Abstract
The millennium application of new hydrogen absorbing alloys as negative electrodes in rechargeable batteries has allowed the consideration of nickel/metal hydride (Ni-MH) batteries to replace the conventional nickel cadmium alkaline or lead acid batteries. In this study the mechanical alloying process was used for synthesizing nanocrystalline TiCo-Mg-type hydrogen storage materials. The pressing negative and positive electrode, polyethylene as a separator and 6 mol/l KOH as an electrolyte solution constructed the cells. The nanocrystalline alloys electrode was subjected to charge/discharge cycle for more than 200 cycles. The discharge capacities of the nanocrystalline alloys withstand at 240 mAh/g with a nominal fading in capacity on prolonged cycling. The results show that when using sealed batteries nanocrystalline Ti[Co0.65Mg0.35] alloy electrode shows two times more capacity than TiNi counterparts.
| Original language | English |
|---|---|
| Pages (from-to) | S34-S36 |
| Journal | Current Applied Physics |
| Volume | 10 |
| Issue number | 2 SUPPL. |
| DOIs | |
| Publication status | Published - Mar 2010 |
Bibliographical note
Funding Information:This work was financially supported by a grant from the Kyung Hee University in 2009 ( KHU-20090746 ).
Keywords
- Electrochemical reaction
- Energy storage materials
- Hydrogen storage
- Nanocrystalline
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