Self-association and complex formation in alcohol-unsaturated hydrocarbon systems Heat capacities of linear alcohols mixed with alkenes and alkynes
文献情報
Apparent molar heat capacities, Cmapp, at dilute alcohol concentrations and excess molar heat capacities, CpE throughout the concentration range were determined at 25°C for the following systems: methanol, ethanol, propan-1-ol, hexan-1-ol and decan-1-ol mixed with n-octane, oct-1-ene and oct-1-yne; in addition, the following mixtures were also measured: hexan-1-ol with oct-4-yne, cyclohexane, cyclohexene, benzene, hex-1-ene, dec-1-ene and an equimolar mixture of n-octane+oct-1-yne. The experimental Cmapp show a maximum against alcohol concentration; this maximum is reduced in magnitude and displaced to higher alcohol concentrations when the inert n-octane is substituted by the unsaturated oct-1-ene, oct-1-yne, oct-4-yne, cyclohexene or benzene which act as weak proton acceptors, forming complexes or cross-associated species with the alcohol molecules. The present data clearly indicate that there are alcohol–alkene complexes in solution, which are weaker than the alcohol–alkyne ones, but detectable through heat capacity measurements. The Cmapp data for alkan-1-ols when plotted against ψ1, the concentration of hydroxyl groups in the mixture, follow a single corresponding states curve for each of the solvents. For all alkan-1-ols, CpE display the following behaviour: CpE (oct-1-yne)
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