采用含有240 g/L NiS0_4·7H_2O、40 g/L H_3BO_3、50 g/LC_6H_5Na_3O_7·2H_2O的镀液,在镍氢电池的负极表面电沉积上一层厚度约为0.1 μm的镍层.镀镍修饰后,负极材料的电化学特性发生了明显变化,如极化电阻显著降低,使得水在负极材料上放电更加容易,改善了镍氢电池的充电行为.使用表面镀镍的负极材料后,镍氢电池的内部压强在正常充电与过充过程中都显著降低,这可能是因为镀镍层减缓了氢原子结合而变成氢气的过程;另外,镍氢电池的循环寿命也得到了延长.
A nickel coating with a thickness of ca.0.1 μm was electrodeposited on the negative electrode of Ni-MH battery in a bath containing 240 g/L NiSO_4·7H_2O, 40 g/L H_3BO_3, and 50 g/L C6HsNa_3O_7·2H_2O. The electrochemical properties of the negative electrode material are significantly changed by the modification with nickel coating. The polarization resistance of the nickel-plated negative electrode is decreased evidently, which facilitates the discharging of water on the electrode and improves the charging behavior of Ni-MH battery. The inner pressure of Ni-MH battery is decreased remarkably by using nickel-plated negative electrode during normal charging and over-charging processes, likely due to the adsorption of H atoms on nickel coating which slows down the combination of H atoms into HE gas. The results also showed that the Ni-MH battery with nickel-plated negative electrode has a longer cycle life.
参考文献
[1] | Paul Ruetschi;Felix Meli;Johann Desilvestro .Nickel-metal hydride batteries. The preferred batteries of the future?[J].Journal of Power Sources,1995(1/2):85-91. |
[2] | 詹锋;蒋利军 .电动汽车用动力型MH-Ni电池的开发动向[J].电源技术,1997,21(01):35-39. |
[3] | SAKAI T;MIYAMURA H;KURIYAMA N et al.Nickel-metal hydride battery for electric vehicles[J].Journal of Alloys and Compounds,1993,192(1/2):158-160. |
[4] | 王志兴,李新海,陈启元,郭炳昆,郭华军,彭文杰.电动汽车用Ni/MH电池的开发[C].第二十三届全国化学与物理电源学术会议论文集,1998:480~481. |
[5] | EWE H;JUSTI E W;STEPHAN K .Elektrochemiscbe Speicherung und Oxidation yon Wasserstoff mit der intermetallischen Verbindang LaNi_5[J].Energy Conversion,1973,13(03):109-113. |
[6] | RONGEAT C;GROSJEAN M-H;RUGGERI S et al.Evaluation of different approaches for improving the cycle life of MgNi-based electrodes for Ni-MH batteries[J].Journal of Power Sources,2006,158(01):747-753. |
[7] | M.S-Wu;H.-R.Wu .Surface treatment for hydrogen storage alloy of nickel/metal hydride battery[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2000(1/2):248-257. |
[8] | F. Feng;D.O. Northwood .Effect of surface modification on the performance of negative electrodes in Ni/MH batteries[J].International journal of hydrogen energy,2004(9):955-960. |
[9] | LIU B-H;lUNG J-H;LEE H-H et al.Improved electrochemical performance of AB_2-type metal hydride electrodes activated by the hotcharging process[J].Journal of Alloys and Compounds,1996,245(1/2):132-141. |
[10] | Weixiang Chen .Effects of surface treatments of MINi_4.0Co_0.6Al_0.4 hydrogen storage alloy on the activation, charge/discharge cycle and degradation of Ni/MH batteries[J].Journal of Power Sources,2001(1/2):102-107. |
[11] | GAO X P;SONG D Y;ZHANG Y S et al.Electrochemical and surface properties of the Zr(V_(0.2)Mn_(0.2)Ni_(0.6)_(2.4) alloy electrode[J].Journal of Alloys and Compounds,1995,229(02):268-273. |
[12] | A. Gebert;B. Khorkounov;U. Wolff .Stability of rapidly quenched and hydrogenated Mg-Ni-Y and Mg-Cu-Y alloys in extreme alkaline medium[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2006(1/2):319-327. |
[13] | C.Tessier;P.H.Haumesser .The Structure of Ni (OH)2: From the Ideal Material to the Electrochemically Active One[J].Journal of the Electrochemical Society,1999(6):2059-2067. |
[14] | Deng C;Shi PF;Zhang S .Effect of surface modification on the electrochemical performances of LaNi5 hydrogen storage alloy in Ni/MH batteries[J].Materials Chemistry and Physics,2006(2/3):514-518. |
[15] | CHEN W X .Cyclic voltammetry and electrochemical impedance of MmNi_(3.6)Co_(0.7)Mn_(0.4)Al_(0.3) alloy electrode before and after treatment with a hot alkaline solution containing reducing agent[J].Journal of Power Sources,2000,90(01):201-205. |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%