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Zdeněk Samec

Researcher at Academy of Sciences of the Czech Republic

Publications -  130
Citations -  3948

Zdeněk Samec is an academic researcher from Academy of Sciences of the Czech Republic. The author has contributed to research in topics: Electrolyte & Ion. The author has an hindex of 35, co-authored 126 publications receiving 3766 citations. Previous affiliations of Zdeněk Samec include Fritz Haber Institute of the Max Planck Society & Czechoslovak Academy of Sciences.

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Charge transfer between two immiscible electrolyte solutions: Part II. The investigation of Cs+ ion transfer across the nitrobenzene/water interface by cyclic voltammetry with IR drop compensation

TL;DR: In this article, the transfer of Cs + ion across the interface of two immiscible electrolyte solutions, LiCl in water and 0.05 M tetrabutylammonium tetraphenylborate in nitrobenzene, was investigated by cyclic voltammetry with four-electrode system.
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Standard Gibbs energies of transfer of univalent ions from water to 1,2-dichloroethane

TL;DR: In this paper, the standard Gibbs energies of ion transfer from water to 1,2-dichloroethane have been evaluated from voltammetric measurements at the interface between two immiscible electrolyte solutions for a series of univalent ions (in kJ mol−1): H+ (53), Li+ (57), Na+(57), Cl− (51), Br− (43), and I− (33).
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Charge transfer between two immiscible electrolyte solutions part VIII. Transfer of alkali and alkaline earth-metal cations across the water/nitrobenzene interface facilitated by synthetic neutral ion carriers☆

TL;DR: In this paper, a single-step charge transfer model was proposed to solve the problem of facilitating the transfer of proton, alkali and alkaline earth-metal cations across the water/nitrobenzene interface.
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Charge transfer between two immiscible electrolyte solutions: Part I. Basic equation for the rate of the charge transfer across the interface

TL;DR: The theoretical fundamentals of the kinetics of ion and electron transfer reactions at the interface between two immiscible electrolyte solutions have been discussed on the basis of the present theory of chemical reactions in polar media.