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首页> 外文期刊>Thin Solid Films >Interface and ion-induced optoelectronic effects in thin films of poly(p-phenylene)s functionalised with ion-transporting side chains
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Interface and ion-induced optoelectronic effects in thin films of poly(p-phenylene)s functionalised with ion-transporting side chains

机译:带有离子传输侧链功能化的聚对苯撑薄膜的界面和离子诱导的光电效应

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摘要

We report on investigations of thin films of homopolymers and copolymers consisting of a conjugated poly(p-phenylene) (PPP) backbone and oligo(ethylene oxide) (OEO) side chains of varying chain length in order to supply a conjugated backbone with an ion-transporting functionality. The optical properties of these polymeric mixed ionic-electronic conductors (PMIECs) reveal a response upon complexation of the OEO side chains with an alkali metal salt (lithium triflate). In addition, the rather polar nature of the OEO side chains and the non-polar nature of the PPP backbone can be applied to control the polymer/substrate interfacial properties. These topics were investigated by means of UV/VIS/NIR absorption measurements, along with photoinduced absorption spectroscopy. Infrared and Raman spectroscopy complemented this work to determine the amount of ion dissociation.
机译:我们报告了由共轭聚对苯撑(PPP)主链和不同链长的低聚环氧乙烷(OEO)侧链组成的均聚物和共聚物薄膜的研究,以便为共轭主链提供离子传输功能。这些聚合的混合离子电子导体(PMIEC)的光学特性显示OEO侧链与碱金属盐(三氟甲磺酸锂)络合后的响应。另外,OEO侧链的相当极性的性质和PPP主链的非极性性质可用于控制聚合物/底物的界面性质。通过UV / VIS / NIR吸收测量以及光诱导吸收光谱法研究了这些主题。红外和拉曼光谱对这项工作进行了补充,以确定离子的离解量。

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