volume 2 issue 1 pages 54-62

Mobility of Cations and Water Molecules in Sulfocation-Exchange Membranes Based on Polyethylene and Sulfonated Grafted Polystyrene

Publication typeJournal Article
Publication date2020-01-01
scimago Q3
wos Q3
SJR0.233
CiteScore3.0
Impact factor1.6
ISSN25177516, 25177524
Applied Mathematics
Abstract
The main patterns of the hydration of sulfo groups, the translational mobility of water molecules, alkali metal cations, and ionic conductivity in sulfocation-exchange membranes (MSC) based on polyethylene and sulfonated grafted polystyrene have been investigated using NMR and impedance spectroscopy techniques. It has been shown that at moisture contents λ < 4 (λ is the number of water molecules per sulfo group) the H+ counterions in the membranes form diaquahydrogen ions $${{{\text{H}}}_{{\text{5}}}}{\text{O}}_{{\text{2}}}^{ + }{\text{.}}$$ In the temperature range below 0°C at λ < 12, water molecules retain high mobility and do not form the ice phase. Water molecules diffusion coefficients (for the H+ form, the average diffusion coefficient of water molecules and acidic protons) and first for ion-exchange systems, and the diffusion coefficients of counterions Li+, Na+, and Cs+ have been measured by pulsed field gradient 1H, 7Li, 23Na, and 133Cs NMR spectroscopy. In MSC membranes in contact with water, the self-diffusion coefficients of cations increase in the Li+ < Na+ < Cs+ series. The cation conductivity values are in the same Li+ < Na+ < Cs+$$ \ll $$ H+ sequence. The cation conductivity values calculated from the self-diffusion coefficients based on the Nernst–Einstein equation are essentially higher than the experimental values.
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Volkov V. I. et al. Mobility of Cations and Water Molecules in Sulfocation-Exchange Membranes Based on Polyethylene and Sulfonated Grafted Polystyrene // Membranes and Membrane Technologies. 2020. Vol. 2. No. 1. pp. 54-62.
GOST all authors (up to 50) Copy
Volkov V. I., Chernyak A. V., Golubenko D. V., Shevlyakova N. V., Tverskoy V., Yaroslavtsev A. B. Mobility of Cations and Water Molecules in Sulfocation-Exchange Membranes Based on Polyethylene and Sulfonated Grafted Polystyrene // Membranes and Membrane Technologies. 2020. Vol. 2. No. 1. pp. 54-62.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1134/S2517751620010096
UR - http://link.springer.com/10.1134/S2517751620010096
TI - Mobility of Cations and Water Molecules in Sulfocation-Exchange Membranes Based on Polyethylene and Sulfonated Grafted Polystyrene
T2 - Membranes and Membrane Technologies
AU - Volkov, V. I.
AU - Chernyak, A V
AU - Golubenko, D V
AU - Shevlyakova, N V
AU - Tverskoy, V.A.
AU - Yaroslavtsev, A. B.
PY - 2020
DA - 2020/01/01
PB - Pleiades Publishing
SP - 54-62
IS - 1
VL - 2
SN - 2517-7516
SN - 2517-7524
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2020_Volkov,
author = {V. I. Volkov and A V Chernyak and D V Golubenko and N V Shevlyakova and V.A. Tverskoy and A. B. Yaroslavtsev},
title = {Mobility of Cations and Water Molecules in Sulfocation-Exchange Membranes Based on Polyethylene and Sulfonated Grafted Polystyrene},
journal = {Membranes and Membrane Technologies},
year = {2020},
volume = {2},
publisher = {Pleiades Publishing},
month = {jan},
url = {http://link.springer.com/10.1134/S2517751620010096},
number = {1},
pages = {54--62},
doi = {10.1134/S2517751620010096}
}
MLA
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MLA Copy
Volkov, V. I., et al. “Mobility of Cations and Water Molecules in Sulfocation-Exchange Membranes Based on Polyethylene and Sulfonated Grafted Polystyrene.” Membranes and Membrane Technologies, vol. 2, no. 1, Jan. 2020, pp. 54-62. http://link.springer.com/10.1134/S2517751620010096.