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Nanostructure of the Ionic Liquid-Graphite Stern Layer

机译:离子液体石墨船尾层的纳米结构

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Ionic liquids (ILs) are attractive solvents for devices such as lithium ion batteries and capacitors, but their uptake is limited, partially because their Stern layer nanostructure is poorly understood compared to molecular solvents. Here, in situ amplitude-modulated atomic force microscopy has been used to reveal the Stern layer nanostructure of the 1-ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide (EMIm TFSI)-HOPG (highly ordered pyrolytic graphite) interface with molecular resolution. The effect of applied surface potential and added 0.1 wt/wt % Li TFSI or EMIm Cl on ion arrangements is probed between +/- 1 V. For pure EMIm TFSI at open-circuit potential, well-defined rows are present on the surface formed by an anion-cation-cation-anion (A-C-C-A) unit cell adsorbed with like ions adjacent. As the surface potential is changed, the relative concentrations of cations and anions in the Stern layer respond, and markedly different lateral ion arrangements ensue. The changes in Stern layer structure at positive and negative potentials are not symmetrical due to the different surface affinities and packing constraints of cations and anions. For potentials outside +/- 0.4 V, images are featureless because the compositional variation within the layer is too small for the AFM tip to detect. This suggests that the Stern layer is highly enriched in either cations or anions (depending on the potential) oriented upright to the surface plane. When Li+ or Cl- is present, some Stern layer ionic liquid cations or anions (respectively) are displaced, producing starkly different structures. The Stern layer structures elucidated here significantly enhance our understanding of the ionic liquid electrical double layer.
机译:离子液体(ILs)对于诸如锂离子电池和电容器之类的设备来说是有吸引力的溶剂,但它们的吸收受到限制,部分原因是与分子溶剂相比,人们对Stern层的纳米结构了解得很少。在这里,原位调幅的原子力显微镜已被用来揭示分子结构的1-乙基-3-甲基咪唑双(三氟甲基磺酰基)酰亚胺(EMIm TFSI)-HOPG(高度有序的热解石墨)界面的斯特恩层纳米结构。在+/- 1 V之间探测施加的表面电势和添加的0.1 wt / wt%Li TFSI或EMIm Cl对离子排列的影响。对于纯EMIm TFSI在开路电势下,形成的表面上存在明确定义的行阴离子-阳离子-阳离子-阴离子(ACCA)晶胞吸附有类似的离子。随着表面电势的变化,斯特恩层中阳离子和阴离子的相对浓度会发生响应,从而产生明显不同的横向离子排列。由于不同的表面亲和力和阳离子和阴离子的堆积约束,正负电位下斯特恩层结构的变化不对称。对于+/- 0.4 V以外的电势,图像无特征,因为该层内的成分变化对于AFM烙铁头无法检测到。这表明斯特恩层高度富含垂直于表面平面的阳离子或阴离子(取决于电势)。当存在Li +或Cl-时,某些斯特恩层离子液体阳离子或阴离子会被置换,产生截然不同的结构。在此阐明的斯特恩层结构大大增强了我们对离子液体双电层的理解。

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