NIPPON KAGAKU KAISHI
Online ISSN : 2185-0925
Print ISSN : 0369-4577
Development of Nickel-Metal Hydride Batteries
Mitszo NOGAMINobuhiro FURUKAWA
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JOURNAL FREE ACCESS

1995 Volume 1995 Issue 1 Pages 1-8

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Abstract
SANYO Electric Co., Ltd. led the world by successfully marketing nickel-metal hydride betteries in 1990. Because these batteries offer the same operating voltage as nickel-cadmium batteries, and more than 1.5 times higher capacity, their use is rapidly expanding. In order to refine nickel-metal hydride batteries into a marketable product, we had to overcome a number of technical difficulties, mainly in the development of hydrogen absorbing alloys, as detailed below. We used a LaNi5-based hydrogen absorbing alloy beca use of its superior capabilities as an electrode catalyst. We then directed our efforts toward developing a material that offers both high capacity and ex cellent corrosion resistance by gradually replacing a portion of the LaNi5 with other elements. While verifying the characteristics of these new combinations through experimental electrodes and batteries, we discovered that a MmNi3.2Co1.0Al0.2Mn0.6 alloy had the same characteristics, and later demonstrated that we could produce a high-capacity, long-life battery with that alloy. Moreover, we developed cadmium-free nickel electrode, and raise d its performance to conventional levels. We also established structural technologies by analyzing the reaction characteristics of the nickel-metal hydride batteries. The batteries that w e developed as a result of these efforts offer superior characteristics, including a 1.2-hour charge time, a 4C discharge rate, and a service life of at least 500 charge-discharge cycles. These characteristics have enabled the application of nickel-metal hydride batteries to the power sup plies of high-performance equipment such as communications equipment and computers.
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