Title of article
Studies of Electron-Transfer and Charge-Transfer Coupling Processes at a Liquid/Liquid Interface by Double-Barrel Micropipet Technique
Author/Authors
Chen، Yong نويسنده , , Gao، Zhao نويسنده , , Li، Fei نويسنده , , Ge، Liaohai نويسنده , , Zhang، Meiqin نويسنده , , Zhan، Dongping نويسنده , , Shao، Yuanhua نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2003
Pages
-6592
From page
6593
To page
0
Abstract
Investigation of a heterogeneous electron-transfer (ET) reaction at the water/l,2-dichloroethane interface employing a double-barrel micropipet technique is reported. The chosen system was the reaction between Fe(CN)6 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 ETion-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 NOs, NO2, Cl-, COO-, TBA+, TPAs+, Cs+, Rb+, K+, Na+, and U+, for which their direct transfers are usually difficult to obtain because of the IT-IT coupling processes, were quantitatively evaluated.
Keywords
strawberry crinkle rhabdovirus , Fragaria , electron microscopy , strawberry mottle disease
Journal title
Analytical Chemistry
Serial Year
2003
Journal title
Analytical Chemistry
Record number
50651
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