Synthesis, spectroscopic characterization and acoustic, volumetric, transport and thermal properties of hydroxyl ammonium based ionic liquids
-
Add time:07/18/2019 Source:sciencedirect.com
In the present work, solvent-free synthesis of two hydroxyethyl ammonium-based ionic liquids (ILs) at room temperature was carried out namely, N-butyl-(N-hydroxyethyl) ammonium trifluoroacetate ([BHEA][TFA]) and N-butyl-(N-hydroxyethyl) ammonium nitrate ([BHEA][NO3]). The synthesized ionic liquids were characterized by various spectroscopic techniques such as 1H-NMR, 13C-NMR and FTIR. Furthermore, density (ρ), speed of sound (u), electrical conductivity (σ) and viscosity (η) have been measured within the temperature range from T = (303.15 to 343.15) K and at 0.1 MPa pressure. The measured density and viscosity values were fitted to the linear and Vogel–Tammann–Fulcher (VTF) equation, respectively. The temperature dependence conductivity of the measured ILs was fitted to a similar equation type of viscosity (VTF). Furthermore, the refractive index was measured at T = 303.15 K, in turn molar refraction (Rm) and free volume (fV) were calculated using the Lorentz–Lorenz equation. The thermodynamic properties such as thermal expansion coefficient (α), isentropic compressibility (βS) and intermolecular free length (Lf) were calculated by using the experimental values of density and speed of sound. The thermal decomposition temperature (Td) was investigated using TGA analysis. Finally, thermophysical properties of pure ILs were analyzed in terms of different kind of anions present in the ionic liquids.
We also recommend Trading Suppliers and Manufacturers of AMMONIUM TRIFLUOROACETATE (cas 3336-58-1). Pls Click Website Link as below: cas 3336-58-1 suppliers
Prev:Determination of residual trifluoroacetate in protein purification buffers and peptide preparations by ion chromatography
Next:Generation of superoxide ion in 1-butyl-1-methylpyrrolidinium trifluoroacetate and its application in the destruction of chloroethanes) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Small, mobile, persistent: Trifluoroacetate in the water cycle – Overlooked sources, pathways, and consequences for drinking water supply07/22/2019
- The reactions of palladium(II), thallium(III) and lead(IV) trifluoroacetates with 3β-acetoxyandrost-5-en-17-one: crystal structure of the first trifluoroacetate bridged 5,6,7-π-allyl steroid palladium dimer07/20/2019
- Mercury trifluoroacetate-catalyzed conversion of Se-alkyl phosphoroselenolates into the corresponding phosphates07/21/2019
- Generation of superoxide ion in 1-butyl-1-methylpyrrolidinium trifluoroacetate and its application in the destruction of chloroethanes07/19/2019
- Determination of residual trifluoroacetate in protein purification buffers and peptide preparations by ion chromatography07/17/2019
- Synthesis, characterization, and antifungal property of chitosan ammonium salts with halogens07/16/2019
- Comparative study of the physical and electrochemical behavior of direct N-SO3H functionalized 1, 3-disulfo-2-alkyl-imidazolium trifluoroacetate ionic liquids in molecular solvents07/15/2019
- Ammonium haloacetates – An alternative to glyphosate?07/14/2019
- Enhanced trifluoroacetate removal from groundwater by quaternary nitrogen-grafted granular activated carbon07/13/2019
-
Health and Chemical more >
-
Related Products
- Ammonium (-)-3-bromo-8-camphorsulfonate
- Ammonium (S)-5-((4-amino-4-carboxy-1-oxobutyl)amino)-2-nitrobenzoate
- Ammonium 1-pyrrolidinedithiocarbamate
- Ammonium 2,4-dichlorophenoxyacetate
- Ammonium 2-hydroxyethanesulphonate
- Ammonium 4-nitrobenzoate dihydrate
- Ammonium acetate
- Ammonium adipate
- Ammonium alginate
- Ammonium azide


