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二维电化学发光:在受发光体接枝微凝胶稳定的乳液中,在油水界面处限制的光发射。

Two-Dimensional Electrochemiluminescence: Light Emission Confined at the Oil-Water Interface in Emulsions Stabilized by Luminophore-Grafted Microgels.

机构信息

Université de Bordeaux, Bordeaux INP, ISM, UMR CNRS 5255 , 33607 Pessac, France.

出版信息

Langmuir. 2017 Jul 25;33(29):7231-7238. doi: 10.1021/acs.langmuir.7b01585. Epub 2017 Jul 12.

DOI:10.1021/acs.langmuir.7b01585
PMID:28669191
Abstract

We describe a method to confine electrochemiluminescence (ECL) at the oil-water interface of emulsion droplets that are stabilized by luminophore-grafted microgels. These hydrogel nanoparticles incorporating covalently bound Ru(bpy) as the luminophore are irreversibly adsorbed at the interface of micrometric oil droplets dispersed in a continuous aqueous phase. We study the electrochemical and ECL properties of this multiscale system, composed of a collection of droplets in close contact in the presence of two types of model coreactants. ECL emission is observed upon oxidation of the coreactant and of the luminophore. ECL imaging confirms that light is emitted at the surface of oil droplets. Interestingly, light emission is observed more than 100 μm far from the electrode. It is possibly due to the interconnection between redox-active microgels, making an entangled two-dimensional network at the dodecane-water interface and/or to some optical effects related to the light propagation and refraction at different interfaces in this multiphasic system. Confining ECL in such an inhomogeneous medium should find promising applications in the study of compartmentalized systems, interfacial phenomena, sensors, and analysis of single oil droplets.

摘要

我们描述了一种在乳液液滴的油水界面限制电化学发光(ECL)的方法,该乳液液滴由发光体接枝的微凝胶稳定。这些包含共价结合的 Ru(bpy)作为发光体的水凝胶纳米颗粒不可逆地吸附在分散在连续水相中的微米级油滴的界面上。我们研究了由在两种模型共反应物存在下紧密接触的液滴集合组成的多尺度系统的电化学和 ECL 性质。在共反应物和发光体的氧化时观察到 ECL 发射。ECL 成像证实光在油滴的表面发射。有趣的是,在距离电极 100μm 以上的地方观察到光发射。这可能是由于氧化还原活性微凝胶之间的互连,在十二烷-水界面形成了缠结的二维网络,和/或与在这种多相系统中不同界面的光传播和折射有关的一些光学效应。在这种不均匀的介质中限制 ECL 应该在分隔系统、界面现象、传感器和单个油滴分析的研究中找到有前途的应用。

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