| Literature DB >> 25798191 |
Jean-Claude Bradley1, Michael H Abraham2, William E Acree3, Andrew Sid Lang4, Samantha N Beck4, David A Bulger4, Elizabeth A Clark4, Lacey N Condron4, Stephanie T Costa1, Evan M Curtin1, Sozit B Kurtu1, Mark I Mangir1, Matthew J McBride1.
Abstract
BACKGROUND: Calculating Abraham descriptors from solubility values requires that the solute have the same form when dissolved in all solvents. However, carboxylic acids can form dimers when dissolved in non-polar solvents. For such compounds Abraham descriptors can be calculated for both the monomeric and dimeric forms by treating the polar and non-polar systems separately. We illustrate the method of how this can be done by calculating the Abraham descriptors for both the monomeric and dimeric forms of trans-cinnamic acid, the first time that descriptors for a carboxylic acid dimer have been obtained.Entities:
Year: 2015 PMID: 25798191 PMCID: PMC4369286 DOI: 10.1186/s13065-015-0080-9
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Solubilities of trans-cinnamic acid
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|---|---|
| Water | 0.004 |
| Cyclohexane | 0.027 |
| Carbon tetrachloride | 0.167 |
| Trifluoroethanol | 0.168 |
| m-xylene | 0.201 |
| Toluene | 0.253 |
| Acetonitrile | 0.263 |
| Tetrachloroethylene | 0.277 |
| Benzene | 0.303 |
| Chlorobenzene | 0.314 |
| Nitrobenzene | 0.429 |
| 1-octanol | 0.537 |
| Diethyl ether | 0.575 |
| Trichloroethylene | 0.59 |
| Propyl acetate | 0.609 |
| Pentachloroethane | 0.617 |
| 2-butanol | 0.705 |
| 1-pentanol | 0.725 |
| 1-butanol | 0.735 |
| Ethyl acetate | 0.775 |
| 2-pentanol | 0.922 |
| 1-propanol | 0.934 |
| 2-propanol | 0.967 |
| Chloroform | 1.034 |
| Tetrachloroethane | 1.149 |
| Ethanol | 1.167 |
| Acetone | 1.337 |
| Methanol | 1.384 |
| THF | 2.367 |
| DMSO | 8.423 |
Values of water-solvent partition coefficients, as log P , for trans-cinnamic acid monomer
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|---|---|
| Octan-1-ol, wet | 2.13 |
| Trichloromethane | 1.20 |
| Tetrachloromethane | 0.40 |
| Cyclohexane | −0.25 |
| Diethyl ether, wet | 1.92 |
Descriptors for monomeric and dimeric cinnamic acid, and for monomeric benzoic acid
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|---|---|---|---|---|---|---|---|---|---|
| Monomer | 1.14 | 1.12 | 0.61 | 0.50 | 1.1705 | 5.79 | 6.14 | 45 | 0.100 |
| Dimer | 1.68 | 1.07 | 0.24 | 0.94 | 2.2098 | 10.30 | 6.29 | 20 | 0.087 |
| Benzoic acid | 0.73 | 0.90 | 0.59 | 0.40 | 0.9317 | 4.66 | 5.10 |
Observed and fitted solubilities for trans-cinnamic acid monomer in polar solvents
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|---|---|---|---|---|
| Solvent | Calc | Obs | Calc | Obs |
| Methanol | 2.499 | 2.541 | 0.099 | 0.141 |
| Ethanol | 2.515 | 2.467 | 0.115 | 0.067 |
| Propanol | 2.381 | 2.370 | −0.019 | −0.030 |
| Butanol | 2.278 | 2.266 | −0.122 | −0.134 |
| Pentanol | 2.311 | 2.260 | −0.089 | −0.140 |
| Octanol | 2.159 | 2.130 | −0.241 | −0.270 |
| Propan-2-ol | 2.371 | 2.385 | −0.029 | −0.015 |
| Butan-2-ol | 2.293 | 2.248 | −0.107 | −0.152 |
| Pentan-2-ol | 2.313 | 2.365 | −0.087 | −0.035 |
| Diethylether | 2.174 | 2.160 | −0.226 | −0.240 |
| Tetrahydrofuran | 2.786 | 2.774 | 0.386 | 0.374 |
| Ethyl acetate | 2.228 | 2.289 | −0.172 | −0.111 |
| Propyl acetate | 2.158 | 2.185 | −0.242 | −0.215 |
| Propanone | 2.400 | 2.526 | 0.000 | 0.126 |
| Acetonitrile | 1.653 | 1.820 | −0.747 | −0.580 |
| Dimethylsulfoxide | 3.497 | 3.326 | 1.097 | 0.925 |
Observed and fitted solubilities for trans-cinnamic acid dimer in non-polar solvents
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|---|---|---|---|---|
| Solvent | Calc | Obs | Calc | Obs |
| Trichloromethane | 5.598 | 5.672 | −0.059 | 0.015 |
| Tetrachloromethane | 4.870 | 4.880 | −0.787 | −0.777 |
| Cyclohexane | 4.264 | 4.088 | −1.393 | −1.569 |
| Benzene | 5.125 | 5.138 | −0.532 | −0.519 |
| Toluene | 5.045 | 5.060 | −0.612 | −0.597 |
| p-xylene | 4.826 | 4.960 | −0.831 | −0.697 |
| Chlorobenzene | 5.162 | 5.154 | −0.495 | −0.503 |
| Nitrobenzene | 5.285 | 5.289 | −0.372 | −0.368 |
| Trifluoroethanol | 4.921 | 4.882 | −0.736 | −0.775 |
Figure 1Observed and fitted solubilities for trans-cinnamic acid. Red is for dimer in non-polar solvents.