Sonoelectrochemical Nanoarchitectonics of Crystalline Mesoporous Magnetite @ Manganese Oxide Nanocomposite as an Alternate Anode Material for Energy-Storage Applications

被引:7
作者
Kalidass, Jayaraman [1 ]
Anandan, Sambandam [2 ]
Sivasankar, Thirugnanasambandam [1 ]
机构
[1] Natl Inst Technol Tiruchirappalli, Dept Chem Engn, Tiruchirappalli 620015, Tamil Nadu, India
[2] Natl Inst Technol Tiruchirappalli, Dept Chem, Tiruchirappalli 620015, Tamil Nadu, India
关键词
Fe3O4@MnO2 nanocomposite; sonoelectrochemistry; anode; Li-ion battery; HIGH-PERFORMANCE ANODE; RECENT PROGRESS; LITHIUM; MICROSPHERES; COMPOSITE; MNFE2O4; FE3O4-AT-MNO2; MECHANISM; CATHODE; TIS2;
D O I
10.3390/cryst13040557
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
In this report, the synergetic sonoelectrochemical method was utilized to produce magnetite nanoparticles was doped with MnO2 with the assistance of ultrasound to form nanoarchitectonic magnetic crystals with a mesoporous magnetite @ manganese dioxide (m-Fe3O4@MnO2) hybrid nanostructure. The hybrid nanocomposite was rapidly produced based on the nucleation and growth of pure iron-oxide nanocrystals in the electrochemical system. The nanocomposite was pure, highly amorphous, and mesoporous in nature; the magnetite was spherical in shape, with an average diameter of 45 +/- 10 nm and a MnO2-plane length of 420 +/- 30 nm. The stability of the pure m-Fe3O4 was enhanced from 89.61 to 94.04% with negligible weight loss after adding manganese dioxide and the stable formation of the hybrid nanostructure. Based on the superior results of the material, it was utilized as an anode material in Li-ion batteries. The m-Fe3O4@MnO2 hybrid nanostructure had a highly active surface area, which enhanced the interfacial interaction between the Li-ion and the metal surface; it delivered 1513 mAh g(-1) and 1290 mAh g(-1) as the first specific discharge and charge capacity, respectively, with 85% coulombic efficiency, and it showed an excellent cyclic reversibility of 660 mAh g(-1) with a coulombic efficiency of almost 99% at current density of 1.0 A g(-1).
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页数:15
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共 42 条
[1]   Nanoarchitectonics: what's coming next after nanotechnology? [J].
Ariga, Katsuhiko .
NANOSCALE HORIZONS, 2021, 6 (05) :364-378
[2]   Role of Additives in Electrochemical Deposition of Ternary Metal Oxide Microspheres for Supercapacitor Applications [J].
Biswal, Avijit ;
Panda, Prasanna Kumar ;
Acharya, Achyuta Nanda ;
Mohapatra, Subhashree ;
Swain, Nibedita ;
Tripathy, Bankim Chandra ;
Jiang, Zhong-Tao ;
Sundaram, Manickam Minakshi .
ACS OMEGA, 2020, 5 (07) :3405-3417
[3]   Sonoelectrochemical synthesis of magnetite [J].
Cabrera, L. ;
Gutierrez, S. ;
Herrasti, P. ;
Reyman, D. .
INTERNATIONAL CONGRESS ON ULTRASONICS, PROCEEDINGS, 2010, 3 (01) :89-94
[4]   Dopamine-assisted preparation of Fe3O4@MnO2 yolk@shell microspheres for improved pseudocapacitive performance [J].
Chen, Qi ;
Wei, Wenjing ;
Tang, Jingjing ;
Lin, Jinkun ;
Li, Songjun ;
Zhu, Maiyong .
ELECTROCHIMICA ACTA, 2019, 317 :628-637
[5]  
Cheng H, 2021, J ENERGY CHEM, V57, P451, DOI [10.1016/j.jechem.2020.08.056, 10.1016/j.jechem.2020.08.0562095-4956/]
[6]   High temperature solid-state synthesis of dopant-free Fe2Mo3O8 for lithium ion batteries [J].
Chu, Yiyue ;
Shi, Xiaoyu ;
Wang, Ya ;
Fang, Zhiqiang ;
Deng, Yijia ;
Liu, Zixuan ;
Dong, Qingsong ;
Hao, Zhaomin .
INORGANIC CHEMISTRY COMMUNICATIONS, 2019, 107
[7]   Fe3O4/MnO2 co-doping phenolic resin porous carbon for high performance supercapacitors [J].
Dong, Xiaoxi ;
Wang, Jingyue ;
Miao, Junfeng ;
Ren, Bin ;
Wang, Xing ;
Zhang, Lihui ;
Liu, Zhenfa ;
Xu, Yuelong .
JOURNAL OF THE TAIWAN INSTITUTE OF CHEMICAL ENGINEERS, 2022, 135
[8]   Oxidation of bisphenol A by persulfate via Fe3O4-α-MnO2 nanoflower-like catalyst: Mechanism and efficiency [J].
Dong, Zhengyu ;
Zhang, Qian ;
Chen, Bor-Yann ;
Hong, Junming .
CHEMICAL ENGINEERING JOURNAL, 2019, 357 :337-347
[9]   Synergistic engineering for adsorption assisted photodegradation of 2,4 dichlorophenol using easily recoverable a-MnO2/Fe3O4 nanocomposite [J].
Dubey, Monika ;
Challagulla, Navakanth Vijay ;
Kumar, Ranjit .
APPLIED SURFACE SCIENCE ADVANCES, 2022, 11
[10]   An Fe3O4@(C-MnO2) core-double-shell composite as a high-performance anode material for lithium ion batteries [J].
Fu, Yanqing ;
Wang, Xianyou ;
Wang, Hao ;
Zhang, Youwei ;
Yang, Xiukang ;
Shu, Hongbo .
RSC ADVANCES, 2015, 5 (19) :14531-14539