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At the interface: solvation and designing ionic liquids

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PHYSICAL CHEMISTRY CHEMICAL PHYSICS
卷 12, 期 8, 页码 1709-1723

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ROYAL SOC CHEMISTRY
DOI: 10.1039/b920393a

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  1. Australian Research Council (ARC)
  2. Access to Major Research Facilities program
  3. University of Newcastle Faculty of Science and Information Technology for provision
  4. University of Newcastle

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Ionic liquids' (ILs) remarkable and tunable physicochemical properties mean they have distinct performance advantages over conventional solvents in many settings. However, the use of ILs in surface-dependent processes (e.g. electrodeposition, heterogeneous catalysis, dye solar cells) is hindered by the lack of a systematic understanding of IL interfacial structure. In this Perspective, we highlight recent experiments which show interfacial IL nanostructure is a consequence of both surface-specific and bulk liquid interactions. These results enable us to develop molecular design rules for controlling interfacial IL behavior.

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