Center for Electrochemistry, Department of Chemistry, The University of Texas at Austin, Austin, TX 78712 (USA).
Angew Chem Int Ed Engl. 2014 Oct 27;53(44):11859-62. doi: 10.1002/anie.201407937. Epub 2014 Sep 11.
We provide evidence of single attoliter oil droplet collisions at the surface of an ultra-microelectrode (UME) by the observation of simultaneous electrochemical current transients (i-t curves) and electrogenerated chemiluminescent (ECL) transients in an oil/water emulsion. An emulsion system based on droplets of toluene and tri-n-propylamine (2:1 v/v) emulsified with an ionic liquid and suspended in an aqueous continuous phase was formed by ultrasonification. When an ECL luminophore, such as rubrene, is added to the emulsion droplet, stochastic events can be tracked by observing both the current blips from oxidation at the electrode surface and the ECL blips from the follow-up ECL reaction, which produces light. This report provides a means of studying fundamental aspects of electrochemistry using the attoliter oil droplet and offers complementary analytical techniques for analyzing discrete collision events, size distribution of emulsion systems, and individual droplet electroactivity.
我们通过观察超微电极(UME)表面的单个皮升级油滴碰撞的同时电化学电流瞬变(i-t 曲线)和电致化学发光(ECL)瞬变,提供了在油/水乳液中存在单个皮升级油滴碰撞的证据。通过超声处理形成了一种基于甲苯和三正丙胺(2:1 v/v)的液滴与离子液体乳化并悬浮在水连续相中的乳液体系。当将 ECL 发光体(如芘)添加到乳液滴中时,可以通过观察来自电极表面氧化的电流尖峰和来自后续 ECL 反应的 ECL 尖峰来跟踪随机事件,该反应会产生光。本报告提供了一种使用皮升级油滴研究电化学基础方面的方法,并为分析离散碰撞事件、乳液体系的粒径分布和单个液滴的电活性提供了互补的分析技术。