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通过电极表面修饰增强电致化学发光的研究进展。

Insights into electrochemiluminescent enhancement through electrode surface modification.

机构信息

National Centre for Sensors Research, School of Chemical Sciences, Dublin City University, Dublin 9, Ireland.

出版信息

Analyst. 2013 Jan 21;138(2):677-82. doi: 10.1039/c2an36045d.

Abstract

The electrochemiluminescent (ECL) properties of a luminescent metal centre, Ru(bpy)(3), can be significantly modulated through its electronic interaction with neighbouring centres and the polymer backbone used to confine it on an electrode surface. From the perspective of ECL based sensing devices, an increase in the ECL efficiency of a metallopolymer film can result in enhanced sensor sensitivity and selectivity. This work probes the ECL properties of both conjugated, Ru(bpy)(2)(PPyBBIM)(10), and non-conjugated, Ru(bpy)(2)(PVP)(10), ruthenium based metallopolymer films based on a well documented reaction with sodium oxalate, where bpy is 2,2'-bipyridyl, PPYBBIM is poly[2-(2-pyridyl)-bibenzimidazole] and PVP is poly(4-vinylpyridine). Through a combination of ground state electrochemical studies and ECL measurements, the ECL efficiency for each film is determined. This study reveals that despite a dramatic influence in charge transfer rates between metal centres, as observed for the conducting polymer, mediated through the conducting polymer backbone, a corresponding increase in ECL efficiency is not always observed. The degree of communication between the adjacent excited state metal centres are an important consideration for ECL enhancement however self quenching, luminophore distribution and film porosity must also be considered.

摘要

具有发光金属中心的电化学发光(ECL)性质可以通过其与相邻中心的电子相互作用以及用于将其限制在电极表面上的聚合物主链来显著调节。从基于 ECL 的传感设备的角度来看,金属聚合物膜的 ECL 效率的增加可以导致传感器灵敏度和选择性的提高。这项工作探测了共轭Ru(bpy)(2)(PPyBBIM)(10)和非共轭Ru(bpy)(2)(PVP)(10)两种基于钌的金属聚合物膜的 ECL 性质,这两种金属聚合物膜都是基于与草酸钠的反应,其中 bpy 是 2,2'-联吡啶,PPYBBIM 是聚[2-(2-吡啶基)-双苯并咪唑],PVP 是聚(4-乙烯基吡啶)。通过对基态电化学研究和 ECL 测量的结合,确定了每个膜的 ECL 效率。这项研究表明,尽管对于导电聚合物观察到金属中心之间的电荷转移速率有明显的影响,这是通过导电聚合物主链介导的,但并不总是观察到 ECL 效率的相应增加。相邻激发态金属中心之间的通信程度对于 ECL 增强是一个重要的考虑因素,但是自猝灭、发光体分布和膜孔隙率也必须考虑。

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