简介概要

Electrochemical hydrogen storage performance of AB5-CoB composites synthesized by a simple mixing method

来源期刊:Rare Metals2009年第6期

论文作者:SONG Dawei, WANG Yijing, WANG Yaping, JIAO Lifang, and YUAN Huatang Institute of New Energy Material Chemistry, Engineering Research Center of Energy Storage & Conversion (Ministry of Education of China), and Key Laboratory of Energy-Material Chemistry (Tianjin), Nankai University, Tianjin , China

文章页码:629 - 632

摘    要:AB5 (MlNi4.0Al0.3Cu0.5Zn0.2) alloy and CoB alloy were prepared by arc melting. AB5-CoB composites were synthesized by simple mixing of AB5 alloy powders and CoB alloy powders, and their electrochemical hydrogen storage properties were studied as negative electrodes in KOH aqueous solution. The maximum discharge capacity of the AB5-CoB(50%) composite (the content of CoB in the composite is 50 wt.%) reached 365.3 mAh·g-1. After 100 charge-discharge cycles, the discharge capacity of the AB5-CoB(50%) composite was still much higher than that of the AB5 alloy. The high rate discharge capability (HRD) and potentiodynamic polarization were also tested.

详情信息展示

Electrochemical hydrogen storage performance of AB5-CoB composites synthesized by a simple mixing method

SONG Dawei, WANG Yijing, WANG Yaping, JIAO Lifang, and YUAN Huatang Institute of New Energy Material Chemistry, Engineering Research Center of Energy Storage & Conversion (Ministry of Education of China), and Key Laboratory of Energy-Material Chemistry (Tianjin), Nankai University, Tianjin 300071, China

摘 要:AB5 (MlNi4.0Al0.3Cu0.5Zn0.2) alloy and CoB alloy were prepared by arc melting. AB5-CoB composites were synthesized by simple mixing of AB5 alloy powders and CoB alloy powders, and their electrochemical hydrogen storage properties were studied as negative electrodes in KOH aqueous solution. The maximum discharge capacity of the AB5-CoB(50%) composite (the content of CoB in the composite is 50 wt.%) reached 365.3 mAh·g-1. After 100 charge-discharge cycles, the discharge capacity of the AB5-CoB(50%) composite was still much higher than that of the AB5 alloy. The high rate discharge capability (HRD) and potentiodynamic polarization were also tested.

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