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  1. A novel recycling process of LiFePO4 cathodes for spent lithium-ion batteries by deep eutectic solvents

    In this study, deep eutectic solvent synthesized by choline chloride (C 5 H 14 CINO) and oxalic acid dihydrate (C 2 H 2 O 4 ·2H 2 O) was used to recycling LiFePO 4 ...

    Chao Wang, Haoyuan Yang, ... Shengbing Yang in Journal of Material Cycles and Waste Management
    Article 10 April 2023
  2. Fast-ionic conductor Li2.64(Sc0.9Ti0.1)2(PO4)3 doped PVDF-HFP hybrid gel-electrolyte for lithium ion batteries

    With increasing demand on energy density of lithium-ion battery, wide electrochemical window and safety performance are the crucial request for next...

    Zhen-yu Wang, Cong Li, ... Jun-chao Zheng in Journal of Central South University
    Article 01 September 2022
  3. Environmental Aspects of the Recycling of Lithium-Ion Traction Batteries

    Recycling lithium-ion traction batteries is expected to contribute decreasing the environmental impact of electric vehicles. Recycling might not only...
    Felipe Cerdas, Stefan Andrew, ... Christoph Herrmann in Recycling of Lithium-Ion Batteries
    Chapter 2018
  4. Background

    This chapter outlines a wide range of reasons for the wide dissemination of lithium-ion batteries (LIBs) in our everyday lives and establishes a...
    Sergej Rothermel, Martin Winter, Sascha Nowak in Recycling of Lithium-Ion Batteries
    Chapter 2018
  5. Investigation of β/γ-MnO2 in composite electrodes with carbon nanotubes in a redox reaction with lithium in a model accumulator

    Balastless thin-layer MnO 2 /Al electrodes without an electroconducting carbon additive in combination with multiwalled carbon nanotubes (MWCNT) MnO 2 /Al...

    R. D. Apostolova, R. P. Peskov, E. M. Shembel in Surface Engineering and Applied Electrochemistry
    Article 01 March 2014
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