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Studies of electron-transfer and charge-transfer coupling processes at a liquid/liquid interface by double-barrel micropipet technique

机译:双管微量移液技术研究液/液界面的电子转移和电荷转移耦合过程

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Investigation of a heterogeneous electron-transfer (ET) reaction at the water/1,2-dichloroethane interface employing a double-barrel micropipet technique is reported. The chosen system was the reaction between Fe(CN)(6)(3-) in the aqueous phase (W) and ferrocene in 1,2-dichloroethane (DCE). According to the generation and the collection currents as well as collection efficiency, the ET-ion-transfer (IT) coupling process at such an interface and competing reactions with the organic supporting electrolyte in the organic phase can be studied. In addition, this technique has been found to be an efficient method to distinguish and measure the charge-transfer coupling reaction between two ions (IT-IT) processes occurring simultaneously at a liquid/liquid interface. On this basis, the formal Gibbs energies of transfer of some ions across the W/DCE interface, such as NO3-, NO2-, Cl-, COO-, TBA(+), IPAs+, Cs+, Rb+, K+, Na+, and Li+, for which their direct transfers are usually difficult to obtain because of the IT-IT coupling processes, were quantitatively evaluated. [References: 41]
机译:报道了使用双管微吸管技术研究水/ 1,2-二氯乙烷界面上的异质电子转移(ET)反应。选择的系统是水相(W)中的Fe(CN)(6)(3-)与1,2-二氯乙烷(DCE)中的二茂铁之间的反应。根据产生和收集电流以及收集效率,可以研究在这种界面上的ET-离子转移(IT)偶联过程以及与有机相中有机支持电解质的竞争反应。另外,已经发现该技术是区分和测量在液/液界面同时发生的两个离子(IT-IT)过程之间的电荷转移偶联反应的有效方法。在此基础上,一些离子通过W / DCE界面传递的形式吉布斯能量,例如NO3-,NO2-,Cl-,COO-,TBA(+),IPAs +,Cs +,Rb +,K +,Na +和定量评估了Li +(由于IT-IT耦合过程通常难以获得其直接转移)。 [参考:41]

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