Band Gap Engineering of Boron Nitride by Graphene and Its Application as Positive Electrode Material in Asymmetric Supercapacitor Device

被引:129
|
作者
Saha, Sanjit [1 ,2 ]
Jana, Milan [1 ,2 ]
Khanra, Partha [3 ]
Samanta, Pranab [1 ,2 ]
Koo, Hyeyoung [4 ]
Murmu, Naresh Chandra [1 ,2 ]
Kuila, Tapas [1 ]
机构
[1] CSIR, Cent Mech Engn Res Inst, Surface Engn & Tribol Div, Durgapur 713209, India
[2] Anusandhan Bhawan, Acad Sci & Innovat Res AcSIR, New Delhi 110001, India
[3] KIST, Soft Innovat Mat Res Ctr, Jeonbuk 565905, South Korea
[4] KIST, Inst Adv Composite Mat, Soft Innovat Mat Res Ctr, Jeonbuk 565905, South Korea
关键词
graphene; boron nitride; band gap; supercapacitor; energy density; ATOMIC LAYERS; FABRICATION; NANOWIRE; COMPOSITES; NANOSHEETS; REDUCTION; NANOTUBES; ARRAYS; FOAM;
D O I
10.1021/acsami.5b03562
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Nanostructured hexagonal boron nitride (h-BN)/reduced graphene oxide (RGO) composite is prepared by insertion of h-BN into the graphene oxide through hydrothermal reaction. Formation of the super lattice is confirmed by the existence of two separate UV-visible absorption edges corresponding to two different band gaps. The composite materials show enhanced electrical conductivity as compared to the bulk h-BN. A high specific capacitance of similar to 824 F g(-1) achieved at a current density of 4 A g(-1) for the composite in three-electrode electrochemical measurement. The potential window of the composite electrode lies in the range from -0.1 to 0.5 V in 6 M aqueous KOH electrolyte. The operating voltage is increased to 1.4 V in asymmetric supercapacitor (ASC) device where the thermally reduced graphene oxide is used as the negative electrode and the h-BN/RGO composite as the positive electrode. The ASC exhibits a specific capacitance of 145.7 F g(-1) at a current density of 6 A g(-1) and high energy density of 39.6 W h kg(-1) corresponding to a large power density of similar to 4200 W kg(-1). Therefore, a facile hydrothermal route is demonstrated for the first time to utilize h-BN-based composite materials as energy storage electrode materials for supercapacitor applications.
引用
收藏
页码:14211 / 14222
页数:12
相关论文
共 50 条
  • [41] Density functional theory studies on graphene/h-boron nitride hybrid nanosheets for supercapacitor electrode applications
    Paramasivam, Naveena
    Sambandam, Anandan
    Natesan, Baskaran
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2023, 25 (43) : 29914 - 29923
  • [42] Porous Graphene Sheets as Positive Electrode Material for Supercapacitor - Battery Hybrid Energy Storage Devices
    Mohanapriya, K.
    Jha, Neetu
    61ST DAE-SOLID STATE PHYSICS SYMPOSIUM, 2017, 1832
  • [43] Electrochemical investigation of phosphorous and boron heteroatoms incorporated reduced graphene oxide electrode material for supercapacitor applications
    Surya, Sekar
    Pandurangan, Arumugam
    Govindaraj, Rajamanickam
    JOURNAL OF ENERGY STORAGE, 2024, 86
  • [44] Carbon nanohorn-graphene nanoplate hybrid: An excellent electrode material for supercapacitor application
    Maiti, Sandip
    Das, Amit Kumar
    Karan, Sumanta Kumar
    Khatua, Bhanu B.
    JOURNAL OF APPLIED POLYMER SCIENCE, 2015, 132 (25)
  • [45] Graphene/ZnO Hybrid Nanocomposites Electrode Material for High-Performance Supercapacitor Application
    Kapil Jagtap
    Rajesh Barde
    Kailash Nemade
    Sandeep Waghuley
    Journal of Electronic Materials, 2025, 54 (2) : 1218 - 1227
  • [46] Synthesis of a Graphene-Polypyrrole Nanotube Composite and Its Application in Supercapacitor Electrode
    Liu, Jianhua
    An, Junwei
    Ma, Yuxiao
    Li, Mengliu
    Ma, Rongbao
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2012, 159 (06) : A828 - A833
  • [47] Construction Of NiCe-LDH Nanostructure From Ni-MOF As A Positive Electrode Material for High-Performance Asymmetric Supercapacitor Device
    Ramachandran, Rajendran
    Zhao, Changhui
    Xu, Zong-Xiang
    Wang, Fei
    2020 IEEE 15TH INTERNATIONAL CONFERENCE ON NANO/MICRO ENGINEERED AND MOLECULAR SYSTEM (IEEE NEMS 2020), 2020, : 485 - 489
  • [48] Tunable and sizable band gap of single-layer graphene sandwiched between hexagonal boron nitride
    Quhe, Ruge
    Zheng, Jiaxin
    Luo, Guangfu
    Liu, Qihang
    Qin, Rui
    Zhou, Jing
    Yu, Dapeng
    Nagase, Shigeru
    Mei, Wai-Ning
    Gao, Zhengxiang
    Lu, Jing
    NPG ASIA MATERIALS, 2012, 4 : e6 - e6
  • [49] Tunable and sizable band gap of single-layer graphene sandwiched between hexagonal boron nitride
    Ruge Quhe
    Jiaxin Zheng
    Guangfu Luo
    Qihang Liu
    Rui Qin
    Jing Zhou
    Dapeng Yu
    Shigeru Nagase
    Wai-Ning Mei
    Zhengxiang Gao
    Jing Lu
    NPG Asia Materials, 2012, 4 : e6 - e6
  • [50] Band gap determination of graphene, h-boron nitride, phosphorene, silicene, stanene, and germanene nanoribbons
    Pandya, Ankur
    Sangani, Keyur
    Jha, Prafulla K.
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2020, 53 (41)