Local Study of Lithiation and Degradation Paths in LiMn2O4 Battery Cathodes: Confocal Raman Microscopy Approach

Результат исследований: Вклад в журналСтатьяНаучно-исследовательскаярецензирование

4 Цитирования (Scopus)
Язык оригиналаАнглийский
Номер статьи21
Число страниц12
ЖурналBatteries-Basel
Том4
Номер выпуска2
DOI
СостояниеОпубликовано - июн 2018

Ключевые слова

    Предметные области ASJC Scopus

    • Electrochemistry
    • Energy Engineering and Power Technology
    • Electrical and Electronic Engineering

    Предметные области WoS

    • Электрохимия

    Цитировать

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    title = "Local Study of Lithiation and Degradation Paths in LiMn2O4 Battery Cathodes: Confocal Raman Microscopy Approach",
    keywords = "confocal Raman microscopy, lithium manganese spinel, degradation, lithium-ion batteries, LITHIUM MANGANESE OXIDE, LI-ION BATTERIES, THIN-FILM, DOPED LIMN2O4, SPINEL, ELECTRODES, PERFORMANCE, CHARGE, CELLS, VISUALIZATION",
    author = "Boris Slautin and Denis Alikin and Daniele Rosato and Dmitry Pelegov and Vladimir Shur and Andrei Kholkin",
    year = "2018",
    month = "6",
    doi = "10.3390/batteries4020021",
    language = "English",
    volume = "4",
    journal = "Batteries-Basel",
    issn = "2313-0105",
    publisher = "Multidisciplinary Digital Publishing Institute (MDPI)",
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    }

    Local Study of Lithiation and Degradation Paths in LiMn2O4 Battery Cathodes: Confocal Raman Microscopy Approach. / Slautin, Boris; Alikin, Denis; Rosato, Daniele; Pelegov, Dmitry; Shur, Vladimir; Kholkin, Andrei.

    В: Batteries-Basel, Том 4, № 2, 21, 06.2018.

    Результат исследований: Вклад в журналСтатьяНаучно-исследовательскаярецензирование

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    AU - Slautin, Boris

    AU - Alikin, Denis

    AU - Rosato, Daniele

    AU - Pelegov, Dmitry

    AU - Shur, Vladimir

    AU - Kholkin, Andrei

    PY - 2018/6

    Y1 - 2018/6

    KW - confocal Raman microscopy

    KW - lithium manganese spinel

    KW - degradation

    KW - lithium-ion batteries

    KW - LITHIUM MANGANESE OXIDE

    KW - LI-ION BATTERIES

    KW - THIN-FILM

    KW - DOPED LIMN2O4

    KW - SPINEL

    KW - ELECTRODES

    KW - PERFORMANCE

    KW - CHARGE

    KW - CELLS

    KW - VISUALIZATION

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