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  1. AU="Yue, Jiasheng"
  2. AU="Francesco Falciani"
  3. AU="Lester, Chantel"
  4. AU="Chaintoutis, Christos"

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  1. Artikel ; Online: Na

    Yue, Jiasheng / Chen, Shi / Wang, Yahui / Zhang, Anqi / Li, Shuqiang / Han, Xiaomin / Hu, Zhifan / Zhao, Ran / Wu, Chuan / Bai, Ying

    ACS applied materials & interfaces

    2023  Band 15, Heft 47, Seite(n) 54488–54498

    Abstract: Layered molybdenum trioxide ( ... ...

    Abstract Layered molybdenum trioxide (MoO
    Sprache Englisch
    Erscheinungsdatum 2023-11-16
    Erscheinungsland United States
    Dokumenttyp Journal Article
    ISSN 1944-8252
    ISSN (online) 1944-8252
    DOI 10.1021/acsami.3c11398
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  2. Artikel ; Online: Hybrid Superlattice-Triggered Selective Proton Grotthuss Intercalation in δ-MnO

    Zhang, Anqi / Zhao, Ran / Wang, Yahui / Yue, Jiasheng / Yang, Jingjing / Wang, Xinran / Wu, Chuan / Bai, Ying

    Angewandte Chemie (International ed. in English)

    2023  Band 62, Heft 51, Seite(n) e202313163

    Abstract: A great deal of attention has been paid on layered manganese dioxide (δ- ... ...

    Abstract A great deal of attention has been paid on layered manganese dioxide (δ-MnO
    Sprache Englisch
    Erscheinungsdatum 2023-11-20
    Erscheinungsland Germany
    Dokumenttyp Journal Article
    ZDB-ID 2011836-3
    ISSN 1521-3773 ; 1433-7851
    ISSN (online) 1521-3773
    ISSN 1433-7851
    DOI 10.1002/anie.202313163
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  3. Artikel ; Online: Multi-Ion Engineering Strategies toward High Performance Aqueous Zinc-Based Batteries.

    Yue, Jiasheng / Chen, Shi / Yang, Jingjing / Li, Shuqiang / Tan, Guoqiang / Zhao, Ran / Wu, Chuan / Bai, Ying

    Advanced materials (Deerfield Beach, Fla.)

    2023  Band 36, Heft 2, Seite(n) e2304040

    Abstract: As alternatives to batteries with organic electrolytes, aqueous zinc-based batteries (AZBs) have been intensively studied. However, the sluggish kinetics, side reactions, structural collapse, and dissolution of the cathode severely compromise the ... ...

    Abstract As alternatives to batteries with organic electrolytes, aqueous zinc-based batteries (AZBs) have been intensively studied. However, the sluggish kinetics, side reactions, structural collapse, and dissolution of the cathode severely compromise the commercialization of AZBs. Among various strategies to accelerate their practical applications, multi-ion engineering shows great feasibility to maintain the original structure of the cathode and provide sufficient energy density for high-performance AZBs. Though multi-ion engineering strategies could solve most of the problems encountered by AZBs and show great potential in achieving practical AZBs, the comprehensive summaries of the batteries undergo electrochemical reactions involving more than one charge carrier is still in deficiency. The ambiguous nomenclature and classification are becoming the fountainhead of confusion and chaos. In this circumstance, this review overviews all the battery configurations and the corresponding reaction mechanisms are investigated in the multi-ion engineering of aqueous zinc-based batteries. By combing through all the reported works, this is the first to nomenclate the different configurations according to the reaction mechanisms of the additional ions, laying the foundation for future unified discussions. The performance enhancement, fundamental challenges, and future developing direction of multi-ion strategies are accordingly proposed, aiming to further accelerate the pace to achieve the commercialization of AZBs with high performance.
    Sprache Englisch
    Erscheinungsdatum 2023-11-06
    Erscheinungsland Germany
    Dokumenttyp Journal Article ; Review
    ZDB-ID 1474949-X
    ISSN 1521-4095 ; 0935-9648
    ISSN (online) 1521-4095
    ISSN 0935-9648
    DOI 10.1002/adma.202304040
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  4. Artikel ; Online: Crystal Phase-Controlled Modulation of Binary Transition Metal Oxides for Highly Reversible Li-O

    Cao, Dong / Zheng, Lumin / Li, Qiaojun / Zhang, Junfan / Dong, Ying / Yue, Jiasheng / Wang, Xinran / Bai, Ying / Tan, Guoqiang / Wu, Chuan

    Nano letters

    2021  Band 21, Heft 12, Seite(n) 5225–5232

    Abstract: Reducing charge-discharge overpotential of transition metal oxide catalysts can eventually enhance the cell efficiency and cycle life of Li- ... ...

    Abstract Reducing charge-discharge overpotential of transition metal oxide catalysts can eventually enhance the cell efficiency and cycle life of Li-O
    Sprache Englisch
    Erscheinungsdatum 2021-06-01
    Erscheinungsland United States
    Dokumenttyp Journal Article
    ISSN 1530-6992
    ISSN (online) 1530-6992
    DOI 10.1021/acs.nanolett.1c01276
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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