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Bilayer studies in mixedn-decanol/n-tetradecanol complexes ofn-decylammonium beidellite
Authors:A. Weiss  P. Schick  D. Platikanov
Affiliation:(1) Institut für Anorganische Chemie, Universität München, Munich, Germany;(2) Department of Physical Chemistry, University of Sofia, 1126 Sofia, Bulgaria;(3) Present address: University of Munich, Munich, Germany
Abstract:Complexes have been prepared by treatment ofn-decylammonium beidellite with mixtures ofn-decanol andn-tetradecanol with different concentrations. Measurements of the basal spacings of the obtained complexes have been performed in a wide range of temperatures. Three different bilayer phases have been established between (20 and 70°C: thebetai(C10) phases (=bilayers ofn-decyl chains); thebetai(C10/C14) phases (=mixed bilayers ofn-decyl andn-tetradecyl chains in molar ratio approximately 1:1) and thebetai(C14) phases (=bilayer ofn-tetradecy 1 chains with then-decylammonium ions included). In all bilayer phases the chains stand perpendicular to the silicate interfaces. In definite concentration ranges two of the phases coexist, i.e., miscibility gaps occur, which disappear at temperatures higher than the temperature of thebetai/agr transition. The miscibility gaps are reversible with temperature. The composition of the intercalated bilayers has been studied by HPLC of the excess alkanol mixture separated from the beidellite complexes after the equilibrium has been reached. There is preferential adsorption of one of two alkanols from the mixture, which is in agreement with the observed miscibility gaps. The space filling problem as well as the structure of the three bilayer phases observed have been discussed.
Keywords:Decylammonium-alkanolbeidellite complexes  miscibility gap in mixed alkanol complexes  structure of intercalated bilayers  coexistence of phases
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