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Facile electrodeposition of 3D concentration-gradient Ni-Co hydroxide nanostructures on nickel foam as high performance electrodes for asymmetric supercapacitors 被引量:8

Facile electrodeposition of 3D concentration-gradient Ni-Co hydroxide nanostructures on nickel foam as high performance electrodes for asymmetric supercapacitors
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摘要 小说三维(3D ) 集中坡度 Ni 公司氢氧化物 nanostructures (3DCGNC ) 被一个灵巧的逐步的电气化学的免职方法直接在镍泡沫上种了并且强烈地为 supercapacitors 调查同样没有文件夹、没有售票员的电极。基于一种三电极的电气化学的描述技术,获得的 3DCGNC 电极表明了 1,760 F 的一个高特定的电容 ???? Novel three-dimensional (3D) concentration-gradient Ni-Co hydroxide nanostructures (3DCGNC) have been directly grown on nickel foam by a facile stepwise electrochemical deposition method and intensively investigated as binder- and conductor-free electrode for supercapacitors. Based on a three- electrode electrochemical characterization technique, the obtained 3DCGNC electrodes demonstrated a high specific capacitance of 1,760 F·g^-1 and a remarkable rate capability whereby more than 62.5% capacitance was retained when the current density was raised from 1 to 100 A·g^-1. More importantly, asymmetric supercapacitors were assembled by using the obtained 3DCGNC as the cathode and Ketjenblack as a conventional activated carbon anode. The fabricated asymmetric supercapacitors exhibited very promising electrochemical performances with an excellent combination of high energy density of 103.0 Wh·kg^-1 at a power density of 3.0 kW·kg^-1, and excellent rate capability-energy densities of about 70.4 and 26.0 Wh·kg^-1 were achieved when the average power densities were increased to 26.2 and 133.4 kW·kg^-1, respectively. Moreover, an extremely stable cycling life with only 2.7% capacitance loss after 20,000 cycles at a current density of 5 A·g^-1 was achieved, which compares very well with the traditional doublelayer supercapacitors.
出处 《Nano Research》 SCIE EI CAS CSCD 2015年第8期2744-2754,共11页 纳米研究(英文版)
基金 This work was supported by the National Natural Science Foundation of China (No. 21001117), the Shenzhen Peacock Plan (No. KQCX20140522150815065), and the Starting-Up Funds of South University of Science and Technology of China (SUSTC) through the Talent Plan of the Shenzhen Government. H. T. L. acknowledges the support from a Key Project of the Hunan Provincial Science and Technology Plan (No. 2014FJ2007).
关键词 电化学沉积法 超级电容器 电化学性能 浓度梯度 氢氧化物 三电极 泡沫镍 纳米材料 electrodeposition,concentration-gradient,nickel cobalt hydroxides,supercapacitors
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  • 1Whittingham, M. S. History, evolution, and future status of energy storage. Proc. IEEE. 2012, 100, 1518-1534.
  • 2Armaroli, N.; Balzani, V. Towards an electricity-powered world. Energy Environ. Sci. 2011,4,3193-3222.
  • 3Arico, A. S.; Bruce, P.; Scrosati, B.; Tarascon, J. M.; Van Schalkwijk, W. Nanostructured materials for advanced energy conversion and storage devices. Nat. Mater. 2005, 4, 366-377.
  • 4Simon, P.; Gogotsi, Y. Materials for electrochemical capacitors. Nat. Mater. 2008, 7, 845-854.
  • 5Hall, P. J.; Mirzaeian, M.; Fletcher, S. I.; Sillars, F. B.; Rennie, A. J. R.; Shitta-Bey, G. 0.; Wilson, G.; Cruden, A.; Carter, R. Energy storage in electrochemical capacitors: Designing functional materials to improve performance. Energy Environ. Sci. 2010,3, 1238-1251.
  • 6Wang, G. P.; Zhang, L.; Zhang, J. J. A review of electrode materials for electrochemical supercapacitors. Chern. Soc. Rev. 2012,41,797-828.
  • 7Zhu, Y. W.; Murali, S.; Stoller, M. D.; Ganesh, K. J.; Cai, W. W.; Ferreira, P. J.; Pirkle, A.; Wallace, R. M.; Cychosz, K. A.; Thommes, M., et al. Carbon-based supercapacitors produced by activation of graphene. Science 2011, 332, 1537-1541.
  • 8Sun, Y. Q.; Wu, Q.; Shi, G. Q. Graphene based new energy materials. Energy Environ. Sci. 2011, 4, 1113-1132.
  • 9Huang, Y.; Liang, 1. 1.; Chen, Y. S. An overview of the applications of graphene-based materials in supercapacitors. Small 2012, 8, 1805-1834.
  • 10Zhai, Y. P.; Dou, Y. Q.; Zhao, D. Y.; Fulvio, P. F.; Mayes, R T.; Dai, S. Carbon materials for chemical capacitive energy storage. Adv. Mater. 2011,23,4828-4850.

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