新一代高能动力镍氢便携式电池的先进材料

S. Dhar, M. Fetcenko, S. Ovshinsky
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引用次数: 3

摘要

镍氢电池由于其优异的性价比、适用于多种产品组合以及环境可接受性,在大众市场便携式应用中大量商业化生产。Ovonic Battery Company Inc. (OBC)是Energy Conversion Devices Inc. (ECD)的子公司,通过建立基本的专利组合、授权商网络和业务分支机构,以及基于其原子工程方法的持续产品改进,已经在镍氢电池领域确立了主导地位。镍氢市场增长的最大机会是便携式电动工具、电动汽车、混合动力汽车和燃料电池电动汽车。这些应用受益于比能量、循环寿命、高温性能、活化/形成,特别是比功率的改进。材料技术的进步使比能量(100 Wh/kg)、比功率(1000 W/kg)、高温操作、电荷保持、循环寿命和电压稳定性等性能得到改善。虽然电极配置和封装是电池设计中的重要因素,但下一代镍氢技术的核心是对金属氢化物和氢氧化镍活性材料的持续根本性改进。本文讨论了性能、应用和降低成本方面的进展,特别强调了改进的专有金属氢化物和氢氧化镍材料使这些进展成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced materials for next generation high energy and power nickel-metal hydride portable batteries
Nickel-metal hydride batteries are in high volume commercial production for mass market portable applications due to an excellent cost to performance ratio, application to a versatile product mix and environmental acceptability. Ovonic Battery Company Inc. (OBC) a subsidiary of Energy Conversion Devices Inc. (ECD) has established the dominant position in Ni-MH batteries by establishing a fundamental patent portfolio, a network of licensees and business affiliates, and continued product improvement based upon its atomic engineering approach. The largest opportunities for Ni-MH market growth are portable power tools, EV, HEV and fuel cell electric vehicles. These applications benefit from improvements in specific energy, cycle life, high temperature performance, activation/formation, and in particular specific power. Advances in materials technology have enabled performance improvements in specific energy (100 Wh/kg), specific power (1000 W/kg), high temperature operation, charge retention, cycle life and voltage stability. While electrode configuration and packaging are important factors in cell design, at the core of next generation Ni-MH technology are the continuing fundamental improvements to the metal hydride and nickel hydroxide active materials. In this paper, advances in performance, applications and cost reduction are discussed with particular emphasis on the improved proprietary metal hydride and nickel hydroxide materials that make such advances possible.
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