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1)  solid polymer electrolyte water electrolysis (SPEWE)
固体聚合物电解质水电解
2)  SPE water electrolysis
固体聚合物电解质水电解池
1.
Optimization of membrane electrodes for SPE water electrolysis;
固体聚合物电解质水电解池电极的优化研究
3)  solid polymer electrolyte
固体聚合物电解质
1.
Influence of impure ions on performance of solid polymer electrolyte water electrolyser;
杂质离子对固体聚合物电解质水电解槽性能的影响
2.
The application study of solid polymer electrolyte (SPE) technology was summarized including treatment of waste water, electrochemical synthesis, fuel cell, separation, sensor and water electrolysis, the development status of which were discussed, and the application prospect of this technology in these aspects was proposed.
综述了固体聚合物电解质(SPE)技术的应用研究进展,主要包括废水处理、电化学合成、燃料电池、分离、传感器以及水电解等方面,讨论了其研究现状,并展望了SPE技术在各方面的应用前景。
3.
A new type of solid polymer electrolyte based on polyacrylonitrile (PAN) dimethylsulfoxide(DMSO) tetrabutylammonium perchlorate(TBAP) system has been prepared.
用聚丙烯腈(PAN)、二甲亚砜(DMSO)和高氯酸四丁基铵(TBAP)制备了一种新型固体聚合物电解质。
4)  Solid polymer electrolyte
聚合物固体电解质
1.
Linear polyether polyurethanes(PU) have been synthesized utilizing solution polymerization and a series of novel solid polymer electrolytes, based on the complexes of polyether polyurethanes and dimethyl fumarate sulfonic sodium(SDMFNa), were prepared.
采用溶液聚合的方法合成了线型聚醚聚氨酯 ( PU) ,以其作为基体 ,与富马酸二甲酯磺酸钠( SDMFNa)复合制得了一系列新型的聚合物固体电解质。
2.
A series of novel solid polymer electrolytes based on the blends of poly(ether urethane) and poly(ehtylene oxide) sulfonic sodium, which are Na + single ionic conductors, were prepared and characterized by Fourier transform infrared spectroscopy, Fourier transform Raman spectroscopy, differential scanning calorimetry and complex impedance analysis.
通过聚醚聚氨酯与聚氧乙烯磺酸钠共混制得了一系列单离子型聚合物固体电解质 。
3.
The linear poly(ether urethane)(PEG-PU) was synthesized by solution polymerization and a series of solid polymer electrolytes based on the complexes of poly(ether urethane) with sodium perchlorate (NaClO 4) were prepared.
采用溶液聚合的方法合成了线型聚醚聚氨酯 ( PEG-PU) ,以其作为基体 ,与高氯酸钠 ( Na Cl O4)复合制得了一系列新型的聚合物固体电解质 。
5)  Polymer solid electrolyte
聚合物固体电解质
6)  solid state electrolyte
聚合物固体电解质
补充资料:电解
电解
electrolysis

   电能转变为化学能的过程。即使直流电通过电解槽,在电极-溶液界面上进行电化学反应的过程 。例如,水的电解,电解槽中阴极为铁板,阳极为镍板 ,电解液为氢氧化钠溶液。通电时,在外电场的作用下,电解液中的正、负离子分别向阴  、阳极迁移 ,离子在电极 - 溶液界面上进行电化学反应。在阴极上进行还原反应:
    2H2O+2e→ H2+2OH-在阳极上进行氧化反应:
   2OH-→H2O+1/2O2+2e-两个电极上电化学反应之结果为:
   H2O!!!D1161_1H2+1/2O2
   水的电解就是在外电场作用下将水分解为H2(g)和O2(g)。电解是一种非常强有力的促进氧化还原反应的手段,许多很难进行的氧化还原反应,都可以通过电解来实现。例如:可将熔融的氟化物在阳极上氧化成单质氟,熔融的锂盐在阴极上还原成金属锂。电解工业在国民经济中具有重要作用,许多有色金属(如钠、钾、镁、铝等)和稀有金属(如锆、铪等)的冶炼及金属(如铜、锌、铅等)的精炼,基本化工产品(如氢、氧、烧碱、氯酸钾、过氧化氢、乙二腈等)的制备,还有电镀、电抛光、阳极氧化等,都是通过电解实现的。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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