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高分子电解质层内的发光金属配合物:电子和能量转移的调节。

Luminescent metal complexes within polyelectrolyte layers: tuning electron and energy transfer.

机构信息

Intelligent Polymer Research Institute and ARC Centre of Excellence for Electromaterials Science, AIIM Facility, Innovation Campus, University of Wollongong, Fairy Meadow, NSW 2519, Australia.

出版信息

Langmuir. 2009 Dec 15;25(24):14053-60. doi: 10.1021/la901661v.

Abstract

The electrochemical and photophysical properties of a luminescent metal center, Os(bpy)(3), are significantly modified by encapsulation within a conducting polymer composite film. Cyclic voltammetry reveals that the encapsulation in an inherently conducting polymer, polyaniline (Pani) or polypyrrole (PPy), can dramatically influence the charge-transfer rates between the metal centers. The increased electron transport, most likely mediated through the conducting polymer backbone, significantly enhances the electrochemiluminescence (ECL) efficiency. The increased communication between adjacent metal centers can also result in other interesting properties, such as photoinduced electron-transfer processes. In situ electron spin resonance (ESR) spectroscopy has been used to probe the photo-oxidation of an osmium metal center encapsulated in a PPy composite film. The irradiation of PPy in the presence of the osmium metal center resulted in the photo-oxidation of the Os(2+) to Os(3+) state and the consequent reduction of the PPy polyelectrolyte. The degree of communication between luminescent metal centers allows the composite properties to be tuned for various applications including ECL sensor devices and light-switching and light-harvesting systems.

摘要

发光金属中心Os(bpy)(3)的电化学和光物理性质通过封装在导电聚合物复合膜中得到显著修饰。循环伏安法表明,封装在本征导电聚合物聚苯胺(Pani)或聚吡咯(PPy)中可以极大地影响金属中心之间的电荷转移速率。电子传输的增加,很可能是通过导电聚合物主链介导的,显著提高了电化学发光(ECL)效率。相邻金属中心之间增加的通信也可能导致其他有趣的性质,例如光诱导电子转移过程。原位电子顺磁共振(ESR)光谱已被用于探测封装在 PPy 复合膜中的锇金属中心的光氧化过程。在存在锇金属中心的情况下辐照 PPy,导致 Os(2+)光氧化为 Os(3+)态,并随后还原 PPy 聚电解质。发光金属中心之间的通信程度可以调整复合性质,以适应各种应用,包括 ECL 传感器设备以及光开关和光捕获系统。

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