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Time-resolved SERS study of the oxygen reduction reaction in ionic liquid electrolytes for non-aqueous lithium-oxygen cells

机译:用于非水锂 - 氧气细胞离子液体电解质中的氧还原反应的时间分辨SERS

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摘要

Superoxide (O-2(center dot-)) is the key intermediate formed during oxygen reduction in nonaqueous electrolytes. One significant obstacle towards the realisation of a practical lithium-oxygen (Li-O-2) battery is electrolyte instability in the presence of radical oxides, principally superoxide. Here we use the Raman active bands of O-2(center dot-) as a diagnostic molecule for probing the influence of the electrolyte on reaction processes and intermediaries at the electrode surface. In situ surface enhanced Raman studies of the interface at a roughened Au electrode with controlled and dynamic surface potentials were performed in two ionic liquids with differing properties: 1-butyl-1-methyl-azepenium bis(trifluoromethanesulfonyl)imide (Aze(14)TFSI), which has a large/soft cation, and triethylsulfonium bis(trifluoromethanesulfonyl) imide (TESTFSI), which has a relatively small/hard and e(-) accepting cation. The counter-cation and potential were seen to significantly influence the radical nature, or Lewis basicity of O-2(center dot-). The analysis of peak intensities and Stark shifts in O-2(center dot-) related spectral bands allowed for key information on its character and electrolyte interactions to be elucidated. Time-resolved studies of dynamic surface potentials permitted real time observation of the flux and reorientation of ions at the electrode/electrolyte interface.
机译:超氧化物(O-2(中心点))是在非水电解质的氧还原过程中形成的关键中间体。实现实际锂 - 氧(Li-O-2)电池的一个重要障碍是在基本氧化物存在下的电解质不稳定性,主要是超氧化物。在这里,我们使用O-2(中心点)的拉曼活动带作为诊断分子,用于探测电解质对电极表面的反应过程和中间体的影响。在原位表面增强的拉曼在具有不同性质的离子液体中进行粗糙的Au电极在具有受控和动态表面电极的γ中的界面的研究:1-丁基-1-甲基 - 己烯(三氟甲基磺酰基)酰亚胺(AZE(14)TFSI ),具有大/柔软的阳离子和三乙基锍(三氟甲磺酰基)酰亚胺(Testfsi),其具有相对小/硬质和e( - )接受阳离子。对抗阳离子和潜力显着影响了O-2(中心点)的自由基性质,或lewis碱度。 O-2(中心点)相关光谱带中峰强度和STARK移位的分析允许阐明其特征和电解质相互作用的关键信息。动态表面电位的时间分辨研究允许实时观察电极/电解质界面处的离子的磁通和重新定向。

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