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Rational Design of Li3V2(PO4)3/C for Phosphate-Based Symmetric Full-Cell Li-Ion Batteries

YeWan Yoo HyeongSeok Oh JongKyu Lee JungRag Yoon SeungHwan Lee

能源材料前沿(英文)2025,Vol.2025Issue(6):517-527,11.
能源材料前沿(英文)2025,Vol.2025Issue(6):517-527,11.DOI:10.34133/energymatadv.0147

Rational Design of Li3V2(PO4)3/C for Phosphate-Based Symmetric Full-Cell Li-Ion Batteries

Rational Design of Li3V2(PO4)3/C for Phosphate-Based Symmetric Full-Cell Li-Ion Batteries

YeWan Yoo 1HyeongSeok Oh 1JongKyu Lee 1JungRag Yoon 2SeungHwan Lee1

作者信息

  • 1. Department of Battery Convergence Engineering,Kangwon National University,Chuncheon 24341,Republic of Korea
  • 2. R&D Center,Samwha Capacitor,Yongin 449-884,Republic of Korea
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摘要

引用本文复制引用

YeWan Yoo,HyeongSeok Oh,JongKyu Lee,JungRag Yoon,SeungHwan Lee..Rational Design of Li3V2(PO4)3/C for Phosphate-Based Symmetric Full-Cell Li-Ion Batteries[J].能源材料前沿(英文),2025,2025(6):517-527,11.

基金项目

Funding:This work was supported by the Technology Innovation Program(RS-2023-00256202,Development of MLCB design and manufacturing process technology for board mounting)funded by the Ministry of Trade,Industry and Energy(MOTIE,Korea) (RS-2023-00256202,Development of MLCB design and manufacturing process technology for board mounting)

the Technology Innovation Program(or Industrial Strategic Technology Development Program-Public-Private joint investment semiconductor R&D program[K-CHIPS]to foster high-quality human resources)(RS-2023-00237003,High selectivity etching technology using cryoetch)funded by the Ministry of Trade,Industry and Energy(MOTIE,Korea) (or Industrial Strategic Technology Development Program-Public-Private joint investment semiconductor R&D program[K-CHIPS]to foster high-quality human resources)

a 2022 Research Grant from Kangwon National University(No.202203080001) (No.202203080001)

and the National Research Foundation of Korea(NRF)grant funded by the Korean government(MSIT)(RS-2023-00280367). (NRF)

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