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Effect of particle size on hydrogenation properties of a gas-atomized AB5-type alloy
Journal article   Peer reviewed

Effect of particle size on hydrogenation properties of a gas-atomized AB5-type alloy

S.-R. Chung and T.-P. Perng
Journal of Alloys and Compounds, Vol.353(1-2), pp.289-294
07/04/2003

Abstract

Electrochemical reaction Electrode materials Gas-solid reactions Hydrogen absorbing materials Metal hydrides
The effect of particle size on the hydrogenation properties of gas-atomized MmNi 3.6 Co 0.56 Mn 0.56 Al 0.28 was investigated. Its gas-phase and electrochemical hydrogenation properties are different from those of specimens prepared by conventional methods. The initial shape of the alloy particles is spherical. After hydrogenation, significant changes take place in the larger particles. They become irregular, and a fresh surface is created. For particles smaller than 10 μm, no cracks are observed and they can hardly react with hydrogen gas. For particles larger than 10 μm, the gas-phase hydrogenation rate is faster than for the smaller particles, but the P-C-T curves are about the same. As regards electrochemical behavior, 75-38-μm particles have the highest discharge capacity (282 mAh/g). For the particles smaller than 38 μm, the maximum capacity decreases to 238 mAh/g. The maximum capacity of the particles smaller than 10 μm is only ∼8 mAh/g. If the particles smaller than 10 μm are excluded, i.e. for particles in the range 38-10 μm, the discharge capacity increases to 268 mAh/g. It is concluded that 10 μm is a critical size for practical application of gas-atomized particles. Surface characterization of the particles of different sizes explains the inferior performance of the smaller particles. © 2002 Elsevier Science B.V. All rights reserved.

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