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Separator‐Integrated,Reversely Connectable Symmetric Lithium‐Ion Battery
Authors:Yuhang Wang  Jiren Zeng  Xiaoqi Cui  Lijuan Zhang  Gengfeng Zheng
Affiliation:Laboratory of Advanced Materials, Department of Chemistry, Collaborative Innovation Center of Chemistry for Energy Materials, Fudan University, Shanghai, China
Abstract:A separator‐integrated, reversely connectable, symmetric lithium‐ion battery is developed based on carbon‐coated Li3V2(PO4)3 nanoparticles and polyvinylidene fluoride‐treated separators. The Li3V2(PO4)3 nanoparticles are synthesized via a facile solution route followed by calcination in Ar/H2 atmosphere. Sucrose solution is used as the carbon source for uniform carbon coating on the Li3V2(PO4)3 nanoparticles. Both the carbon and the polyvinylidene fluoride treatments substantially improve the cycling life of the symmetric battery by preventing the dissolution and shuttle of the electroactive Li3V2(PO4)3. The obtained symmetric full cell exhibits a reversible capacity of ≈87 mA h g–1, good cycling stability, and capacity retention of ≈70% after 70 cycles. In addition, this type of symmetric full cell can be operated in both forward and reverse connection modes, without any influence on the cycling of the battery. Furthermore, a new separator integration approach is demonstrated, which enables the direct deposition of electroactive materials for the battery assembly and does not affect the electrochemical performance. A 10‐tandem‐cell battery assembled without differentiating the electrode polarity exhibits a low thickness of ≈4.8 mm and a high output voltage of 20.8 V.
Keywords:Li3V2(PO4)3  lithium‐ion batteries  reverse connections  separator integrated  symmetric batteries
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