Synthesis of ZnO Nanorods/Carbon Nanofiber Composites Using Electrochemical Deposition for Efficient Supercapacitor Electrodes: Control of Nucleation and Growth of ZnO Nanorods

被引:6
作者
Park, Yiseul [1 ]
Oh, Misol [1 ]
Kim, Jae Hyun [1 ]
机构
[1] DGIST, Div Nano & Energy Convergence Res, Daegu 42988, South Korea
关键词
ZnO Nanorod; Electrodeposition; Carbon Nanofiber; Supercapacitor Bccc; ZINC-OXIDE NANORODS; ARRAYS;
D O I
10.1166/jnn.2016.13571
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
ZnO nanorods can be electrochemically deposited onto carbon nanofiber (CNF) substrates and used for high-performance supercapacitors. The conductive, three-dimensional structure of the CNF web allows for electrodeposition of the ZnO nanorods. Therefore, the properties of the CNF substrate, as well as the deposition conditions, directly relate to the deposition mechanisms of the ZnO nanorods. The ZnO nanorod structure can be modulated by tuning the current density, precursor concentration, and type of applied current. These parameters affect the nucleation and growth mechanisms, resulting in different structures of ZnO nanorods. Applying a pulsed current with a rest time (5 s) during electrodeposition produces denser and narrower ZnO nanorods than those prepared under a constant current. The additional ZnO thin film coating by atomic layer deposition (ALD) on the CNF substrate exhibits a different tendency of the deposition of ZnO nanorods by acting as a seed layer.
引用
收藏
页码:11669 / 11673
页数:5
相关论文
共 50 条
  • [41] Improvement of bond strength between ZnO nanorods and carbon fibers using magnetron sputtered ZnO films as the interphase
    Du, Yunzhe
    Zhao, Feng
    Liu, Li
    Gao, Yunzhi
    Xing, Lixin
    Li, Qin
    Fu, Chuankai
    Zhong, Zhengxiang
    Zhang, Xuanfeng
    CRYSTENGCOMM, 2017, 19 (05): : 868 - 875
  • [42] Controllable growth of ZnO nanorods by seed layers annealing using hydrothermal method
    Xian, Fenglin
    Bai, Wangfeng
    Xu, Linhua
    Wang, Xiaoxiong
    Li, Xiangyin
    MATERIALS LETTERS, 2013, 108 : 46 - 49
  • [43] Control of epitaxial growth orientation in ZnO nanorods on c-plane sapphire substrates
    Chen, Hou-Guang
    Li, Zheng-Wei
    Lian, Hong-De
    THIN SOLID FILMS, 2010, 518 (19) : 5520 - 5524
  • [44] Low-Temperature Synthesis and Growth Mechanism of ZnO Nanorods on Crystalline Si Substrate
    Perez-Hernandez, Raul
    Salazar, J. Jestus Velazquez
    Jose-Yacaman, Miguel
    JOURNAL OF NANO RESEARCH, 2011, 14 : 69 - 82
  • [45] Synthesis of ZnO nanorods on a flexible Phynox alloy substrate: influence of growth temperature on their properties
    Gaddam, Venkateswarlu
    Kumar, R. Rakesh
    Parmar, Mitesh
    Nayak, M. M.
    Rajanna, K.
    RSC ADVANCES, 2015, 5 (109) : 89985 - 89992
  • [46] An electric-field assisted growth control methodology for integrating ZnO nanorods with microstructures
    Zong, X.
    Zhu, R.
    NANOSCALE, 2014, 6 (21) : 12732 - 12739
  • [47] High-Speed Growth of ZnO Nanorods in Preheating Condition Using Microwave-Assisted Growth Method
    Chae, Hyun Uk
    Rana, Abu ul Hassan Sarwar
    Park, Ye-Jin
    Kim, Hyun-Seok
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2018, 18 (03) : 2041 - 2044
  • [48] Using carbon quantum dots to improve the resistive switching behavior of ZnO nanorods device
    Wang, Xueliang
    Xu, Jianping
    Shi, Shaobo
    Zhang, Xiaosong
    Zhang, Xuguang
    Shi, Xin
    Li, Shubin
    Li, Linlin
    Liu, Xiaojuan
    Li, Lan
    PHYSICS LETTERS A, 2016, 380 (1-2) : 262 - 266
  • [49] Structural and Morphology of ZnO Nanorods Synthesized Using ZnO Seeded Growth Hydrothermal Method and Its Properties as UV Sensing
    Ridhuan, Nur Syafinaz
    Razak, Khairunisak Abdul
    Lockman, Zainovia
    Aziz, Azlan Abdul
    PLOS ONE, 2012, 7 (11):
  • [50] Studies on the structural, morphological, optical and electrical properties of Al-doped ZnO nanorods prepared by electrochemical deposition
    Henni, Abdellah
    Merrouche, Abdallah
    Telli, Laid
    Karar, Amina
    JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2016, 763 : 149 - 154