Unique electrical properties of self-assembled ultra-thin polymer film

M. Onoda, K. Yoshino
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引用次数: 0

Abstract

The layer-by-layer self-assembly of charged polymers has recently emerged as a versatile means of processing conjugated polymers into ultra thin films with an unprecedented control over thickness and molecular architecture. To date, this method has been successfully utilized to manipulate conjugated and nonconjugated polyions, etc. Multilayer heterostructures have been designed and fabricated from various combinations of these materials to study properties unique to the specific supramolecular organizations created. In this paper, layer-by-layer self-assembly was used to fabricate extremely thin films of conducting polymers such as sulfonated polyaniline (SPAn) and poly(p-phenylene vinylene) (PPV). Finally, the fabrication of thin film light-emitting diodes based on self-assembled PPV active layers is described.
自组装超薄聚合物薄膜的独特电学性能
带电聚合物的逐层自组装最近成为一种将共轭聚合物加工成超薄膜的通用方法,对厚度和分子结构具有前所未有的控制。迄今为止,该方法已成功地用于处理共轭和非共轭多离子等。从这些材料的各种组合中设计和制造了多层异质结构,以研究所创建的特定超分子组织的独特性质。本文采用逐层自组装的方法制备了磺化聚苯胺(SPAn)和聚对苯乙烯(PPV)等导电聚合物的极薄薄膜。最后,介绍了基于自组装PPV有源层的薄膜发光二极管的制备方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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