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Characterization of the lithium surface by infrared and Raman spectroscopies

机译:锂表面的红外和拉曼光谱表征

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The chemical composition of the pristine passivation layer formed on the surface of commercial lithium foils has been investigated by polarization modulation infrared reflection absorption spectroscopy (PM-IRRAS) and confocal Raman microspectrometry (CRM), Carbonates and hydroxides are easily detected by PM-IRRAS and on-line non-destructive analysis could be envisaged with this technique or even with the simpler IRRAS technique in dry atmosphere. On the other hand, local heating under laser irradiation is difficult to avoid in CRM. It transforms carbonate species into lithium acetylides of the Li_2C_2 type characterized by a vC≡C line at ca. 1845 cm~(-1). This might explain an unexpected Raman line observed at 1830-1850 cm~(-1) in previous literature studies of the lithium/electrolyte interface or of the carbon/electrolyte interface in lithium-ion batteries.
机译:已通过偏振调制红外反射吸收光谱法(PM-IRRAS)和共焦拉曼光谱法(CRM)研究了在商用锂箔表面上形成的原始钝化层的化学成分,通过PM-IRRAS和可以使用此技术甚至在干燥的大气中使用更简单的IRRAS技术来进行在线无损分析。另一方面,在CRM中难以避免激光照射下的局部加热。它将碳酸盐种类转变为Li_2C_2类型的乙炔化锂,其特征为大约在vC≡C线。 1845厘米〜(-1)。这可能解释了先前文献中锂/电解质界面或锂离子电池中碳/电解质界面在1830-1850 cm〜(-1)处观察到的意外拉曼线。

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