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- W3048240983 abstract "Thepresentinvestigationdeals with the synthesis and thermophysical evaluation of six naturallow-transition-temperature mixtures (NALTTMs) with surfactants assuitable hydrogen bond donors (HBDs) and ammonium salts as hydrogenbond acceptors (HBAs). Thermophysical evaluation of these NALTTMsreveals the linear relationship of density and refractive index andnonlinear relation of conductivity and viscosity with temperature.The obtained resultsare associated with temperature by binary model equations. Additionally,the molar heat capacity and cohesive energy density manifest closedependence on the corresponding molar mass and follow a linear relationwith increasing temperature. It could be concluded from the data thatthe choice of HBA and HBD with their respective molar ratio has amajor influence on the extraction ability and thermophysical propertiesof NALTTM." @default.
- W3048240983 created "2020-08-13" @default.
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- W3048240983 date "2020-08-10" @default.
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- W3048240983 title "Thermophysical, Cohesive Energy Density and Molar Heat Capacity of Surfactant-Based Low-Transition-Temperature Mixtures" @default.
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- W3048240983 doi "https://doi.org/10.1021/acs.jced.0c00279" @default.
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