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Ti_(45)Zr_(35)Ni_(17)Cu_3准晶电极的电化学性能 被引量:1

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摘要 Ti基准晶由于其特殊的晶体结构而成为具有前途的新型贮氢材料。Ti45Zr38Ni17准晶最大吸氢量时,氢原子与金属原子比约等于2,明显高于普通金属间化合物贮氢材料,但其平台压力低,氢很难放出。为了改善准晶的气态放氢性能,Takasaki等采用机械合金化及热处理的方法制备了Ti45Zr38Ni17准晶粉末。该粉末达到最大贮氢量时,氢原子与金属原子比等于1.5,这可能是由于准晶中含有少量的Ti2Ni型晶体相的原因。同时,在充放氢过程中,准晶相不稳定。Majzoub等采用电化学方法氢化Ti45Zr38Ni17准晶,贮氢量最大时氢原子与金属原子比为1.9,并且在充氢过程中无晶体相生成。到目前为止,准晶作为镍氢电池负极材料的电化学贮氢性能的研究未见报道。在本章中,将研究Ti45Zr38Ni17Cu3准晶作为镍氢电池负极时的最大放电容量和循环稳定性。为了对比,也研究了非晶合金的相关电化学性能。
出处 《科技风》 2012年第13期48-50,共3页
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