Mobility of Cations and Water Molecules in Sulfocation-Exchange Membranes Based on Polyethylene and Sulfonated Grafted Polystyrene
Тип публикации: Journal Article
Дата публикации: 2020-01-01
scimago Q3
wos Q3
БС2
SJR: 0.233
CiteScore: 3.0
Impact factor: 1.6
ISSN: 25177516, 25177524
Applied Mathematics
Краткое описание
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.
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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.
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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 -
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@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}
}
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MLA
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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, vol. 2, no. 1, Jan. 2020, pp. 54-62. http://link.springer.com/10.1134/S2517751620010096.
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