Fe3O4-embedded rGO composites as anode for rechargeable FeOx-air batteries

被引:44
作者
Tan, Wai Kian [1 ]
Asami, Kenta [2 ]
Maegawa, Keiichiro [2 ]
Kumar, Rajesh [2 ]
Kawamura, Go [2 ]
Muto, Hiroyuki [1 ,2 ]
Matsuda, Atsunori [2 ]
机构
[1] Toyohashi Univ Technol, Inst Liberal Arts & Sci, Toyohashi, Aichi 4418580, Japan
[2] Toyohashi Univ Technol, Dept Elect & Elect Informat Engn, Toyohashi, Aichi 4418580, Japan
基金
日本学术振兴会;
关键词
Iron oxide (Fe3O4); Graphene; Reduced graphene oxide; Alkaline electrolyte; Rechargeable Fe-air batteries; PERFORMANCE; ELECTRODES; REDUCTION; HYBRID; ENERGY;
D O I
10.1016/j.mtcomm.2020.101540
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A simple formation of iron oxide (Fe3O4)-embedded reduced graphene oxide (rGO) composite was demonstrated using the chemical precipitation method proposed in this study. The rGO consisted of exfoliated nanosheets serves as a good framework for penetration and adsorption of the Fe precursor, allowing homogeneous formation of Fe3O4 crystals within the rGO nanosheet structure. The Fe3O4/rGO composite electrode, containing 60 wt.% Fe3O4, demonstrated promising electrochemical behavior at different scan rates. In a three-electrode charge discharge measurement, a prolonged cyclic performance with good capacity retention for 100 cycles was obtained. In the battery performance evaluation for alkaline aqueous rechargeable Fe-air batteries, a maximum and stable discharge capacity of approximately 420 mA h g(-1) was achieved. This simple fabrication method of Fe3O4/rGO composites is very promising not only for large-scale active materials fabrication for Fe-air batteries with enhanced performance, but also serves as a good platform for the development of complex-oxide-rGO hybrids in high performance energy storage materials.
引用
收藏
页数:9
相关论文
共 31 条
[1]   Recent advances in air-battery chemistries [J].
Chawla, N. .
MATERIALS TODAY CHEMISTRY, 2019, 12 :324-331
[2]   Carbon-Based Fibers for Advanced Electrochemical Energy Storage Devices [J].
Chen, Shaohua ;
Qiu, Ling ;
Cheng, Hui-Ming .
CHEMICAL REVIEWS, 2020, 120 (05) :2811-2878
[3]   Selective electrochemical sensing for arsenite using rGO/Fe3O4 nanocomposites [J].
Devi, Pooja ;
Sharma, Chhavi ;
Kumar, Praveen ;
Kumar, Mahesh ;
Bansod, Baban K. S. ;
Nayak, Manoj K. ;
Singla, Madan L. .
JOURNAL OF HAZARDOUS MATERIALS, 2017, 322 :85-94
[4]   Synthesis of nano-Fe3O4-loaded tubular carbon nanofibers and their application as negative electrodes for Fe/air batteries [J].
Ito, Akisuke ;
Zhao, Liwei ;
Okada, Shigeto ;
Yamaki, Jun-ichi .
JOURNAL OF POWER SOURCES, 2011, 196 (19) :8154-8159
[5]   Fe nanoparticle entrained in tubular carbon nanofiber as an effective electrode material for metal-air batteries: A fundamental reason [J].
Kim, Taegon ;
Ohata, Yuzo ;
Kim, Jandee ;
Rhee, Choong Kyun ;
Miyawaki, Jin ;
Yoon, Seong-Ho .
CARBON, 2014, 80 :698-707
[6]  
Kumar R., 2019, Prog. Energy Combust. Sci., V75
[7]   Heteroatom doped graphene engineering for energy storage and conversion [J].
Kumar, Rajesh ;
Sahoo, Sumanta ;
Joanni, Ednan ;
Singh, Rajesh K. ;
Maegawa, Keiichiro ;
Tan, Wai Kian ;
Kawamura, Go ;
Kar, Kamal K. ;
Matsuda, Atsunori .
MATERIALS TODAY, 2020, 39 :47-65
[8]   Microwave-assisted synthesis of Mn3O4-Fe2O3/Fe3O4@rGO ternary hybrids and electrochemical performance for supercapacitor electrode [J].
Kumar, Rajesh ;
Youssry, Sally M. ;
Ya, Kyaw Zay ;
Tan, Wai Kian ;
Kawamura, Go ;
Matsuda, Atsunori .
DIAMOND AND RELATED MATERIALS, 2020, 101
[9]   A review on synthesis of graphene, h-BN and MoS2 for energy storage applications: Recent progress and perspectives [J].
Kumar, Rajesh ;
Sahoo, Sumanta ;
Joanni, Ednan ;
Singh, Rajesh Kumar ;
Yadav, Ram Manohar ;
Verma, Rajiv Kumar ;
Pratap Singh, Dinesh ;
Tan, Wai Kian ;
Perez del Pino, Angel ;
Moshkalev, Stanislav A. ;
Matsuda, Atsunori .
NANO RESEARCH, 2019, 12 (11) :2655-2694
[10]   Recent progress in the synthesis of graphene and derived materials for next generation electrodes of high performance lithium ion batteries [J].
Kumar, Rajesh ;
Sahoo, Sumanta ;
Joanni, Ednan ;
Singh, Rajesh Kumar ;
Tan, Wai Kian ;
Kar, Kamal Krishna ;
Matsuda, Atsunori .
PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 2019, 75