Liu, S.; Cai, S.; Cao, C.; Li, Z. Molecular Electronegative Distance Vector (MEDV) Related to 15 Properties of Alkanes. J. Chem. Inf. Model. 2000, 40, 6, 1337–1348.

QsarDB Repository

Liu, S.; Cai, S.; Cao, C.; Li, Z. Molecular Electronegative Distance Vector (MEDV) Related to 15 Properties of Alkanes. J. Chem. Inf. Model. 2000, 40, 6, 1337–1348.

QDB archive DOI: 10.15152/QDB.122   DOWNLOAD

QsarDB content

Property BP: Boiling point [K]

Model_16: Table 6A

Regression model (regression)

Open in:QDB ExplorerQDB Predictor

NameTypen

R2

σ

Training settraining1500.9963.234

Property D: Density at 25C [g/cm^3]

Model_17: Table 6B

Regression model (regression)

Open in:QDB ExplorerQDB Predictor

NameTypen

R2

σ

Training settraining1340.9882.874

Property MR: Molar refraction at 20C [m^3/mol]

Model_7: Table 6C

Regression model (regression)

Open in:QDB ExplorerQDB Predictor

NameTypen

R2

σ

Training settraining691.0000.065

Property RI: Refraction index at 25C

Model_18: Table 6D

Regression model (regression)

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NameTypen

R2

σ

Training settraining1340.9770.002

Property CT: Critical temperature [K]

Model_19: Table 6E

Regression model (regression)

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NameTypen

R2

σ

Training settraining740.9915.357

Property CP: Critical pressure [atm]

Model_20: Table 6F

Regression model (regression)

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NameTypen

R2

σ

Training settraining740.9820.582

Property ST: Surface tension at 20C [dyn/cm]

Model_21: Table 6G

Regression model (regression)

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NameTypen

R2

σ

Training settraining680.9820.262

Property MV: Molar volume at 20C [cm3/mol]

Model_8: Table 6H

Regression model (regression)

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NameTypen

R2

σ

Training settraining691.0000.362

Property HC: Heat capacity at 300K [J*K^-1*mol^-1]

Model_9: Table 6I

Regression model (regression)

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NameTypen

R2

σ

Training settraining1340.9773.822

Property E: Enthalphy at 300K

Model_10: Table 6J

Regression model (regression)

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NameTypen

R2

σ

Training settraining1340.9870.483

Property HV: Heat of vaporization at 25C [kJ/mol]

Model_11: Table 6K

Regression model (regression)

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NameTypen

R2

σ

Training settraining690.9980.225

Property HA: Heat of atomization at 25C [kJ/mol]

Model_12: Table 6L

Regression model (regression)

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NameTypen

R2

σ

Training settraining441.00030.330

Property HF: Standard heat of formation at 25C [kJ/mol]

Model_13: Table 6M

Regression model (regression)

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NameTypen

R2

σ

Training settraining540.9922.604

Property HFL: Heat of formation in liquid at 25C [kJ/mol]

Model_14: Table 6N

Regression model (regression)

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NameTypen

R2

σ

Training settraining620.9950.727

Property HFG: Heat of formation in gas at 25C [kJ/mol]

Model_15: Table 6O

Regression model (regression)

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NameTypen

R2

σ

Training settraining630.9950.705

Citing

When using this QDB archive, please cite (see details) it together with the original article:

  • Piir, G. Data for: Molecular Electronegative Distance Vector (MEDV) Related to 15 Properties of Alkanes. QsarDB repository, QDB.122. 2014. https://doi.org/10.15152/QDB.122

  • Liu, S.; Cai, S.; Cao, C.; Li, Z. Molecular Electronegative Distance Vector (MEDV) Related to 15 Properties of Alkanes. J. Chem. Inf. Model. 2000, 40, 1337–1348. https://doi.org/10.1021/ci0003247

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dc.date.accessioned2014-10-30T07:59:42Z
dc.date.available2014-10-30T07:59:42Z
dc.date.issued2014-10-30*
dc.identifier.urihttp://hdl.handle.net/10967/122
dc.identifier.urihttp://dx.doi.org/10.15152/QDB.122
dc.description.abstractSeveral quantitative structure−property relationship (QSPR) models between 15 basic physical properties or thermodynamic functions of alkanes and their molecular electronegative distance vectors (MEDV) are developed. For six of the properties boiling point (BP), density (D) at 25 °C, refraction index (RI) at 25 °C, critical temperature (CT), critical pressure (CP), and surface tension (ST) at 20 °C logarithmic models are found to give better results than conventional (linear) models since the values of these properties all tend to a limit with increasing carbon chain length. All models are created using multiple linear regression (MLR). Conventional models are proposed for the remaining nine physical properties or thermodynamic functions:  molar volume (MV) at 20 °C, molar refraction (MR) at 20 °C, heat capacity (HC) at 300 K, enthalpy (E) at 300 K, heats of vaporization (HV) at 25 °C, heat of atomization (HA) at 25 °C, standard heat of formation (HF) at 25 °C, heat of formation in liquid (HFL) at 25 °C, and heat of formation in gas (HFG) at 25 °C.
dc.publisherGeven Piir
dc.rightsAttribution 4.0 International
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.titleLiu, S.; Cai, S.; Cao, C.; Li, Z. Molecular Electronegative Distance Vector (MEDV) Related to 15 Properties of Alkanes. J. Chem. Inf. Model. 2000, 40, 6, 1337–1348.
qdb.property.endpoint1. Physical Chemical Properties 1.2. Boiling pointen_US
qdb.property.endpoint1. Physical Chemical Properties 1.5. Surface tensionen_US
qdb.property.endpoint1. Physical Chemical Properties 1.13. Densityen_US
qdb.property.endpoint6. Other (Molar refraction)
qdb.property.endpoint6. Other (Refraction index)
qdb.property.endpoint6. Other (Critical temperature)
qdb.property.endpoint6. Other (Critical pressure)
qdb.property.endpoint6. Other (Molar volume)
qdb.property.endpoint6. Other (Heat capacity)
qdb.property.endpoint6. Other (Enthalphy)
qdb.property.endpoint6. Other (Heat of vaporization)
qdb.property.endpoint6. Other (Heat of atomization)
qdb.property.endpoint6. Other (Standard heat of formation)
qdb.property.endpoint6. Other (Heat of formation in liquid)
qdb.property.endpoint6. Other (Heat of formation in gas)
bibtex.entryarticleen_US
bibtex.entry.authorLiu, S.
bibtex.entry.authorCai, S.
bibtex.entry.authorCao, C.
bibtex.entry.authorLi, Z.
bibtex.entry.doi10.1021/ci0003247en_US
bibtex.entry.journalJ. Chem. Inf. Model.en_US
bibtex.entry.monthNov
bibtex.entry.number6en_US
bibtex.entry.pages1337–1348en_US
bibtex.entry.titleMolecular Electronegative Distance Vector (MEDV) Related to 15 Properties of Alkanesen_US
bibtex.entry.volume40en_US
bibtex.entry.year2000
qdb.model.typeRegression model (regression)en_US


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