| Literature DB >> 33806853 |
Maha M Abdallah1,2, Simon Müller3, Andrés González de Castilla3, Pavel Gurikov4, Ana A Matias1, Maria do Rosário Bronze1,2,5, Naiara Fernández1.
Abstract
The characterization of terpene-based eutectic solvent systems is performed to describe their solid-liquid phase transitions. Physical properties are measured experimentally and compared to computed correlations for deep eutectic solvents (DES) and the percentage relative error er for the density, surface tension, and refractive index is obtained. The thermodynamic parameters, including the degradation, glass transition and crystallization temperatures, are measured using DSC and TGA. Based on these data, the solid-liquid equilibrium phase diagrams are calculated for the ideal case and predictions are made using the semi-predictive UNIFAC and the predictive COSMO RS models, the latter with two different parametrization levels. For each system, the ideal, experimental, and predicted eutectic points are obtained. The deviation from ideality is observed experimentally and using the thermodynamic models for Thymol:Borneol and Thymol:Camphor. In contrast, a negative deviation is observed only experimentally for Menthol:Borneol and Menthol:Camphor. Moreover, the chemical interactions are analyzed using FTIR and 1H-NMR to study the intermolecular hydrogen bonding in the systems.Entities:
Keywords: chemical interactions; deep eutectic solvents; equilibrium phase diagram; physical characterization; simulation; terpenes
Year: 2021 PMID: 33806853 PMCID: PMC8004849 DOI: 10.3390/molecules26061801
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Chemical structure of the terpenes.
| Compound | Chemical Structure |
|---|---|
| Menthol |
|
| Thymol |
|
| Borneol |
|
| Camphor |
|
Experimental and theoretical properties of the eutectic systems.
| Eutectic Systems | |||||
|---|---|---|---|---|---|
| Men:Bor | Men:Cam | Thy:Bor | Thy:Cam | ||
| 155.66 | 154.65 | 151.43 | 151.23 | ||
| Experimental | Viscosity | 128.07 ± 0.24 | 19.23 ± 0.01 | 45.63 ± 0.20 | 21.10 ± 0.02 |
| Density | 0.9152 ± 0.0005 | 0.9178 ± 0.0001 | 0.9716 ± 0.0001 | 0.9675 ± 0.0001 | |
| Surface tension | 29.04 ± 0.03 | 29.41 ± 0.08 | 31.75 ± 0.01 | 30.35 ± 0.06 | |
| Refractive index | 1.4670 ± 0.0005 | 1.4635 ± 0.0008 | 1.5105 ± 0.0002 | 1.4970 ± 0.0003 | |
| Theoretical | Density | 1.1116 | 1.1063 | 1.1500 | 1.1350 |
| Surface tension | 25.37 | 23.25 | 29.19 | 32.25 | |
| Refractive index | 1.4708 | 1.4671 | 1.4795 | 1.4731 | |
Error parameter for each parameter.
|
| ||||
|---|---|---|---|---|
| Men:Bor | Men:Cam | Thy:Bor | Thy:Cam | |
| Density | 21.5 | 20.5 | 18.4 | 17.3 |
| Surface tension | −12.7 | −21.0 | −8.1 | 6.3 |
| Refractive index | 0.26 | 0.25 | −2.05 | −1.59 |
Figure 1FTIR spectra of the pure terpenes and eutectic systems.
Figure 2Magnified 1H-NMR spectra of the eutectic systems as a function of temperature.
Figure 3Plot of the chemical shifts (δ) of the OH proton as a function of temperature for each eutectic system.
Experimental data of the melting temperature (Tfus), enthalpy of fusion (ΔHfus), of the pure terpenes.
| Component | Δ | |
|---|---|---|
| Menthol | 309.72 | 13.62 |
| Thymol | 324.31 | 18.54 |
| Borneol | 481.33 | 7.23 |
| Camphor | 452.41 | 6.32 |
Experimental data of the degradation temperature (Td), the crystallization temperature (Tcr), enthalpy of crystallization (ΔHcr), and the glass transition temperature (Tg) of the eutectic systems.
| Eutectic System | Δ | |||
|---|---|---|---|---|
| Men:Bor (7:3) | 366.02 | 254.08 | 21.17 | 223.03 |
| Men:Cam (3:2) | 358.29 | 239.92 | 28.60 | 196.98 |
| Thy:Bor (7:3) | 355.04 | 284.64 | 0.098 | 215.17 |
| Thy:Cam (1:1) | 370.74 | 260.69 | 0.077 | 194.23 |
Figure 4Measured SLE phase diagrams of the terpene-based solvent systems.
Predicted eutectic temperatures and molar ratios of the solvent systems.
| Eutectic Systems | |||||
|---|---|---|---|---|---|
| Men:Bor | Men:Cam | Thy:Bor | Thy:Cam | ||
| Ideal | 289.8 | 284.7 | 309.6 | 300.1 | |
|
| 0.696 | 0.628 | 0.722 | 0.457 | |
| UNIFAC | 290.0 | 286.5 | 300.8 | 281.7 | |
|
| 0.697 | 0.642 | 0.645 | 0.514 | |
| COSMO-RS (TZVP) | 289.7 | 283.4 | 274.7 | 166.2 | |
|
| 0.695 | 0.630 | 0.515 | 0.538 | |
| COSMO-RS (TZVP-FINE) | 290.7 | 288.1 | 293.2 | 237.9 | |
|
| 0.704 | 0.664 | 0.583 | 0.547 | |
Adjusted and optimized parameters for the proposed models of Equations (2) and (3).
| Parameter | Value | Units |
|---|---|---|
|
| 393.4 | mN/m |
|
| −5.3 × 10−5 | mN/m |
|
| −3.72 × 10−2 | mN/m |
|
| −50.3 | mN/m |
|
| 1.132 | mN/m |
|
| 108.9 | mN/m |
|
| 1 | mol⋅mL/g2 |
|
| 1 | mL⋅m/mol⋅mN |
|
| 1 | bar⋅mol/g⋅K0.5 |
|
| 1 | mol⋅K0.5/g |
|
| 5.17 × 10−2 | Dimensionless |
|
| −11.625 | mol/g |
|
| 2.27 × 10−3 | bar−1 |
|
| 1.3668 | Dimensionless |
|
| 25.89 | K |