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Alloys for hydrogen storage in nickel/hydrogen and nickel/metal hydride batteries

机译:镍/氢和镍/金属氢化物电池中的储氢合金

摘要

Since 1990, there has been an ongoing collaboration among the authors in the three laboratories to (1) prepare alloys of the AB(sub 5) and AB(sub 2) types, using arc-melting/annealing and mechanical alloying/annealing techniques; (2) examine their physico-chemical characteristics (morphology, composition); (3) determine the hydrogen absorption/desorption behavior (pressure-composition isotherms as a function of temperature); and (4) evaluate their performance characteristics as hydride electrodes (charge/discharge, capacity retention, cycle life, high rate capability). The work carried out on representative AB(sub 5) and AB(sub 2) type modified alloys (by partial substitution or with small additives of other elements) is presented. The purpose of the modification was to optimize the thermodynamics and kinetics of the hydriding/dehydriding reactions and enhance the stabilities of the alloys for the desired battery applications. The results of our collaboration, to date, demonstrate that (1) alloys prepared by arc melting/annealing and mechanical alloying/annealing techniques exhibit similar morphology, composition and hydriding/dehydriding characteristics; (2) alloys with the appropriate small amounts of substituent or additive elements: (1) retain the single phase structure, (2) improve the hydriding/dehydriding reactions for the battery applications, and (3) enhance the stability in the battery environment; and (3) the AB(sub 2) type alloys exhibit higher energy densities than the AB(sub 5) type alloys but the state-of-the-art, commercialized batteries are predominantly manufactured using Ab(sub 5) type alloys.
机译:自1990年以来,三个实验室的作者一直在进行合作,以(1)使用电弧熔化/退火和机械合金化/退火技术制备AB(sub 5)和AB(sub 2)类型的合金; (2)检查其理化特性(形态,组成); (3)确定氢的吸收/解吸行为(压力-组成等温线随温度的变化); (4)评估其作为氢化物电极的性能特征(充电/放电,容量保持率,循环寿命,高倍率性能)。介绍了对代表性的AB(sub 5)和AB(sub 2)型改性合金(通过部分替代或与其他元素的少量添加剂进行)的工作。改性的目的是优化氢化/脱水反应的热力学和动力学,并增强合金的稳定性,以用于所需的电池应用。迄今为止,我们的合作结果表明:(1)通过电弧熔化/退火和机械合金化/退火技术制备的合金具有相似的形态,组成和氢化/脱水特性; (2)具有适当少量取代基或添加元素的合金:(1)保留单相结构;(2)改善电池应用中的氢化/脱水反应;(3)增强电池环境中的稳定性; (3)AB(sub 2)型合金比AB(sub 5)型合金具有更高的能量密度,但是最先进的商业化电池主要使用Ab(sub 5)型合金制造。

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