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In situ Raman spectroscopy of insertion electrodes for lithium-ion batteries and supercapacitors: First cycle effects

机译:锂离子电池和超级电容器插入电极的原位拉曼光谱:第一周期效应

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In situ Raman spectroscopy was used to demonstrate ion intercalation into microcrystalline graphite (KS44) during cyclic voltammetry experiments from the ionic liquid 1-ethyl-3-methylimidazolium-bis(trifluoromethylsulfonyl)-imide (EMI-TFSI). This was seen by a split of the G-band (1578 cm1) into the E2g2(i) band at 1578 cm1 and E2g2(b) band at 1600 cm1, which occurred below +1.0V for EMI+ and above +4.65V vs. Li/Li+ for TFSI. Moreover, ion intercalation was seen to cause irreversible structural changes to the graphitic lattice. The Raman spectrum of activated carbon (Picactif) exhibits broad G- and D-bands around 1587 and 1315 cm1, respectively. Changes were observed during potential cycling in 1 moldm3 tetraethylammonium-tetrafluoroborate (TEABF4) in acetonitrile that concerned only changes in Raman intensity and shifts in wavenumber of both D- and G-bands. It is hypothesised that the D-band could be composed of two contributions reflecting the D-band of crystalline domains and of cross-linkers. After ion insertion, the contribution from stacked sheets maybe lost, resulting in a wavenumber shift of the band.
机译:在循环伏安实验中,使用离子液体1-乙基-3-甲基咪唑鎓-双(三氟甲基磺酰基)-酰亚胺(EMI-TFSI),使用原位拉曼光谱法证明离子嵌入微晶石墨(KS44)中。通过将G波段(1578 cm1)分成1578 cm1的E2g2(i)波段和1600 cm1的E2g2(b)波段可以看出,EMI +的+ 1.0V以下和+ 4.65V的上方。 TFSI的Li / Li +。此外,发现离子嵌入会导致石墨晶格发生不可逆的结构变化。活性炭(Picactif)的拉曼光谱分别在1587和1315 cm1处显示宽G带和D带。在乙腈中的1摩尔三乙四氟硼酸四乙铵(TEABF4)的潜在循环过程中观察到变化,该变化仅涉及拉曼强度的变化以及D波段和G波段的波数变化。假设D带可以由反映晶畴和交联剂的D带的两个贡献组成。离子插入后,可能会失去叠片的贡献,从而导致谱带的波数漂移。

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