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On the basic electrochemical behavior of active metal and Li-C anodes. New insights

机译:关于活性金属和Li-C阳极的基本电化学行为。新见解

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In this paper we review some new results related to three types of active electrodes: lithium, lithiated graphite and magnesium. We comment on surface studies of active electrodes by XPS and FTIR spectroscopy, and show that only the combination of these two methods may provide complementary specific information with which the reliable analysis of surface films on active electrodes can be completed. We demonstrate the effect ofcurrent density on the surface chemistry, morphology and performance of Li electrodes, e.g. only at high discharge currents are the pristine surface films on Li electrodes replaced by species originating from the reduction of solution compounds, this having a pronounced effect on Li surface morphology. We also provide evidence for LiH formation on Li in ethereal wet solutions. We describe the mechanism of deactivation of a Li-graphite electrode which occurs at potentials as high as 1V vs. Li/Li~+. Finally, we describe some fundamental phenomena which relate to Mg electrodes. We review the results of EQCM measurements that show reversible Mg deposition at an efficiency close to 100
机译:在本文中,我们回顾了与三种类型的活性电极有关的一些新结果:锂,锂化石墨和镁。我们评论了XPS和FTIR光谱对活性电极的表面研究,并显示只有这两种方法的组合才能提供互补的特定信息,从而可以完成对活性电极表面膜的可靠分析。我们证明了电流密度对锂电极的表面化学,形态和性能的影响,例如仅在高放电电流下,Li电极上的原始表面膜才被源自溶液化合物还原的物质所取代,这对Li表面形态具有显着影响。我们还提供了在乙醚湿溶液中在Li上形成LiH的证据。我们描述了锂石墨电极失活的机理,该电极发生在相对于Li / Li〜+高达1V的电势下。最后,我们描述了一些与Mg电极有关的基本现象。我们回顾了EQCM测量的结果,这些结果表明可逆的Mg沉积效率接近100

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