Ni-doped Fe-MOF@rGO nanohybrid as a functional separator for ultra-long cyclability in lithium-sulfur cells

被引:10
作者
Al-Tahan, Mohammed A. [1 ,2 ]
Miao, Baoji [1 ]
Xu, Sankui [1 ]
Hou, Mengyao [1 ]
Shatat, Mohamed R. [2 ,4 ]
Asad, Muhammad [1 ]
Luo, Yanwei [1 ]
Shrshr, Aml E. [1 ]
Zhang, Jianmin [3 ]
机构
[1] Henan Univ Technol, Sch Mat Sci & Engn, Henan Int Joint Lab Nanophotoelectr Magnet Mat, Zhengzhou 450001, Peoples R China
[2] Al Azhar Univ, Fac Sci, Chem Dept, Assiut 71524, Egypt
[3] Zhengzhou Univ, Coll Chem, Zhengzhou 450001, Peoples R China
[4] Al Baha Univ, Dept Chem, Fac Sci & Arts, Al Baha 1988, Saudi Arabia
关键词
Metal-organic framework; Li-S batteries; Polysulfide shuttling; Electrocatalysis; Defect engineering; METAL-ORGANIC FRAMEWORK; CO-MOF; CATHODE; PERFORMANCE; BATTERY; HETEROSTRUCTURE; FABRICATION; COMPOSITES; ION;
D O I
10.1016/j.colsurfa.2023.132899
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The slow conversion kinetics of polysulfides and undesired shuttling behavior significantly limit the practical feasibility of lithium-sulfur (Li-S) batteries. In light of this, a functional separator made of a composite material consisting of nickel/iron metal-organic frameworks supported on reduced graphene oxide (Ni/Fe-MOF@rGO) with numerous defects is proposed to produce heightened-performance Li-S batteries. Ni-doping Fe-MOF can improve the Li-S cell's electrochemical performance during charge-discharge cycles by increasing the number of metallic sites on the surface, enhancing electrical conductivity, and improving metal synergy. As a result of chemical interaction and physical adsorption, the polysulfide shuttle effect is diminished. Thus, the Li-S cell with electrocatalytic separators of Ni/Fe-MOF@rGO-PP generates 735, 678, 590, 431, and 403 mAh g-1 after 250, 500, 750, 1000, and 1250 cycles, respectively, at 1.0 C, validating the low-capacity degradation per cycle with high long-cyclic. Furthermore, when the cell is operated under harsh conditions (4.3 mgsulfur cm-2 and electrolyte/sulfur (E/S) ratio is 7.0 mu L mg- 1), the resulting capacity is still outstanding even after multiple charge and discharge cycles (4.0 mAh cm-2 after the 250th cycle). This implies that the utilization of Ni/Fe-MOF@rGO has the potential to function as an improved separator within commercially available Li-S cells.
引用
收藏
页数:11
相关论文
共 53 条
[41]   Self-supported 2D Fe-doped Ni-MOF nanosheets as highly efficient and stable electrocatalysts for benzylamine oxidation [J].
Wei, Kangliang ;
Wang, Xiang ;
Jiao, Xiuling ;
Li, Cheng ;
Chen, Dairong .
APPLIED SURFACE SCIENCE, 2022, 578
[42]   In-situ self-assembled hollow urchins F-Co-MOF on rGO as advanced anodes for lithium-ion and sodium-ion batteries [J].
Wei, Ruipeng ;
Dong, Yutao ;
Zhang, Yingying ;
Zhang, Ran ;
Al-Tahan, Mohammed A. ;
Zhang, Jianmin .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2021, 582 :236-245
[43]   A composite of CoNiP quantum dot-decorated reduced graphene oxide as a sulfur host for Li-S batteries [J].
Xiao, Tingjiao ;
Yi, Fengjin ;
Yang, Mingzhi ;
Liu, Weiliang ;
Li, Mei ;
Ren, Manman ;
Zhang, Xu ;
Zhou, Zhen .
JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (31) :16692-16698
[44]   ZnS-SnS@NC Heterostructure as Robust Lithiophilicity and Sulfiphilicity Mediator toward High-Rate and Long-Life Lithium-Sulfur Batteries [J].
Yao, Weiqi ;
Zheng, Weizhong ;
Xu, Jie ;
Tian, Chengxiang ;
Han, Kun ;
Sun, Weizhen ;
Xiao, Shengxiong .
ACS NANO, 2021, 15 (04) :7114-7130
[45]   Enhanced catalytic conversion of polysulfide using 1D CoTe and 2D MXene for heat-resistant and lean-electrolyte Li-S batteries [J].
Ye, Zhengqing ;
Jiang, Ying ;
Li, Li ;
Wu, Feng ;
Chen, Renjie .
CHEMICAL ENGINEERING JOURNAL, 2022, 430
[46]   Fabrication of Fe-doped Co-MOF with mesoporous structure for the optimization of supercapacitor performances [J].
Yu, Huanan ;
Xia, Huicong ;
Zhang, Jianan ;
He, Jing ;
Guo, Shiyu ;
Xu, Qun .
CHINESE CHEMICAL LETTERS, 2018, 29 (06) :834-836
[47]   Precisely optimizing polysulfides adsorption and conversion by local coordination engineering for high-performance Li-S batteries [J].
Yuan, Cheng ;
Song, Xiangcong ;
Zeng, Pan ;
Liu, Genlin ;
Zhou, Shaohui ;
Zhao, Gang ;
Li, Hongtai ;
Yan, Tianran ;
Mao, Jing ;
Yang, Hao ;
Cheng, Tao ;
Wu, Jinpeng ;
Zhang, Liang .
NANO ENERGY, 2023, 110
[48]   Preparation and electrochemical properties of sulfur-acetylene black composites as cathode materials [J].
Zhang, B. ;
Lai, C. ;
Zhou, Z. ;
Gao, X. P. .
ELECTROCHIMICA ACTA, 2009, 54 (14) :3708-3713
[49]   Sulfur-Rich Polymers Based Cathode with Epoxy/Ally Dual-Sulfur-Fixing Mechanism for High Stability Lithium-Sulfur Battery [J].
Zhang, Tianpeng ;
Hu, Fangyuan ;
Shao, Wenlong ;
Liu, Siyang ;
Peng, Hao ;
Song, Zihui ;
Song, Ce ;
Li, Nan ;
Jian, Xigao .
ACS NANO, 2021, 15 (09) :15027-15038
[50]   Tailored ZnO-ZnS heterostructure enables a rational balancing of strong adsorption and high catalytic activity of polysulfides for Li-S batteries [J].
Zhang, Wanyu ;
Hong, Donghui ;
Su, Zhe ;
Yi, Shan ;
Tian, Liying ;
Niu, Bo ;
Zhang, Yayun ;
Long, Donghui .
ENERGY STORAGE MATERIALS, 2022, 53 :404-414