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Electrochemiluminescence of Tris(2,2′-bipyridine)ruthenium(II)/Tri-n-propylamine with an Electric Contactless Power Transfer System

机译:TRIS(2,2'-硼烷)钌(II)/三-I> N-/ I>具有电绝缘电力转移系统的电化学发光

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摘要

An electrochemiluminescence (ECL) analytical device was developed using an electric contactless power transfer system. A mutually induced electromotive voltage was generated by wrapping an enameled wire around a commercial contactless charger. There was no electrical contact between the power supply and the electrochemical cell. For the tris(2,2′-bipyridine)ruthenium(II) (Ru(bpy)_(3)~(2+))/tri-n -propylamine system, a weak ECL signal was observed. When an inexpensive rectifier diode was introduced between the coil and the working electrode, the ECL intensity detection sensitivity increased by more than 100 times. The relationship between the waveform of the applied voltage and the ECL response was clarified, and the optimum conditions were determined. The intensity of the induced electromotive voltage was easily controlled by changing the number of turns in the coil. The proposed method is a safe, simple, and inexpensive technique without electrical contact.
机译:使用无电气非接触式电力传输系统开发了电化学发光(ECL)分析装置。 通过在商业非接触式充电器周围包裹搪瓷线来产生相互诱导的电动势电压。 电源与电化学电池之间没有电接触。 对于TRIS(2,2'-Bi0吡啶)钌(II)(Ru(BPY)_(3)〜(2 +))/三丙胺系统,观察到弱ECL信号。 当在线圈和工作电极之间引入廉价的整流二极管时,ECL强度检测灵敏度增加了100多次。 阐明了施加电压和ECL响应的波形之间的关系,并确定了最佳条件。 通过改变线圈中的匝数,容易控制感应电动势电压的强度。 该方法是一种安全,简单,廉价的技术,无需电接触。

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