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Electro-responsivity of ionic liquid boundary layers in a polar solvent revealed by neutron reflectance

机译:中子反射率露出的极性溶剂中离子液界面的电响应率

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Using neutron reflectivity, the electro-responsive structuring of the non-halogenated ionic liquid (IL) trihexyl(tetradecyl)phosphonium-bis(mandelato)borate, [ P-6,P-6,P-6,P-14][BMB], has been studied at a gold electrode surface in a polar solvent. For a 20% w/w IL mixture, contrast matched to the gold surface, distinct Kiessig fringes were observed for all potentials studied, indicative of a boundary layer of different composition to that of the bulk IL-solvent mixture. With applied potential, the amplitudes of the fringes from the gold-boundary layer interface varied systematically. These changes are attributable to the differing ratios of cations and anions in the boundary layer, leading to a greater or diminished contrast with the gold electrode, depending on the individual ion scattering length densities. Such electro-responsive changes were also evident in the reflectivities measured for the pure IL and a less concentrated (5% w/w) IL-solvent mixture at the same applied potentials, but gave rise to less pronounced changes. These measurements, therefore, demonstrate the enhanced sensitivity achieved by contrast matching the bulk solution and that the structure of the IL boundary layers formed in mixtures is strongly influenced by the bulk concentration. Together these results represent an important step in characterising IL boundary layers in IL-solvent mixtures and provide clear evidence of electro-responsive structuring of IL ions in their solutions with applied potential. Published by AIP Publishing.
机译:使用中子反射率,所述非卤化离子液体的电响应结构(IL)三己基(十四烷基)鏻双(man​​delato)硼酸盐,[P-6,P-6,P-6,P-14] [BMB [已在极性溶剂中的金电极表面进行研究。对于20%w / w Il混合物,对金表面匹配的对比度,对于所研究的所有电位,观察到不同的kiessig条纹,指示不同组合物的边界层与本体IL-溶剂混合物的边界层。通过施加电位,来自金边界层界面的条纹的幅度系统地变化。这些变化可归因于边界层中的阳离子和阴离子的不同比率,导致与金电极的对比度更大或减少,这取决于各个离子散射长度密度。这种电响应变化在对纯IL测量的反射症中也明显明显,并且在相同的施加电位下较少浓缩(5%w / w)Il-溶剂混合物,但产生了不太明显的变化。因此,这些测量结果证明了通过对比匹配堆积溶液而实现的增强灵敏度,并且在混合物中形成的IL边界层的结构受到体积浓度的强烈影响。这些结果集成了IL-溶剂混合物中的IL边界层的重要步骤,并提供了施加电位的溶液中IL离子的电响应性结构的明显证据。通过AIP发布发布。

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