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By Ya-Ping Sun

Analyzes the chemical reactions, buildings, and primary houses of supercritical fluid platforms for the construction of latest compounds, nanomaterials, fibers, and movies.

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J Eastoe, BH Robinson, AJWG Visser, DC Steytler. Rotational dynamics of AOT reversed micelles in near-critical and supercritical alkanes. J Chem Soc Faraday Trans 87:1899, 1991. 125. LE Bowman, BJ Palmer, BC Garrett, JL Fulton, CR Yonker, DM Pfund, SL Wallen.

J Zagrbelny, FV Bright. Influence of solute–fluid clustering on the photophysics of pyrene emission in supercritical C2 H4 and CF3 H. J Am Chem Soc 114:7821, 1992. 48. ED Niemeyer, RA Dunbar, FV Bright. On the local environment surrounding pyrene in near- and supercritical water. Appl Spectrosc 51:1547, 1997. 49. CE Bunker, JR Gord. unpublished results. 50. Y-P Sun, TL Bowen, CE Bunker. Formation and decay of the ethyl p-(N,Ndiethylamino)benzoate twisted intramolecular charge-transfer state in the vapor phase, supercritical fluids, and room-temperature solutions.

Investigated the tautomeric equilibrium of the Schiff base 4(methoxy)-1-(N -phenylforminidoyl)-2-naphthol in supercritical ethane with acetone, chloroform, dimethylacetamide, ethanol, 2,2,2-trifluoroethanol, and 1,1,1, 3,3,3-hexafluoro-2-propanol as cosolvents (165). Their results show that the polar cosolvents acetone, chloroform, and dimethylacetamide have little effect on the keto-enol equilibrium but that the cosolvents capable of hydrogen bonding Copyright 2002 by Marcel Dekker. All Rights Reserved.

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