Performance of zinc-air fuel cells with different cathode surface structures
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摘要: 本論文主要針對鋅-空氣燃料電池之空氣陰極表面結構進行改善.鋅-空氣燃料電池主要以氫氧化鉀為電解液,利用不同空氣電極表面結構進行空氣陰極性能與壽命研究.實驗中進行了開回路電壓性能測試與定電流放電測試,并討論其兩者電壓-電流性能及功率密度差異,比較不同表面結構陰極的對電解液的抗蝕能力,針對放電完的電池電極進行材料分析.由實驗結果得知,如此類似保護膜功用之電極表面結構在電池反應時,能夠減少電解液本身以及陽極金屬氧化物對空氣電極表面的影響,提供較長時間穩定電流輸出,大大地提升鋅-空氣燃料電池空氣電極之使用壽命.Abstract: This paper presents a cathode surface structure to improve the performance of a zinc-air fuel cell (ZAFC). The electrolyte of the zinc-air fuel cell was made by mixing organic inhibitor with a potassium hydroxide solution. Open-circuit voltage performance test and constant-current discharge test were carried out to investigate the differences in voltage-current characteristics and power density of the zinc-air fuel cells with different cathode surface structures and to compare the corrosion resistances of different air-cathodes in the electrolyte. The materials analysis and microstructure observation of air-cathodes after discharging were performed by X-ray diffraction (XRD) and scanning electron microscopy (SEM), respectively. Experimental results show that a protection layer on the air-cathode can increase the durability and corrosion resistance of the electrode. This electrode structure is able to decrease corrosion damage occurred at the air-cathode surface and provide a stable electrochemical reaction. It can improve the utilization of the air-cathode greatly in the zinc-air fuel cell.
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Key words:
- fuel cells /
- zinc /
- air /
- potassium hydroxide /
- cathodes /
- surface structure
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