Mechanism of Sodium-Ion Diffusion in Alluaudite-Type Na 5 Sc(MoO 4 ) 4 from NMR Experiment and Ab Initio Calculations

Nadezhda I. Medvedeva, Anton L. Buzlukov, Alexander V. Skachkov, Aleksandra A. Savina, Vladimir A. Morozov, Yana V. Baklanova, Irina E. Animitsa, Elena G. Khaikina, Tatiana A. Denisova, Sergey F. Solodovnikov

Результат исследований: Вклад в журналСтатьяНаучно-исследовательскаярецензирование

ЯзыкАнглийский
Страницы4729-4738
Число страниц10
ЖурналJournal of Physical Chemistry C
Том123
Номер выпуска8
DOI
СостояниеОпубликовано - 28 фев 2019

Отпечаток

Sodium
Nuclear magnetic resonance
sodium
Ions
nuclear magnetic resonance
Oxides
sublattices
ions
Scandium
Experiments
Conductive materials
oxides
scandium
Electronic properties
X ray powder diffraction
electric batteries
Activation energy
Crystal structure
activation energy
electrical resistivity

Ключевые слова

    Предметные области ASJC Scopus

    • Electronic, Optical and Magnetic Materials
    • Energy(all)
    • Physical and Theoretical Chemistry
    • Surfaces, Coatings and Films

    Предметные области WoS

    • Химия, Физическая
    • Нанотехнологии
    • Материаловедение, Многопрофильные области

    Цитировать

    Medvedeva, N. I., Buzlukov, A. L., Skachkov, A. V., Savina, A. A., Morozov, V. A., Baklanova, Y. V., ... Solodovnikov, S. F. (2019). Mechanism of Sodium-Ion Diffusion in Alluaudite-Type Na 5 Sc(MoO 4 ) 4 from NMR Experiment and Ab Initio Calculations. Journal of Physical Chemistry C, 123(8), 4729-4738. https://doi.org/10.1021/acs.jpcc.8b11654
    Medvedeva, Nadezhda I. ; Buzlukov, Anton L. ; Skachkov, Alexander V. ; Savina, Aleksandra A. ; Morozov, Vladimir A. ; Baklanova, Yana V. ; Animitsa, Irina E. ; Khaikina, Elena G. ; Denisova, Tatiana A. ; Solodovnikov, Sergey F. / Mechanism of Sodium-Ion Diffusion in Alluaudite-Type Na 5 Sc(MoO 4 ) 4 from NMR Experiment and Ab Initio Calculations. В: Journal of Physical Chemistry C. 2019 ; Том 123, № 8. стр. 4729-4738.
    @article{840eb670bf6b4ff498ee13e496f6cf89,
    title = "Mechanism of Sodium-Ion Diffusion in Alluaudite-Type Na 5 Sc(MoO 4 ) 4 from NMR Experiment and Ab Initio Calculations",
    keywords = "CRYSTAL-STRUCTURES, MOLYBDATE, CONDUCTIVITY, CHEMISTRY, TRANSPORT, VOLTAGE",
    author = "Medvedeva, {Nadezhda I.} and Buzlukov, {Anton L.} and Skachkov, {Alexander V.} and Savina, {Aleksandra A.} and Morozov, {Vladimir A.} and Baklanova, {Yana V.} and Animitsa, {Irina E.} and Khaikina, {Elena G.} and Denisova, {Tatiana A.} and Solodovnikov, {Sergey F.}",
    year = "2019",
    month = "2",
    day = "28",
    doi = "10.1021/acs.jpcc.8b11654",
    language = "English",
    volume = "123",
    pages = "4729--4738",
    journal = "Journal of Physical Chemistry C",
    issn = "1932-7447",
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    }

    Medvedeva, NI, Buzlukov, AL, Skachkov, AV, Savina, AA, Morozov, VA, Baklanova, YV, Animitsa, IE, Khaikina, EG, Denisova, TA & Solodovnikov, SF 2019, 'Mechanism of Sodium-Ion Diffusion in Alluaudite-Type Na 5 Sc(MoO 4 ) 4 from NMR Experiment and Ab Initio Calculations', Journal of Physical Chemistry C, том. 123, № 8, стр. 4729-4738. https://doi.org/10.1021/acs.jpcc.8b11654

    Mechanism of Sodium-Ion Diffusion in Alluaudite-Type Na 5 Sc(MoO 4 ) 4 from NMR Experiment and Ab Initio Calculations. / Medvedeva, Nadezhda I.; Buzlukov, Anton L.; Skachkov, Alexander V.; Savina, Aleksandra A.; Morozov, Vladimir A.; Baklanova, Yana V.; Animitsa, Irina E.; Khaikina, Elena G.; Denisova, Tatiana A.; Solodovnikov, Sergey F.

    В: Journal of Physical Chemistry C, Том 123, № 8, 28.02.2019, стр. 4729-4738.

    Результат исследований: Вклад в журналСтатьяНаучно-исследовательскаярецензирование

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    AU - Medvedeva, Nadezhda I.

    AU - Buzlukov, Anton L.

    AU - Skachkov, Alexander V.

    AU - Savina, Aleksandra A.

    AU - Morozov, Vladimir A.

    AU - Baklanova, Yana V.

    AU - Animitsa, Irina E.

    AU - Khaikina, Elena G.

    AU - Denisova, Tatiana A.

    AU - Solodovnikov, Sergey F.

    PY - 2019/2/28

    Y1 - 2019/2/28

    KW - CRYSTAL-STRUCTURES

    KW - MOLYBDATE

    KW - CONDUCTIVITY

    KW - CHEMISTRY

    KW - TRANSPORT

    KW - VOLTAGE

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