Yan X Z, Goodson T
Department of Chemistry, University of Michigan, 930 N. University, Ann Arbor, Michigan 48109, USA.
J Phys Chem B. 2006 Aug 3;110(30):14667-72. doi: 10.1021/jp061522p.
New organic materials for the purpose of high speed capacitor applications are discussed. The effect of the microcrystalline size dependence of different polyaniline polymeric systems on the dielectric constant is investigated. Two different methods are described for the preparation of the polyaniline dielectric materials. By sonication polymerization, the prepared polyaniline with a suggested hyperbranched structure showed much larger microcrystalline domains in comparison to the conventional linear polyaniline. Investigations of the dielectric constant and capacitance at a relatively high frequency (>100 kHz) suggested that the system with the larger microcrystalline domains (hyperbranched) gives rise to a larger dielectric constant. The mechanism of the increased dielectric response at higher frequencies is investigated by EPR spectroscopy, and these results suggest that delocalized polarons may provide a way to enhance the dielectric response at high frequency.
讨论了用于高速电容器应用的新型有机材料。研究了不同聚苯胺聚合物体系的微晶尺寸依赖性对介电常数的影响。描述了两种制备聚苯胺介电材料的不同方法。通过超声聚合,与传统线性聚苯胺相比,制备的具有建议的超支化结构的聚苯胺显示出更大的微晶域。在相对高频(>100 kHz)下对介电常数和电容的研究表明,具有较大微晶域(超支化)的体系会产生更大的介电常数。通过电子顺磁共振光谱研究了高频下介电响应增加的机制,这些结果表明离域极化子可能提供一种增强高频介电响应的方法。