1-Naphthalenamine

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Condensed phase thermochemistry data

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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: Hussein Y. Afeefy, Joel F. Liebman, and Stephen E. Stein

Quantity Value Units Method Reference Comment
Δfsolid22.1kcal/molCcbPushin, 1954Author's hf298_condensed=19.6 kcal/mol
Δfsolid20.8kcal/molCcbSchmidt and Becker, 1933 
Δfsolid21.9kcal/molCcbLemoult, 1907 
Quantity Value Units Method Reference Comment
Δcsolid-1263.4 ± 1.3kcal/molCcbBalcan, Arzik, et al., 1996 
Δcsolid-1270.kcal/molCcbPushin, 1954Author's hf298_condensed=19.6 kcal/mol
Δcsolid-1268.76kcal/molCcbSchmidt and Becker, 1933 
Δcsolid-1264.1 ± 1.3kcal/molCcbMilone and Rossignoli, 1932Reanalyzed by Cox and Pilcher, 1970, Original value = -1265.35 kcal/mol
Δcsolid-1269.8kcal/molCcbLemoult, 1907 

Phase change data

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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 as indicated in comments:
BS - Robert L. Brown and Stephen E. Stein
TRC - Thermodynamics Research Center, NIST Boulder Laboratories, Chris Muzny director
AC - William E. Acree, Jr., James S. Chickos

Quantity Value Units Method Reference Comment
Tboil574.0KN/AWeast and Grasselli, 1989BS
Tboil573.15KN/AStillmann and Swain, 1899Uncertainty assigned by TRC = 2. K; TRC
Tboil573.95KN/APerkin, 1896Uncertainty assigned by TRC = 1.5 K; TRC
Tboil512.1KN/AHofmann, 1844Uncertainty assigned by TRC = 27.77 K; Identity uncertain. Name given was leucol. Analysis corresponds to C10H9N. Extracted from coal naphtha along with aniline. May be mixture with aniline.; TRC
Quantity Value Units Method Reference Comment
Tfus322. ± 2.KAVGN/AAverage of 16 out of 17 values; Individual data points
Quantity Value Units Method Reference Comment
Δvap17.5 ± 0.1kcal/molGSVerevkin, Georgieva, et al., 2007Based on data from 323. to 353. K.; AC
Quantity Value Units Method Reference Comment
Δsub21.1 ± 0.1kcal/molGSVerevkin, Georgieva, et al., 2007Based on data from 290. to 320. K.; AC

Enthalpy of vaporization

ΔvapH (kcal/mol) Temperature (K) Method Reference Comment
15.2392.AStephenson and Malanowski, 1987Based on data from 377. to 574. K. See also Stull, 1947.; AC

Antoine Equation Parameters

log10(P) = A − (B / (T + C))
    P = vapor pressure (atm)
    T = temperature (K)

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Temperature (K) A B C Reference Comment
377.5 to 573.95.000722685.958-36.72Stull, 1947Coefficents calculated by NIST from author's data.

Enthalpy of fusion

ΔfusH (kcal/mol) Temperature (K) Reference Comment
3.712323.2Acree, 1991AC

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

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

Pushin, 1954
Pushin, N.A., Heats of combustion and heats of formation of isomeric organic compounds, Bull. Soc. Chim. Belgrade, 1954, 19, 531-547. [all data]

Schmidt and Becker, 1933
Schmidt, V.A.; Becker, F., Die Bildungswarme von Nitrocellulofen, Nitroglycerin und anderen widuigen Beltandteilen von Treibmitteln, Z. Gesamte Schiess Sprengstoffwes., 1933, 33, 280-282. [all data]

Lemoult, 1907
Lemoult, M.P., Recherches theoriques et experimentales sur les chaleurs de combustion et de formation des composes organiques, Ann. Chim. Phys., 1907, 12, 395-432. [all data]

Balcan, Arzik, et al., 1996
Balcan, M.; Arzik, S.; Altunata, T., The determination of the heats of combustion and the resonance energies of some substituted naphthalenes, Thermochim. Acta, 1996, 278, 49-56. [all data]

Milone and Rossignoli, 1932
Milone, M.; Rossignoli, P., Sul calore di combustione di alcune miscele di composti organici, Gazz. Chim. Ital., 1932, 62, 644-655. [all data]

Cox and Pilcher, 1970
Cox, J.D.; Pilcher, G., Thermochemistry of Organic and Organometallic Compounds, Academic Press, New York, 1970, 1-636. [all data]

Weast and Grasselli, 1989
CRC Handbook of Data on Organic Compounds, 2nd Editon, Weast,R.C and Grasselli, J.G., ed(s)., CRC Press, Inc., Boca Raton, FL, 1989, 1. [all data]

Stillmann and Swain, 1899
Stillmann, J.M.; Swain, R.E., The melting heat of naphthylamine and diphenylamine in relation to their lowering of molecular freezing point, Z. Phys. Chem., Stoechiom. Verwandtschaftsl., 1899, 29, 705. [all data]

Perkin, 1896
Perkin, W.H., LXIX. On Magnetic Rotatory Power, especially of Aromatic Compounds, J. Chem. Soc., 1896, 69, 1025-1257. [all data]

Hofmann, 1844
Hofmann, A.W., A Chemical Investigation of the Organic Bases Contained in Coal Gas Naphtha, Philos. Mag., 1844, 24, 115. [all data]

Verevkin, Georgieva, et al., 2007
Verevkin, Sergey P.; Georgieva, Miglena; Melkhanova, Svetlana V., Vapor Pressures and Phase Transitions of a Series of the Aminonaphthalenes, J. Chem. Eng. Data, 2007, 52, 1, 286-290, https://doi.org/10.1021/je060394v . [all data]

Stephenson and Malanowski, 1987
Stephenson, Richard M.; Malanowski, Stanislaw, Handbook of the Thermodynamics of Organic Compounds, 1987, https://doi.org/10.1007/978-94-009-3173-2 . [all data]

Stull, 1947
Stull, Daniel R., Vapor Pressure of Pure Substances. Organic and Inorganic Compounds, Ind. Eng. Chem., 1947, 39, 4, 517-540, https://doi.org/10.1021/ie50448a022 . [all data]

Acree, 1991
Acree, William E., Thermodynamic properties of organic compounds: enthalpy of fusion and melting point temperature compilation, Thermochimica Acta, 1991, 189, 1, 37-56, https://doi.org/10.1016/0040-6031(91)87098-H . [all data]


Notes

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