1. For examples of general reading see: (a) Bigg, E. K.Proc. Phys. Soc.London, Sect. B1953,66, 688. (b) Franks, F.CryoLett.1981,2, 27. (c) Rasmussen, D. H.J. Cryst. Growth1982,56, 56. (d) Levine, H.; Slade, L. InWater Science Review; Franks, F., Ed.; Cambridge University Press: Cambridge, U.K., 1988; Vol. 3, pp 79−185. (e) Franks, F.Biophysics andBiochemistry at Low Temperatures; Cambridge University Press: Cambridge, U.K., 1995. (f) Sakai, A.; Matsumoto, T.; Hirai, D.; Niino, T.CryoLett.2000,21, 53. (g) Khvorostyanov, V.; Curry, J.J. Phys. Chem. A2004,108, 11073.
2. Glass‐Forming Composition Regions and Glass Transition Temperatures for Aqueous Electrolyte Solutions
3. Supercooling of Water to -92°C Under Pressure
4. Homogeneous nucleation and glass formation in aqueous alkali halide solutions at high pressures
5. Heat capacities of H2O+H2O2, and H2O+N2H4, binary solutions: Isolation of a singular component for Cp of supercooled water