1-Tetradecanol

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Normal melting point

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: Thermodynamics Research Center, NIST Boulder Laboratories, Chris Muzny director

Tfus (K) Reference Comment
311.Steele, Chirico, et al., 1991Uncertainty assigned by TRC = 1. K; TRC
310.15Gaikwad and Subrahmanyam, 1985Uncertainty assigned by TRC = 0.5 K; TRC
311.0Mosselman, Mourik, et al., 1974Crystal phase 2 phase; Uncertainty assigned by TRC = 0.05 K; TRC
311.21Mosselman, Mourik, et al., 1974Crystal phase 3 phase; Uncertainty assigned by TRC = 0.05 K; TRC
310.79Mosselman, Mourik, et al., 1974Crystal phase 1 phase; Uncertainty assigned by TRC = 0.5 K; TRC
310.1Davies and Kybett, 1965Uncertainty assigned by TRC = 0.6 K; TRC
310.2Shulman, Formo, et al., 1961Uncertainty assigned by TRC = 2. K; TRC
312.Costello and Bowden, 1958Uncertainty assigned by TRC = 1.2 K; TRC
309.55Rathmann, Curtis, et al., 1956Uncertainty assigned by TRC = 0.5 K; TRC
310.75Doolittle and Peterson, 1951Uncertainty assigned by TRC = 0.2 K; TRC
311.Timmermans, 1935Uncertainty assigned by TRC = 1.5 K; TRC

In addition to the Thermodynamics Research Center (TRC) data available from this site, much more physical and chemical property data is available from the following TRC products:


References

Go To: Top, Normal melting point, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Steele, Chirico, et al., 1991
Steele, W.V.; Chirico, R.D.; Nguyen, A.; Hossenlopp, I.A.; Smith, N.K., DIPPR Project 871: determination of ideal-gas enthalpies of formation for key compounds: the 1989 project results in DIPPR Data Ser. 1, 1991. [all data]

Gaikwad and Subrahmanyam, 1985
Gaikwad, B.R.; Subrahmanyam, V.V., Melting behavior of fatty alcohols and their binary blends., J. Indian Chem. Soc., 1985, 62, 513. [all data]

Mosselman, Mourik, et al., 1974
Mosselman, C.; Mourik, J.; Dekker, H., Enthalpies of phase change and heat capacities of some long-chain alcohols. Adiabatic semi-microcalorimeter for studies of polymorphism, J. Chem. Thermodyn., 1974, 6, 477-87. [all data]

Davies and Kybett, 1965
Davies, M.; Kybett, B., Sublimation and vaporization heats of long-chain alcohols, Trans. Faraday Soc., 1965, 61, 1608. [all data]

Shulman, Formo, et al., 1961
Shulman, S.; Formo, M.W.; Rheineck, A.E., Aliphatic Urethanes. Effect of Chain Length on Some Physical Properties, J. Am. Oil Chem. SOc., 1961, 38, 205-8. [all data]

Costello and Bowden, 1958
Costello, J.M.; Bowden, S.T., The Temperature Variation of Orthobaric Density Difference in Liquid-Vapor Systems III. Alcohols, Recl. Trav. Chim. Pays-Bas, 1958, 77, 36-46. [all data]

Rathmann, Curtis, et al., 1956
Rathmann, G.B.; Curtis, A.J.; McGeer, P.L.; Smyth, C.P., Microwave Absorption and Molecular Structure in Liquids. XIV. The Apparent Critical Wave Lengths of Liquid Long Chain Alcohols, J. Am. Chem. Soc., 1956, 78, 2035-8. [all data]

Doolittle and Peterson, 1951
Doolittle, A.K.; Peterson, R.H., Preparation of physical properties of a series of n-alkanes, J. Am. Chem. Soc., 1951, 73, 2145. [all data]

Timmermans, 1935
Timmermans, J., Researches in Stoichiometry. I. The Heat of Fusion of Organic Compounds., Bull. Soc. Chim. Belg., 1935, 44, 17-40. [all data]


Notes

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