A new strategy for the morphology-controlled synthesis of Ni/Co MOFs for high-performance asymmetric supercapacitors

被引:17
作者
Radhika, M. G. [1 ,2 ]
Srilakshmi, R. [3 ]
Tejashree, V. [4 ]
Venkatesh, Krishna [4 ]
Kamath, M. K. Sudha [1 ,2 ]
Nagaraju, Kathyayini [4 ]
机构
[1] RV Coll Engn, Ctr Nanomat & Devices CND, Dept Phys, Bengaluru 560059, India
[2] Visvesvaraya Technol Univ, Belagavi 590018, India
[3] Jyothy Inst Technol, Dept Elect & Commun, Bengaluru 560082, Karnataka, India
[4] Jyothy Inst Technol, Ctr Incubat Innovat Res & Consultancy CIIRC, Bengaluru 560082, Karnataka, India
关键词
Ni; Co-MOFs; Morphological properties; Asymmetric supercapacitors; Specific energy; Specific power; METAL-ORGANIC FRAMEWORKS; ELECTROCHEMICAL PERFORMANCE; ELECTRODE MATERIALS; NANOSHEETS; CARBON;
D O I
10.1016/j.est.2023.106766
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Ni & Co based Metal-Organic Frameworks (MOFs) with different Ni & Co ratios 1:1, 2:1, 1:2 -NCs were syn-thesized using Trimesic acid as linker by solvothermal process, and the same were abbreviated as NC(1:1), NC(2:1) and NC(1:2) respectively. All the samples were analysed by analytical techniques such as Powder X-ray diffraction (P-XRD), Fourier Transform-Infrared Spectroscopy (FT-IR), Brunauer-Emmett-Teller (BET) surface area, Scan-ning Electron Microscopy (SEM), and Transmission Electron Microscopy (TEM) techniques. Morphological variations in NCs were observed from SEM images as ultrathin nanoflakes (NC(1:1)) dandelion (NC(2:1)) and nano -spikes (NC(1:2)) due to the space coordination effect. Further, NCs were checked for their electrochemical per-formances in both three and two-electrode systems. Among NCs, NC(1:1) exhibited remarkable specific capacity of 172C g-1 @ 2.5 A g-1 in 1 M KOH solution. Asymmetric coin cell -ACC (CR-2032) constructed using NC(1:1) and commercially purchased AC in 1 M KOH solution, exhibited a high specific capacity of 92C g-1 @ 1 A g-1 with corresponding specific energy (SE) of 23 Wh kg- 1 & specific power (SP) of 90 W kg -1. The coin cells indicated 20,000 cycles stability with 90 % specific capacity retention at 5000th cycle, however it was decreased to 47 % at the end of 20,000th cycle. The self-discharge of ACC was also investigated by estimating open circuit voltage decay and interestingly the decay was only 20.4 mV h-1 after 48 h. Two-coin cells, each charged to 0-1.8 V were connected in series and utilized for its potential flashlight application in powering 12 white LEDs for 2 min.
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页数:11
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共 46 条
[1]   Hierarchical core-shell 2D MOF nanosheet hybrid arrays for high-performance hybrid supercapacitors [J].
Bi, Qiong ;
Ma, Qingxiang ;
Tao, Kai ;
Han, Lei .
DALTON TRANSACTIONS, 2021, 50 (23) :8179-8188
[2]   "Green" carbon with hierarchical three dimensional porous structure derived from - Pongamia pinnata seed oil extract cake and NiCo2O4-Ni(OH)2/Multiwall carbon nanotubes nanocomposite as electrode materials for high performance asymmetric supercapacitor [J].
Chaitra, K. ;
Narendra, Reddy ;
Venkatesh, Krishna ;
Nagaraju, N. ;
Kathyayini, Nagaraju .
JOURNAL OF POWER SOURCES, 2017, 356 :212-222
[3]   Ultrathin Ni-MOF nanosheet arrays grown on polyaniline decorated Ni foam as an advanced electrode for asymmetric supercapacitors with high energy density [J].
Cheng, Qiuhui ;
Tao, Kai ;
Han, Xue ;
Yang, Yujing ;
Yang, Zheng ;
Ma, Qingxiang ;
Han, Lei .
DALTON TRANSACTIONS, 2019, 48 (13) :4119-4123
[4]   Fabrication of hierarchical porous nickel based metal-organic framework (Ni-MOF) constructed with nanosheets as novel pseudo-capacitive material for asymmetric supercapacitor [J].
Du, Pengcheng ;
Dong, Yuman ;
Liu, Chang ;
Wei, Wenli ;
Liu, Dong ;
Liu, Peng .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2018, 518 :57-68
[5]   A review on contemporary Metal-Organic Framework materials [J].
Gangu, Kranthi Kumar ;
Maddila, Suresh ;
Mukkamala, Saratchandra Babu ;
Jonnalagadda, Sreekantha B. .
INORGANICA CHIMICA ACTA, 2016, 446 :61-74
[6]   Dandelion-like nickel/cobalt metal-organic framework based electrode materials for high performance supercapacitors [J].
Gao, Shuwen ;
Sui, Yanwei ;
Wei, Fuxiang ;
Qi, Jiqiu ;
Meng, Qingkun ;
Ren, Yaojian ;
He, Yezeng .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2018, 531 :83-90
[7]   Carbon-coated NiMn layered double hydroxides/Ni3S2 nanocomposite for high performance supercapacitors [J].
He, Yezeng ;
Liu, Didi ;
Zhao, Houqiang ;
Wang, Jiemei ;
Sui, Yanwei ;
Qi, Jiqiu ;
Chen, Zheng ;
Zhang, Ping ;
Chen, Changjiu ;
Zhuang, Dongdong .
JOURNAL OF ENERGY STORAGE, 2021, 41
[8]   Constructing Co(OH)F Nanorods@NiCo-LDH Nanocages Derived from ZIF-67 for High-Performance Supercapacitors [J].
He, Yezeng ;
Zhang, Xiaolong ;
Wang, Jiemei ;
Sui, Yanwei ;
Qi, Jiqiu ;
Chen, Zheng ;
Zhang, Ping ;
Chen, Changjiu ;
Liu, Wei .
ADVANCED MATERIALS INTERFACES, 2021, 8 (17)
[9]   Energy storage: Applications and challenges [J].
Kousksou, T. ;
Bruel, P. ;
Jamil, A. ;
El Rhafiki, T. ;
Zeraouli, Y. .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2014, 120 :59-80
[10]   Microwave-assisted binder-free synthesis of 3D Ni-Co-Mn oxide nanoflakes@Ni foam electrode for supercapacitor applications [J].
Lamiel, Charmaine ;
Van Hoa Nguyen ;
Kumar, Deivasigamani Ranjith ;
Shim, Jae-Jin .
CHEMICAL ENGINEERING JOURNAL, 2017, 316 :1091-1102