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High-Entropy Doping Boosts Ion/Electronic Transport of Na4Fe3(PO4)2(P2O7)/C Cathode for Superior Performance Sodium-Ion Batteries
Authors:Xiaochen Ge  Huangxu Li  Jie Li  Chaohong Guan  Xu Wang  Liang He  Simin Li  Yanqing Lai  Zhian Zhang
Affiliation:1. School of Metallurgy and Environment, Hunan Provincial Key Laboratory of Nonferrous Value-Added Metallurgy, Engineering Research Center of the Ministry of Education for Advanced Battery Materials, Central South University, Changsha, 410083 PR China;2. Department of Chemistry, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong, 999077 China;3. University of Michigan–Shanghai Jiao Tong University Joint Institute Shanghai Jiao Tong University Shanghai, Shanghai, 200240 P. R. China
Abstract:Fe-based mixed phosphate cathodes for Na-ion batteries usually possess weak rate capacity and cycle stability challenges resulting from sluggish diffusion kinetics and poor conductivity under the relatively low preparation temperature. Here, the excellent sodium storage capability of this system is obtained by introducing the high-entropy doping to enhance the electronic and ionic conductivity. As designed high-entropy doping Na4Fe2.85(Ni,Co,Mn,Cu,Mg)0.03(PO4)2P2O7 (NFPP-HE) cathode can release 122 mAh g?1 at 0.1 C, even 85 mAh g?1 at ultrahigh rate of 50 C, and keep a high retention of 82.3% after 1500 cycles at 10 C. Besides, the cathode also exhibits outstanding fast charge capacity in terms of the cyclability and capacity with 105 mAh g?1 at 5 C/1 C, corresponding 94.3% retention after 500 cycles. The combination of in situ X-ray diffraction, density functional theory, conductive-atomic force microscopy, and galvanostatic intermittent titration technique tests reveal that the reversible structure evolution with optimized Na+ migration path and energy barrier boost the Na+ kinetics and improve the interfacial electronic transfer, thus improving performance.
Keywords:fast-charging capacity  high-entropy doping  mixed phosphate cathode materials  sodium-ion batteries
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