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Electrically Insulating Plasma Polymer/ZnO Composite Films

机译:电绝缘等离子聚合物/ ZnO复合膜

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摘要

In this report, the electrical properties of plasma polymer films functionalized with ZnO nanoparticles were investigated with respect to their potential applications in biomaterials and microelectronics fields. The nanocomposite films were produced using a single-step method that combines simultaneous plasma polymerization of renewable geranium essential oil with thermal decomposition of zinc acetylacetonate Zn(acac) . The input power used for the deposition of composites were 10 W and 50 W, and the resulting composite structures were abbreviated as Zn/Ge 10 W and Zn/Ge 50 W, respectively. The electrical properties of pristine polymers and Zn/polymer composite films were studied in metal–insulator–metal structures. At a quantity of ZnO of around ~1%, it was found that ZnO had a small influence on the capacitance and dielectric constants of thus-fabricated films. The dielectric constant of films with smaller-sized nanoparticles exhibited the highest value, whereas, with the increase in ZnO particle size, the dielectric constant decreases. The conductivity of the composites was calculated to be in the in the range of 10 –10 Ω m , significantly greater than that for the pristine polymer, the latter estimated to be in the range of 10 –10 Ω m .
机译:在本报告中,针对其在生物材料和微电子领域中的潜在应用,研究了用ZnO纳米粒子功能化的等离子聚合物薄膜的电性能。使用将可再生天竺葵精油的同时等离子体聚合与乙酰丙酮锌Zn(acac)的热分解相结合的一步法生产纳米复合膜。用于沉积复合材料的输入功率为10 W和50 W,所得复合材料结构分别缩写为Zn / Ge 10 W和Zn / Ge 50W。在金属-绝缘体-金属结构中研究了原始聚合物和Zn /聚合物复合膜的电性能。发现在约1%的ZnO量下,ZnO对如此制造的膜的电容和介电常数的影响很小。纳米粒子尺寸较小的薄膜的介电常数显示出最大值,而随着ZnO粒径的增加,介电常数降低。计算出的复合材料的电导率在10 – 10Ωm的范围内,大大高于原始聚合物的电导率,后者估计在10 –10Ωm的范围内。

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