A novel hybrid sodium ion capacitor based on Na [Ni0.60Mn0.35Co0.05] O2 battery type cathode and presodiated D-Ti3C2Tx pseudocapacitive anode

被引:0
|
作者
Yadav, Vikas [1 ]
Patel, Anupam [1 ]
Tiwari, Anurag [1 ]
Samriddhi
Singh, Shitanshu Pratap [1 ]
Mishra, Raghvendra [1 ]
Singh, Rajendra K. [1 ]
机构
[1] Banaras Hindu Univ, Inst Sci, Dept Phys, Ion Liquid & Solid State Ion Lab, Varanasi 221005, India
关键词
MXene; Pseudocapacitive; Hybrid sodium ion capacitor; Energy density; Power density; MXENE; SUPERCAPACITOR; NANOTUBES;
D O I
10.1016/j.jallcom.2024.176326
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 combination of the high-power density of supercapacitors and the high energy density of batteries makes hybrid sodium-ion capacitors (HSICs) a promising device. HSICs can provide better performance characteristics by harnessing both ion adsorption/desorption in the capacitor-type electrode and sodium-ion intercalation in the battery-type electrode. Here, the synthesis of MXene (Ti3C2Tx), a two-dimensional (2D) carbide and nitride is reported. Delaminated MXene (D-Ti3C2Tx) is a promising candidate for anode material in HSIC due to its large surface area (similar to 42 m(2)/g) and good electronic conductivity. Electrochemical study indicates that D-Ti3C2Tx anode exhibits a high discharge capacity of similar to 213 mAh/g at a current rate of 20 mA/g. Further the presodiated D-Ti3C2Tx anode is paired with Na [Ni0.60Mn0.35Co0.05] O-2 (P2-NMC) cathode to obtain the configuration of HSIC. The HSIC exhibits good specific capacitance of similar to 187 F/g and specific discharge capacity of similar to 110 mAh/g at a current density of 10 mA/g, according to the electrochemical analysis. A notable improvement in specific energy density (similar to 256 Wh/kg) and specific power density (similar to 579 W/kg) is also demonstrated by the HSIC. With P2-NMC being used as the cathode material rather than traditional activated carbon, there has been a rise in specific energy density.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Surface modification of nano Na[Ni0.60Mn0.35Co0.05]O2 cathode material by dextran functionalized RGO via hydrothermal treatment for high performance sodium batteries
    Mishra, Raghvendra
    Singh, Shishir K.
    Gupta, Himani
    Srivastava, Nitin
    Meghnani, Dipika
    Tiwari, Rupesh K.
    Patel, Anupam
    Tiwari, Anurag
    Tiwari, Vimal K.
    Singh, Rajendra K.
    APPLIED SURFACE SCIENCE, 2021, 535
  • [2] A Novel Hierarchical Structure of SnCu2Se4/d-Ti3C2Tx/NPC for a Lithium/Sodium Ion Battery and Hybrid Capacitor with Long-Term Cycling Stabilities
    Wang, Haoqiang
    Wang, Yu
    Liu, Yani
    Dou, Shuming
    Gan, Wei
    Yuan, Qunhui
    ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (51) : 56919 - 56929
  • [3] High Capacity O3-Type Na[Li0.05(Ni0.25Fe0.25Mn0.5)0.95]O2 Cathode for Sodium Ion Batteries
    Oh, Seung-Min
    Myung, Seung-Taek
    Hwang, Jang-Yeon
    Scrosati, Bruno
    Amine, Khalil
    Sun, Yang-Kook
    CHEMISTRY OF MATERIALS, 2014, 26 (21) : 6165 - 6171
  • [4] VS4 nanoarrays pillared Ti3C2Tx with enlarged interlayer spacing as anode for advanced lithium/sodium ion battery and hybrid capacitor
    Wang, Haoqiang
    Wang, Pengju
    Gan, Wei
    Ci, Lijie
    Li, Deping
    Yuan, Qunhui
    JOURNAL OF POWER SOURCES, 2022, 534
  • [5] Sb Doped O3 Type Na0.9Ni0.5Mn0.3Ti0.2O2 Cathode Material for Na-ion Battery
    Kong Guoqiang
    Leng Mingzhe
    Zhou Zhanrong
    Xia Chi
    Shen Xiaofang
    JOURNAL OF INORGANIC MATERIALS, 2023, 38 (06) : 656 - +
  • [6] Ti3C2(OH)2 coated Li(Ni0.6Co0.2Mn0.2)O2 cathode material with enhanced electrochemical properties for lithium ion battery
    Xu, Lipeng
    Zhou, Fei
    Zhou, Haobin
    Kong, Jizhou
    Wang, Qianzhi
    Yan, Guozhen
    ELECTROCHIMICA ACTA, 2018, 289 : 120 - 130
  • [7] An advanced lithium ion battery based on a high quality graphitic graphene anode and a Li[Ni0.6Co0.2Mn0.2]O2 cathode
    Jiao, Liansheng
    Liu, Zhenbang
    Sun, Zhonghui
    Wu, Tongshun
    Gao, Yuzhou
    Li, Hongyan
    Li, Fenghua
    Niu, Li
    ELECTROCHIMICA ACTA, 2018, 259 : 48 - 55
  • [8] A rechargeable sodium-ion battery using a nanostructured Sb-C anode and P2-type layered Na0.6Ni0.22Fe0.11Mn0.66O2 cathode
    Hasa, Ivana
    Passerini, Stefano
    Hassoun, Jusef
    RSC ADVANCES, 2015, 5 (60) : 48928 - 48934
  • [9] Ti/Co co-doped O3-Na(Ni0.3Fe0.2Mn0.5)0.85Ti0.1Co0.05O2 with high rate and durable cathode material for sodium-ion batteries
    Wang, Jiangfeng
    Li, Qinghui
    Su, Wei
    Chen, Baohui
    Zhou, Qiongyu
    Wang, Xiaofen
    MATERIALS RESEARCH EXPRESS, 2023, 10 (12)
  • [10] Trace doping realizing superior electrochemical performance in P2-type Na 0.50 Li 0.08 Mn 0.60 Co 0.16 Ni 0.16 O 2 cathode for sodium-ion batteries
    Hou, Hongying
    Qiu, Jinxu
    Li, Bao
    Wang, Liang
    Zhang, Zhuangzhuang
    Jia, Mengmin
    Lai, Xiaobing
    Han, Mingming
    Yan, Pengyao
    Liu, Dai-Huo
    Dai, Dongmei
    Wang, Bao
    CHINESE CHEMICAL LETTERS, 2023, 34 (12)