Realizing outstanding electrochemical performance with Na3V2(PO4)2F3 modified with an ionic liquid for sodium-ion batteries

被引:23
作者
Yu, Xiaobo [1 ]
Lu, Tianyi [1 ]
Li, Xiaokai [1 ]
Qi, Jiawei [1 ]
Yuan, Luchen [1 ]
Man, Zu [1 ]
Zhuo, Haitao [1 ]
机构
[1] Shenzhen Univ, Coll Chem & Environm Engn, Shenzhen 518060, Peoples R China
关键词
LITHIUM-ION; CATHODE MATERIALS; STORAGE PERFORMANCE; CARBON MATRIX; DOPED CARBON; COMPOSITE; ENERGY; MICROSPHERES; ELECTRODE; BORON;
D O I
10.1039/d2ra01292h
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Na3V2(PO4)(2)F-3 is a typical NASICON structure with a high voltage plateau and capacity. Nevertheless, its applications are limited due to its low conductivity and poor rate performance. In this study, nitrogen-boron co-doped carbon-coated Na3V2(PO4)(2)F-3 (NVPF-CNB) was prepared by a simple sol-gel method using an ionic liquid (1-vinyl-3-methyl imidazole tetrafluoroborate) as a source of nitrogen and boron for the first time. The morphology and electrochemical properties of NVPF-CNB composites were investigated. The results show that a nitrogen-boron co-doped carbon layer could increase the electron and ion diffusion rate, reduce internal resistance, and help alleviate particle agglomeration. NVPF-CNB-30 exhibited better rate performance under 5C and 10C charge/discharge with initial reversible capacities of 99 and 90 mA h g(-1), respectively. Furthermore, NVPF-CNB-30 illustrates excellent cyclic performance with the capacity retention rate reaching 91.9% after 500 cycles at 5C, as well as a capacity retention rate of about 95.5% after 730 cycles at 10C. The evolution of the material's structure during charge/discharge processes studied by in situ X-ray diffraction confirms the stable structure of nitrogen-boron co-doped carbon-coated Na3V2(PO4)(2)F-3. Co-doping of nitrogen and boron also provides more active sites on the surface of Na3V2(PO4)(2)F-3, revealing a new strategy for the modification of sodium-ion batteries.
引用
收藏
页码:14007 / 14017
页数:11
相关论文
共 69 条
[1]   Ionic Liquids in Lithium-Ion Batteries [J].
Balducci, Andrea .
TOPICS IN CURRENT CHEMISTRY, 2017, 375 (02)
[2]   Exploring the use of EMImFSI ionic liquid as additive or co-solvent for room temperature sodium ion battery electrolytes [J].
Benchakar, Mohamed ;
Naejus, Regine ;
Damas, Christine ;
Santos-Pena, Jesus .
ELECTROCHIMICA ACTA, 2020, 330
[3]   Comprehensive Investigation of the Na3V2(PO4)2F3-NaV2(PO4)2F3 System by Operando High Resolution Synchrotron X-ray Diffraction [J].
Bianchini, M. ;
Fauth, F. ;
Brisset, N. ;
Weill, F. ;
Suard, E. ;
Masquelier, C. ;
Croguennec, L. .
CHEMISTRY OF MATERIALS, 2015, 27 (08) :3009-3020
[4]   Caging Na3V2(PO4)2F3 Microcubes in Cross-Linked Graphene Enabling Ultrafast Sodium Storage and Long-Term Cycling [J].
Cai, Yangsheng ;
Cao, Xinxin ;
Luo, Zhigao ;
Fang, Guozhao ;
Liu, Fei ;
Zhou, Jiang ;
Pan, Anqiang ;
Liang, Shuquan .
ADVANCED SCIENCE, 2018, 5 (09)
[5]   Nanoflake-constructed porous Na3V2(PO4)3/C hierarchical microspheres as a bicontinuous cathode for sodium-ion batteries applications [J].
Cao, Xinxin ;
Pan, Anqiang ;
Yin, Bo ;
Fang, Guozhao ;
Wang, Yaping ;
Kong, Xiangzhong ;
Zhu, Ting ;
Zhou, Jiang ;
Cao, Guozhong ;
Liang, Shuquan .
NANO ENERGY, 2019, 60 :312-323
[6]   Na3V2(PO4)3/C.Na3V2(PO4)2F3/C@rGO blended cathode material with elevated energy density for sodium ion batteries [J].
Cheng, Jun ;
Chen, Yanjun ;
Sun, Shiqi ;
Tian, Zeyi ;
Linghu, Yaoyao ;
Tian, Zhen ;
Wang, Chao ;
He, Zhenfeng ;
Guo, Li .
CERAMICS INTERNATIONAL, 2021, 47 (13) :18065-18074
[7]   Sodium and Sodium-Ion Batteries: 50 Years of Research [J].
Delmas, Claude .
ADVANCED ENERGY MATERIALS, 2018, 8 (17)
[8]   Facile one-step carbothermal reduction synthesis of Na3V2(PO4)2F3/C serving as cathode for sodium ion batteries [J].
Deng, Liang ;
Sun, Gang ;
Goh, Kokswee ;
Zheng, Li-Li ;
Yu, Fu-Da ;
Sui, Xu-Lei ;
Zhao, Lei ;
Wang, Zhen-Bo .
ELECTROCHIMICA ACTA, 2019, 298 :459-467
[9]   Synthesis of 3-dimensional interconnected porous Na3V2(PO4)3@C composite as a high-performance dual electrode for Na-ion batteries [J].
Didwal, Pravin N. ;
Verma, Rakesh ;
Min, Chan-Woo ;
Park, Chan-Jin .
JOURNAL OF POWER SOURCES, 2019, 413 :1-10
[10]   Recent advancements in Prussian blue analogues: Preparation and application in batteries [J].
Du, Guangyu ;
Pang, Huan .
ENERGY STORAGE MATERIALS, 2021, 36 (36) :387-408