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Featured researches published by Reizo Maeda.


Research on Chemical Intermediates | 2006

Effect of separators on the self-discharge reaction in nickel-metal hydride batteries

Katsuhiko Shinyama; Yasuyuki Harada; Reizo Maeda; Hiroshi Nakamura; Shigeki Matsuta; Toshiyuki Nohma; Ikuo Yonezu

The effects of separators on the self-discharge behavior and the suppression of self-discharge by a sulfonated polyolefin separator were investigated with test cells. The experimental results indicate that a sulfonated polyolefin separator effectively suppresses the self-discharge reaction in nickel-metal hydride batteries. It is also found that a sulfonated polyolefin sheet does not necessarily need to be sandwiched by positive and negative electrodes to act as a separator; it can be placed anywhere within a cell to suppress the self-discharge reaction. The self-discharge reaction is considered to be suppressed by trapping redox shuttle substances, especially nitrogen-containing compounds, by the separator.


Research on Chemical Intermediates | 2006

Suppression mechanism of the self-discharge reaction in nickel-metal hydride batteries using a sulfonated polyolefin separator

Katsuhiko Shinyama; Yasuyuki Harada; Reizo Maeda; Hiroshi Nakamura; Shigeki Matsuta; Toshiyuki Nohma; Ikuo Yonezu

The suppression mechanism of the self-discharge reaction in nickel-metal hydride batteries using a sulfonated polyolefin separator was investigated with sealed-type AA size cells. The experimental results indicate that a sulfonated polyolefin separator effectively suppresses the self-discharge reaction in nickel-metal hydride batteries by trapping nitrogen-containing redox shuttle substances. It is also found that a sulfonated polyolefin separator traps the shuttle substances as gaseous ammonia. In the experiment examining the influence of the amount of the shuttle substances on the self-discharge, the starting point of the self-discharge agreed well with the point at which the nitrogen adsorption capacity of a sulfonated polyolefin separator reached its maximum.


Archive | 2004

Nickel-hydrogen storage battery

Reizo Maeda; Katsuhiko Shinyama; Yoshinori Matsuura; Mitsuzo Nogami; Ikuo Yonezu; Koji Nishio


Archive | 2011

Method of detecting battery internal resistance

Reizo Maeda; Shinya Inui; Makoto Tada; Atsushi Hayashida; Yuki Miura; Masayuki Nishida


Archive | 2011

Battery degradation level detection method

Reizo Maeda


Archive | 1999

ELECTRODE AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY

Reizo Maeda; Yoshinori Matsuura; Katsuhiko Niiyama; Toshiyuki Noma; Tadayoshi Tanaka; Ikuro Yonezu; 礼造 前田; 克彦 新山; 義典 松浦; 忠佳 田中; 育郎 米津; 俊之 能間


Archive | 1999

Nickel electrodes for alkaline secondary battery and alkaline secondary batteries

Katsuhiko Shinyama; Reizo Maeda; Yasuyuki Harada; Tadayoshi Tanaka; Yoshinori Matsuura; Toshiyuki Nohma; Ikuo Yonezu


Archive | 2008

VEHICULAR POWER SUPPLY UNIT AND CURRENT CONTROLLING METHOD THEREFOR

Reizo Maeda; 礼造 前田


Archive | 1996

Non-sintered nickel electrode for alkaline storage cell

Mutsumi Yano; Mitsuzo Nogami; Reizo Maeda; Mamoru Kimoto; Shigekazu Yasuoka; Katsuhiko Shinyama; Koji Nishio; Toshihiko Saito


Archive | 1997

Charging of battery unit and device therefor

Reizo Maeda; Yoshinori Matsuura; Katsuhiko Niiyama; Koji Nishio; Mitsuzo Nogami; Koichi Sato; Ikuro Yonezu; 広一 佐藤; 礼造 前田; 克彦 新山; 義典 松浦; 育郎 米津; 晃治 西尾; 光造 野上

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