透過您的圖書館登入
IP:18.117.251.140
  • 期刊

空氣電極在氫氧化鉀溶液中之防蝕研究

Corrosion Prevention of Air Electrode in KOH Electrolyte Solution

摘要


空氣電極是鋅空氣電池的最重要組件。空氣電極在高濃度KOH電解液中的劣化現象將嚴重傷害鋅空氣電池的功率與使用壽命。本研究利用無電鍍Ni-P、PVD濺鍍銀與添加PEG600有機抑制劑等方法以防止空氣電極在8 M KOH溶液中劣化。實驗結果顯示,以Ag/Ni-P作為銅集電網的鍍層,不但能夠保護空氣電極並且可以提升電極的陰極氧還原反應。此外,有機腐蝕抑制劑PEG600亦可添加於8 M KOH溶液中以改善銅集電網的耐蝕性並防止空氣電極劣化。對於具有Ag/Ni-P鍍層的高耐蝕性空氣電極,添加PEG600並不會影響電極的氧還原電流。

並列摘要


The air electrode is the most important component of the zinc-air battery. The degradation of air electrode in high concentration KOH aqueous electrolyte solution causes dramatic decreases in the specific power as well as the service life of the zinc-air battery. This study is to protect the air electrode against the degradation in 8 M KOH aqueous solution by different methods, namely, electroless Ni-P coating, PVD sputtering Ag and addition of PEG600 organic inhibitor. The results indicated that, the Ag/Ni-P coating on the copper current collector could not only protect the air electrode but also improve its cathodic oxygen reduction activity. Additionally, the PEG600 organic inhibitor could also enhance the corrosion resistance of the copper current collector to prevent the degradation of the air electrode in 8 M KOH aqueous solution. For the high corrosion resistant air electrode with Ag/NiP coating, there is no change in the oxygen reduction current could be observed because of the addition of PEG600.

被引用紀錄


林俊澔(2014)。金奈米棒與奈米啞鈴的銀殼成長調控〔碩士論文,淡江大學〕。華藝線上圖書館。https://doi.org/10.6846/TKU.2014.00978
陳恩湛 (2012). 具結構補強設計之撓性神經探針開發 [master's thesis, National Tsing Hua University]. Airiti Library. https://doi.org/10.6843/NTHU.2012.00168
Husaini (2015). 一個顧及服務品質且基於門檻的雲資源配置框架 [master's thesis, National Chiao Tung University]. Airiti Library. https://doi.org/10.6842/NCTU.2015.00375
黃浩宇(2014)。一個往返時間驅動的雲端資源管理框架〔碩士論文,國立交通大學〕。華藝線上圖書館。https://doi.org/10.6842/NCTU.2014.00301
Wang, C. I. (2013). 合成奈米材料於類酵素生化感測器與水裂解光催化劑之應用 [doctoral dissertation, National Taiwan University]. Airiti Library. https://doi.org/10.6342/NTU.2013.00730

延伸閱讀