The Experts below are selected from a list of 132 Experts worldwide ranked by ideXlab platform

Hiroshi Inoue - One of the best experts on this subject based on the ideXlab platform.

  • charge discharge characteristics of Nickel Zinc Battery with polymer hydrogel electrolyte
    Journal of Power Sources, 2005
    Co-Authors: Chiaki Iwakura, Hiroki Murakami, Shinji Nohara, Naoji Furukawa, Hiroshi Inoue
    Abstract:

    Abstract A new Nickel/Zinc (Ni/Zn) Battery was assembled by using polymer hydrogel electrolyte prepared from cross-linked potassium poly(acrylate) and KOH aqueous solution, and its charge–discharge characteristics were investigated. The experimental Ni/Zn cell with the polymer hydrogel electrolyte exhibited well-defined charge–discharge curves and remarkably improved charge–discharge cycle performance, compared to that with a KOH aqueous solution. Moreover, it was found that dendritic growth hardly occurred on the Zinc electrode surface during charge–discharge cycles in the polymer hydrogel electrolyte. These results indicate that the polymer hydrogel electrolyte can successfully be used in Ni/Zn batteries as an electrolyte with excellent performance.

  • Charge–discharge characteristics of Nickel/Zinc Battery with polymer hydrogel electrolyte
    Journal of Power Sources, 2005
    Co-Authors: Chiaki Iwakura, Hiroki Murakami, Shinji Nohara, Naoji Furukawa, Hiroshi Inoue
    Abstract:

    Abstract A new Nickel/Zinc (Ni/Zn) Battery was assembled by using polymer hydrogel electrolyte prepared from cross-linked potassium poly(acrylate) and KOH aqueous solution, and its charge–discharge characteristics were investigated. The experimental Ni/Zn cell with the polymer hydrogel electrolyte exhibited well-defined charge–discharge curves and remarkably improved charge–discharge cycle performance, compared to that with a KOH aqueous solution. Moreover, it was found that dendritic growth hardly occurred on the Zinc electrode surface during charge–discharge cycles in the polymer hydrogel electrolyte. These results indicate that the polymer hydrogel electrolyte can successfully be used in Ni/Zn batteries as an electrolyte with excellent performance.

Z. P. Arkhangel'skaya - One of the best experts on this subject based on the ideXlab platform.

M. M. Loginova - One of the best experts on this subject based on the ideXlab platform.

Chiaki Iwakura - One of the best experts on this subject based on the ideXlab platform.

  • charge discharge characteristics of Nickel Zinc Battery with polymer hydrogel electrolyte
    Journal of Power Sources, 2005
    Co-Authors: Chiaki Iwakura, Hiroki Murakami, Shinji Nohara, Naoji Furukawa, Hiroshi Inoue
    Abstract:

    Abstract A new Nickel/Zinc (Ni/Zn) Battery was assembled by using polymer hydrogel electrolyte prepared from cross-linked potassium poly(acrylate) and KOH aqueous solution, and its charge–discharge characteristics were investigated. The experimental Ni/Zn cell with the polymer hydrogel electrolyte exhibited well-defined charge–discharge curves and remarkably improved charge–discharge cycle performance, compared to that with a KOH aqueous solution. Moreover, it was found that dendritic growth hardly occurred on the Zinc electrode surface during charge–discharge cycles in the polymer hydrogel electrolyte. These results indicate that the polymer hydrogel electrolyte can successfully be used in Ni/Zn batteries as an electrolyte with excellent performance.

  • Charge–discharge characteristics of Nickel/Zinc Battery with polymer hydrogel electrolyte
    Journal of Power Sources, 2005
    Co-Authors: Chiaki Iwakura, Hiroki Murakami, Shinji Nohara, Naoji Furukawa, Hiroshi Inoue
    Abstract:

    Abstract A new Nickel/Zinc (Ni/Zn) Battery was assembled by using polymer hydrogel electrolyte prepared from cross-linked potassium poly(acrylate) and KOH aqueous solution, and its charge–discharge characteristics were investigated. The experimental Ni/Zn cell with the polymer hydrogel electrolyte exhibited well-defined charge–discharge curves and remarkably improved charge–discharge cycle performance, compared to that with a KOH aqueous solution. Moreover, it was found that dendritic growth hardly occurred on the Zinc electrode surface during charge–discharge cycles in the polymer hydrogel electrolyte. These results indicate that the polymer hydrogel electrolyte can successfully be used in Ni/Zn batteries as an electrolyte with excellent performance.

L. B. Raikhel'son - One of the best experts on this subject based on the ideXlab platform.