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  1. Research on nondestructive measurement of the cross-plane thermal conductivity of a prismatic lithium-ion cell

    With the extensive use of lithium-ion cells, cell thermal safety has been widely concerned and investigated. The thermal conductivity of the cell is...

    Song Chen, **aoying Jiang, ... Biao Chen in Ionics
    Article 26 April 2023
  2. Selection of solid-state electrolytes for lithium-ion batteries using clustering technique

    In the context of solid-state electrolytes for batteries, ambient temperature ionic conductivity stands as a pivotal attribute. This investigation...

    N Nagappan, Ganapathi Rao Kandregula, Kothandaraman Ramanujam in Journal of Chemical Sciences
    Article 20 May 2024
  3. Zwitterionic cellulosic membrane as a new separator with enhanced ionic conductivity and performance for lithium-ion batteries

    Separators are regarded as an essential component of lithium-ion batteries (LIBs) due to their critical roles in the electrochemical performance and...

    Milad Asadnia, Mehdi Sadat-Shojai, ... Farshad Hamidi in Cellulose
    Article 11 April 2024
  4. Inorganic lithium-ion conductors for fast-charging lithium batteries: a review

    With the rapid development of electronic devices and electric vehicles, people have higher requirements for lithium-ion batteries (LIBs)....

    Ning Xue, Chang Zhang, Wei Liu in Journal of Solid State Electrochemistry
    Article 13 February 2024
  5. “In-N-out” design enabling high-content triethyl phosphate-based non-flammable and high-conductivity electrolytes for lithium-ion batteries

    Safety issues related to flammable electrolytes in lithium-ion batteries (LIBs) remain a major challenge for their extended applications. The use of...

    Mengchuang Liu, Fenfen Ma, ... Jia **e in Science China Chemistry
    Article 20 September 2023
  6. Cross-linked Electrospun Gel Polymer Electrolytes for Lithium-Ion Batteries

    Lithium-ion batteries (LIBs) benefit from an effective electrolyte system design in both terms of their safety and energy storage capability. Herein,...

    Xue Gong, Qin **ao, ... Shi-Jie Ren in Chinese Journal of Polymer Science
    Article 17 May 2024
  7. Electrolytes based on sulfone mixtures for lithium and lithium-ion batteries: the low-temperature properties

    The physicochemical properties and the phase state of sulfolane (1) —ethyl isobutyl sulfone (2) mixtures and 1 M LiClO 4 solutions based on these...

    L. V. Sheina, E. V. Karaseva, ... V. S. Kolosnitsyn in Russian Chemical Bulletin
    Article 01 October 2023
  8. Lithium perborate-based composite polymer electrolytes for all-solid-state lithium-ion batteries: performance enhancement and stability

    A rapid rise in the development of portable electronic devices and telecommunication technologies has led to an ever-growing demand for high safety,...

    Ilakkiya Pandurangan, Kiruthika Sathiasivan, ... Muthukumaran Balakrishnan in Ionics
    Article 15 June 2024
  9. Transition Metal Phosphates/Phosphonates for Lithium-Ion Batteries

    The development of advanced battery technologies for portable electronic devices and electric vehicles requires highly efficient cost effective...
    Chapter 2023
  10. High Performance Lithium Ion-Conducting Plasticized Biopolymer Electrolyte for Supercapacitor Application

    Lithium-ion based Solid Polymer Electrolytes are synthesized by incorporating lithium perchlorate (LiClO 4 ) salt with Iota-Carrageenan (IC) / Acacia...

    M. Nandhinilakshmi, D. Vanitha, ... Shameem Abdul Samad in Journal of Polymers and the Environment
    Article 17 May 2024
  11. Control of electronic conductivity and ionic conductivity of mixed electron–ion conductor and their effects on lithium plating

    Solid-state batteries assembled by lithium anode exhibit high energy density and high safety, but the volume change and interface problem hinder...

    Yuhao Zhu, Yu Han, ... Kai **e in Ionics
    Article 21 September 2021
  12. Development and characterization of Lithium ion conducting electrolyte for electrochemical devices using CA/LiCl

    Lithium ion conducting membrane has been prepared based on cellulose acetate and LiCl using the solution casting method. Amorphous/crystalline nature...

    S. Kamatchi Devi, C. Shanmugapriya, ... D. Jeya Sundara Sharmila in Journal of Solid State Electrochemistry
    Article 30 May 2024
  13. Solid-state lithium-ion batteries for grid energy storage: opportunities and challenges

    The energy crisis and environmental pollution drive more attention to the development and utilization of renewable energy. Considering the capricious...

    **n Chang, Yu-Ming Zhao, ... Li-Jun Wan in Science China Chemistry
    Article 13 February 2023
  14. Polymer membrane based on ABC type triblock co-polymer for safer lithium-ion solid-state batteries

    Solid-state membranes with high ionic conductivity and good mechanical and electrochemical properties are desirable for next-generation lithium-ion...

    Vengadesh Krishna M, S. Selvasekarapandian, Malaichamy Ilanchelian in Ionics
    Article 12 July 2023
  15. Ionic liquids in green energy storage devices: lithium-ion batteries, supercapacitors, and solar cells

    Due to characteristic properties of ionic liquids such as non-volatility, high thermal stability, negligible vapor pressure, and high ionic...

    Setareh Sheikh, Alireza Haghpanah Jahromi in Monatshefte für Chemie - Chemical Monthly
    Article 06 March 2024
  16. Features of fast charging of lithium-ion batteries: electrochemical aspects (mini-review)

    The problem of fast charging of lithium-ion batteries is one of the key problems for the development of electric transport. This problem is...

    A. M. Skundin, T. L. Kulova in Journal of Solid State Electrochemistry
    Article 14 June 2024
  17. Electrochemical study comparing liquid and gel electrolytes for lithium-ion batteries based on LiTDI or LiPF6

    Liquid and gel electrolytes based on common commercial and recently commercialized salts for application in lithium-ion (Li-ion) batteries are...

    Marta Kasprzyk, Andrzej Kulka, ... Katarzyna Walczak in Monatshefte für Chemie - Chemical Monthly
    Article 06 February 2024
  18. Enhancing niobium-based oxides for high-performance lithium-ion batteries through hydrogenation

    Niobium-based oxides (NMO) have attracted widespread research enthusiasm in the field of energy storage systems, including lithium-ion batteries...

    Babajide Oluwagbenga Fatile, Martin Pugh, Mamoun Medraj in Journal of Solid State Electrochemistry
    Article 24 August 2023
  19. Improved performance of LiFePO4F cathodes via V/Na-ion co-do** for application in lithium-ion batteries

    The quest for better cathode materials for lithium-ion batteries continues due to its burgeoning application in electric vehicles. In this context,...

    Pritamkumar V. Shinde, Dimple P. Dutta in Ionics
    Article 19 September 2023
  20. Review on Low-Temperature Electrolytes for Lithium-Ion and Lithium Metal Batteries

    Among various rechargeable batteries, the lithium-ion battery (LIB) stands out due to its high energy density, long cycling life, in addition to...

    Sha Tan, Zulipiya Shadike, ... **ao-Qing Yang in Electrochemical Energy Reviews
    Article Open access 28 November 2023
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