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Proton-conducting membranes based on Nafion® synthesized by using nanodiamond platform. / Lebedev, V.T.; Kulvelis, Y.V.; Odinokov, A.S.; Primachenko, O.N.; Kononova, S.V.; Ivan'kova, E.M.; Orlova, V.A.; Yevlampieva, N.P.; Marinenko, E.A.; Gofman, I.V.; Shvidchenko, A.V.; Peters, G.S.

In: Journal of Membrane Science Letters, Vol. 4, No. 1, 100070, 01.06.2024.

Research output: Contribution to journalArticlepeer-review

Harvard

Lebedev, VT, Kulvelis, YV, Odinokov, AS, Primachenko, ON, Kononova, SV, Ivan'kova, EM, Orlova, VA, Yevlampieva, NP, Marinenko, EA, Gofman, IV, Shvidchenko, AV & Peters, GS 2024, 'Proton-conducting membranes based on Nafion® synthesized by using nanodiamond platform', Journal of Membrane Science Letters, vol. 4, no. 1, 100070. https://doi.org/10.1016/j.memlet.2024.100070

APA

Lebedev, V. T., Kulvelis, Y. V., Odinokov, A. S., Primachenko, O. N., Kononova, S. V., Ivan'kova, E. M., Orlova, V. A., Yevlampieva, N. P., Marinenko, E. A., Gofman, I. V., Shvidchenko, A. V., & Peters, G. S. (2024). Proton-conducting membranes based on Nafion® synthesized by using nanodiamond platform. Journal of Membrane Science Letters, 4(1), [100070]. https://doi.org/10.1016/j.memlet.2024.100070

Vancouver

Lebedev VT, Kulvelis YV, Odinokov AS, Primachenko ON, Kononova SV, Ivan'kova EM et al. Proton-conducting membranes based on Nafion® synthesized by using nanodiamond platform. Journal of Membrane Science Letters. 2024 Jun 1;4(1). 100070. https://doi.org/10.1016/j.memlet.2024.100070

Author

Lebedev, V.T. ; Kulvelis, Y.V. ; Odinokov, A.S. ; Primachenko, O.N. ; Kononova, S.V. ; Ivan'kova, E.M. ; Orlova, V.A. ; Yevlampieva, N.P. ; Marinenko, E.A. ; Gofman, I.V. ; Shvidchenko, A.V. ; Peters, G.S. / Proton-conducting membranes based on Nafion® synthesized by using nanodiamond platform. In: Journal of Membrane Science Letters. 2024 ; Vol. 4, No. 1.

BibTeX

@article{7f46698d0ecb48278f82e92e76393a43,
title = "Proton-conducting membranes based on Nafion{\textregistered} synthesized by using nanodiamond platform",
abstract = "New method of emulsion synthesis of Nafion{\textregistered}-type copolymer composition by using nanodiamond platform has been proposed and implemented. Produced polymeric coagulate saturated with diamonds (4.1 % wt.) possessed increased ionic capacity of the copolymer comparative to the analogue without diamonds. SEM patterns for coagulate membranes showed labyrinthine structures with diamonds integrated into copolymer without any segregation. This structuring provided necessary elastic and strength properties of new type membranes for hydrogen fuel cells. In new membranes synchrotron experiments exhibited a network of ionic channels which ensured a proton conductivity by one order of magnitude higher than that for the analogue produced of premade components. {\textcopyright} 2024",
keywords = "Conductivity, Membrane, Nafion{\textregistered}, Nanodiamond, Structure",
author = "V.T. Lebedev and Y.V. Kulvelis and A.S. Odinokov and O.N. Primachenko and S.V. Kononova and E.M. Ivan'kova and V.A. Orlova and N.P. Yevlampieva and E.A. Marinenko and I.V. Gofman and A.V. Shvidchenko and G.S. Peters",
note = "Export Date: 21 March 2024 Адрес для корреспонденции: Kulvelis, Y.V.; Petersburg Nuclear Physics Institute named by B.P. Konstantinov of National Research Center {"}Kurchatov Institute{"}Russian Federation; эл. почта: kulvelis_yv@pnpi.nrcki.ru Сведения о финансировании: Russian Science Foundation, RSF, 23–23–00129 Текст о финансировании 1: This work was supported by the Russian Science Foundation [grant number 23–23–00129 ] https://rscf.ru/en/project/23–23–00129/ .",
year = "2024",
month = jun,
day = "1",
doi = "10.1016/j.memlet.2024.100070",
language = "Английский",
volume = "4",
journal = "Journal of Membrane Science Letters",
issn = "2772-4212",
publisher = "Elsevier",
number = "1",

}

RIS

TY - JOUR

T1 - Proton-conducting membranes based on Nafion® synthesized by using nanodiamond platform

AU - Lebedev, V.T.

AU - Kulvelis, Y.V.

AU - Odinokov, A.S.

AU - Primachenko, O.N.

AU - Kononova, S.V.

AU - Ivan'kova, E.M.

AU - Orlova, V.A.

AU - Yevlampieva, N.P.

AU - Marinenko, E.A.

AU - Gofman, I.V.

AU - Shvidchenko, A.V.

AU - Peters, G.S.

N1 - Export Date: 21 March 2024 Адрес для корреспонденции: Kulvelis, Y.V.; Petersburg Nuclear Physics Institute named by B.P. Konstantinov of National Research Center "Kurchatov Institute"Russian Federation; эл. почта: kulvelis_yv@pnpi.nrcki.ru Сведения о финансировании: Russian Science Foundation, RSF, 23–23–00129 Текст о финансировании 1: This work was supported by the Russian Science Foundation [grant number 23–23–00129 ] https://rscf.ru/en/project/23–23–00129/ .

PY - 2024/6/1

Y1 - 2024/6/1

N2 - New method of emulsion synthesis of Nafion®-type copolymer composition by using nanodiamond platform has been proposed and implemented. Produced polymeric coagulate saturated with diamonds (4.1 % wt.) possessed increased ionic capacity of the copolymer comparative to the analogue without diamonds. SEM patterns for coagulate membranes showed labyrinthine structures with diamonds integrated into copolymer without any segregation. This structuring provided necessary elastic and strength properties of new type membranes for hydrogen fuel cells. In new membranes synchrotron experiments exhibited a network of ionic channels which ensured a proton conductivity by one order of magnitude higher than that for the analogue produced of premade components. © 2024

AB - New method of emulsion synthesis of Nafion®-type copolymer composition by using nanodiamond platform has been proposed and implemented. Produced polymeric coagulate saturated with diamonds (4.1 % wt.) possessed increased ionic capacity of the copolymer comparative to the analogue without diamonds. SEM patterns for coagulate membranes showed labyrinthine structures with diamonds integrated into copolymer without any segregation. This structuring provided necessary elastic and strength properties of new type membranes for hydrogen fuel cells. In new membranes synchrotron experiments exhibited a network of ionic channels which ensured a proton conductivity by one order of magnitude higher than that for the analogue produced of premade components. © 2024

KW - Conductivity

KW - Membrane

KW - Nafion®

KW - Nanodiamond

KW - Structure

UR - https://www.mendeley.com/catalogue/f4b60a1e-92a8-3fe7-87f4-6dff6d084319/

U2 - 10.1016/j.memlet.2024.100070

DO - 10.1016/j.memlet.2024.100070

M3 - статья

VL - 4

JO - Journal of Membrane Science Letters

JF - Journal of Membrane Science Letters

SN - 2772-4212

IS - 1

M1 - 100070

ER -

ID: 117802366