Fang Louis

  • Associate Professor   Supervisor of Master’s Candidates
  • Name (Simplified Chinese):方梓烜
  • Name (English):Fang Louis
  • Name (Pinyin):Fang Zixuan
  • E-Mail:zixuanfang@uestc.edu.cn
  • Date of Employment:2022-08-30
  • Education Level:With Certificate of Graduation for Doctorate Study
  • Gender:Male
  • Degree:Doctor of Engineering
  • Status:Professor
  • Discipline: Materials Science and Engineering
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Paper Publications

In Situ Constructing Robust Interface by Deep Eutectic Polymeric Electrolyte Enables High Performance Lithium Metal Batteries with High-Loading Cathode

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Affiliation of Author(s):[1]Univ Elect Sci & Technol China, Sch Mat & Energy, Chengdu 611731, Sichuan, Peoples R China;[2]Tianjin Univ, Sch Precis Instruments & Optoelect Engn, Tianjin 300072, Peoples R China;[3]Sichuan Univ Sci & Engn, Sch Chem Engn, Zigong 643000, Peoples R China;[4]Univ Elect Sci & Technol China, Yangtze Delta Reg Inst HuZhou, Huzhou 313001, Zhejiang, Peoples R China

Journal:ADVANCED SCIENCE

Key Words:anchoring effect; deep eutectic electrolytes; high-loading cathode; lithium metal batteries; solid state batteries

Abstract:The low Li+ transport and poor interface have consistently been two major impediments to practical applications of Polyacrylonitrile (PAN)-based composite solid-state electrolytes (PCPE). In this work, a polymerizable deep eutectic electrolyte is meticulously designed with high fluidity which consists of Poly (Ethylene Glycol) Diacrylate (PEGDA), Fluoroethylene Carbonate (FEC), Succinonitrile (SN) and dual salts (LiTFSI/LiDFOB) to promote Li+ transport and ameliorate the interface of PCPE. Inclusion of PEGDA monomers and FEC alters the crystallinity of SN, enhancing the wettability of thick electrode, and formation of polymeric 3D network from polymerization of PEGDA can anchor SN and suppress the side reactions between SN and lithium metal. Consequently, the modified PCPE exhibit an enhanced conductivity of 4.47 x 10-4 S cm-1 with Li-ion transference number of 0.60, and show an excellent lithium stability. LiCoO2(LCO)/SP-PCPE/Li batteries with higher loading (3-4.4 V, 6 mg cm-2) can work for over 300 cycles at 0.5 C. Even with an ultra-high loading of 16 mg cm-2, LCO/SP-PCPE/Li batteries achieve an excellent cycling performance. This work provides new insights into how to construct a robust interface for solid-state batteries with high-loading cathode.

Document Type:Article

Volume:11

Issue:47

ISSN No.:21983844

Translation or Not:no

Pre One:Mechano-Electrical Buffer Layer at Grain Boundary Induced Solid State Electrolyte with Ultra-High Mechanical Strength and Electrical Insulation for Stable Lithium Metal Batteries

Next One:Lewis acid fluorine-donating additive enables an excellent semi-solid-state electrolyte for ultra-stable lithium metal batteries

Release time:2025-05-23