead to the conclusion that addition of a small quantity of metal nanoparticles can help tune the properties of PVA for desired applications in bio-compatible polymer-based organic electronic devices.
机译:使用异位溶胶凝胶浇铸法制备了嵌入不同浓度的化学合成的铜(Cu)和金(Au)纳米粒子(NPs)的聚乙烯醇(PVA)。在PVA中添加几乎相同浓度的CuNPs可以改善导电性能,而AuNPs可以提高复合膜的介电性能。已经发现,由于形成小的库仑隧穿结作为内部电容器,添加高达约0.4重量%浓度的AuNP增强了电容性质。介电研究表明,Maxwell-Wagner界面极化是主要的介电弛豫过程,而I-V特性表明,高电压下的体积有限的Poole-Frenkel发射是在所有样品中在室温下工作的主要电荷传输机制。这些新颖的特征得出的结论是,添加少量金属纳米颗粒可以帮助调整PVA的性能,以用于生物相容性聚合物基有机电子设备中的所需应用。

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