Physical Review E · 2008 · 15 citations · 36 references
The dynamics of thermal capillary waves (CWs) on an ionic liquid's surface are studied at the transition from propagating to overdamped CWs by x-ray photon correlation spectroscopy. The analysis considers both homodyne and heterodyne contributions, and yields excellent full line-shape experiment-theory agreement for the structure factor. The CWs' Brillouin scattering becomes extinct at a critical temperature Tc JK approximately 10 K above Tc LL , the propagating modes' hydrodynamic limit, in agreement with linear response theory. Surprisingly, the same power law applies at both Tc. The results rule out the presence of a suggested surface dipole layer.
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Ionic Liquids--Solvents of the Future?
Robin D. Rogers, Kenneth R. Seddon · Science · 2003 · 4.1K citations
Materials Science, Solid-state Ionic, Chemical Engineering +13
V. G. Levich, Raymond J. Seeger · American Journal of Physics · 1963 · 2.8K citations
The distillation and volatility of ionic liquids
Martyn J. Earle, José M. S. S. Esperança, Manuela A. Gîlea et al. · Nature · 2006 · 2.1K citations