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Sonochemical growth of lanthanum conversion films using ultrasonic immersion method for performance improvement of zinc electrodes

机译:超声浸渍法声化学生长镧转化膜提高锌电极性能

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摘要

The growth of lanthanum conversion coatings on the zinc powder modified by ultrasonic immersion is deeply investigated by Auger electron spectroscopy, X-ray photoelectron spectroscopy, spectrophoto-metrical and other characterization techniques. The conversion kinetics of La element and the growth mechanism of lanthanum conversion layers are also reported and proposed. The influence of the lanthanum conversion coatings on the discharge properties and cycle behaviors of zinc electrodes is evaluated through charge-discharge measurements and cycle voltammetry. It is found that La_2O3 and ZnO compose the lanthanum conversion films and trace content of La element in modified zinc powder can be controlled by varying the ultrasonic power. Furthermore, the superior performance of zinc electrode using the zinc powder coated with lanthanum conversion films is clearly established by low capacity loss and high cycle stability. The great improvement over the electrochemical properties of zinc electrodes should be ascribed to the physical shielding effect of lanthanum conversion layers.
机译:通过俄歇电子能谱,X射线光电子能谱,分光光度法和其他表征技术对超声波浸没改性的锌粉上镧转化膜的生长进行了深入研究。还报道和提出了La元素的转化动力学和镧转化层的生长机理。通过充放电测量和循环伏安法评估镧转化膜对锌电极放电性能和循环行为的影响。结果表明,La_2O3和ZnO组成了镧转化膜,通过改变超声功率可以控制改性锌粉中La元素的含量。此外,通过低容量损失和高循环稳定性,显然建立了使用涂有镧转化膜的锌粉的锌电极的优越性能。锌电极的电化学性能的极大改善应归因于镧转化层的物理屏蔽作用。

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