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Ryzhkov, I. I.
Lebedev, D. V.
Solodovnichenko, V. S.
Shiverskiy, A. V.
Simunin, M. M.
2019-07-01T07:26:48Z
2019-07-01T07:26:48Z
2017-11
Ryzhkov, I. I. Induced-Charge Enhancement of the Diffusion Potential in Membranes with Polarizable Nanopores [Текст] / I. I. Ryzhkov, D. V. Lebedev, V. S. Solodovnichenko, A. V. Shiverskiy, M. M. Simunin // Physical Review Letters. — 2017. — Т. 119 (№ 22).
00319007
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.119.226001
https://elib.sfu-kras.ru/handle/2311/110834
When a charged membrane separates two salt solutions of different concentrations, a potential difference appears due to interfacial Donnan equilibrium and the diffusion junction. Here, we report a new mechanism for the generation of a membrane potential in polarizable conductive membranes via an induced surface charge. It results from an electric field generated by the diffusion of ions with different mobilities. For uncharged membranes, this effect strongly enhances the diffusion potential and makes it highly sensitive to the ion mobilities ratio, electrolyte concentration, and pore size. Theoretical predictions on the basis of the space-charge model extended to polarizable nanopores fully agree with experimental measurements in KCl and NaCl aqueous solutions. © 2017 American Physical Society.
Membranes
Chlorine compounds
Diffusion
Electric fields
Electrolytes
Nanopores
Pore size
Sodium compounds
Solutions
Induced-Charge Enhancement of the Diffusion Potential in Membranes with Polarizable Nanopores
Journal Article
Journal Article Preprint
61.13.19
2019-07-01T07:26:48Z
10.1103/PhysRevLett.119.226001
Институт цветных металлов и материаловедения
Институт космических и информационных технологий
Кафедра композиционных материалов и физико-химии металлургических процессов
Кафедра прикладной математики и компьютерной безопасности
Physical Review Letters
Q1
Q1


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