L-Alanine, N-L-alanyl-
- Formula: C6H12N2O3
- Molecular weight: 160.1711
- IUPAC Standard InChIKey: DEFJQIDDEAULHB-IMJSIDKUSA-N
- CAS Registry Number: 1948-31-8
- Chemical structure:
This structure is also available as a 2d Mol file or as a computed 3d SD file
The 3d structure may be viewed using Java or Javascript. - Stereoisomers:
- Other names: Alanine, N-L-alanyl-, L-; α-Alanylalanine; Ala-ala; Alanylalanine; Di-L-Alanine; Dialanine; L-Alanyl-L-alanine; N-(2-Aminopropanoyl)alanine. (L)-; N-L-Alanyl-L-alanine
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Condensed phase thermochemistry data
Go To: Top, Gas phase ion energetics data, References, Notes
Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.
Data compiled by: Eugene S. Domalski and Elizabeth D. Hearing
Constant pressure heat capacity of solid
Cp,solid (J/mol*K) | Temperature (K) | Reference | Comment |
---|---|---|---|
194.9 | 298. | Kulikov, Kozlov, et al., 1989 | T = 298 to 348 K. |
Gas phase ion energetics data
Go To: Top, Condensed phase thermochemistry data, References, Notes
Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.
Data evaluated as indicated in comments:
HL - Edward P. Hunter and Sharon G. Lias
Data compiled as indicated in comments:
MM - Michael M. Meot-Ner (Mautner)
Quantity | Value | Units | Method | Reference | Comment |
---|---|---|---|---|---|
Gas basicity | 905.6 | kJ/mol | N/A | Hunter and Lias, 1998 | HL |
Gas basicity at 298K
Gas basicity (review) (kJ/mol) | Reference | Comment |
---|---|---|
894.5 ± 1.2 | Bouchoux and Salpin, 2003 | T = 298K; MM |
896.2 ± 6.3 | Cassady, Carr, et al., 1995 | T = 298K; GB> isopropylamine, ≈ sec-butylamine, <cyclohexylamine; MM |
887. ± 3. | Wu and Lebrilla, 1995 | T = 300K; MM |
References
Go To: Top, Condensed phase thermochemistry data, Gas phase ion energetics data, Notes
Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.
Kulikov, Kozlov, et al., 1989
Kulikov, O.V.; Kozlov, V.A.; Malenkina, L.I.; Badelin, V.G.,
Heat capacities of amino acids and peptides and excess characteristics ot their aqueous solutions, Sbornik Nauch. Trud., Termodin. Rast. neelect., Ivanovo,
Inst. nevod. rast., 1989, Akad. [all data]
Hunter and Lias, 1998
Hunter, E.P.; Lias, S.G.,
Evaluated Gas Phase Basicities and Proton Affinities of Molecules: An Update,
J. Phys. Chem. Ref. Data, 1998, 27, 3, 413-656, https://doi.org/10.1063/1.556018
. [all data]
Bouchoux and Salpin, 2003
Bouchoux, G.; Salpin, J.Y.,
Gas-phase basicity of glycine, alanine, proline, serine, lysine, histidine and some of their peptides by the thermokinetic method,
European J. Mass Spectrometry, 2003, 9, 391-402. [all data]
Cassady, Carr, et al., 1995
Cassady, C.J.; Carr, S.R.; Zhang, K.; Chung-Phillips, C.,
Experimental and Ab Intio Studies of Protonations of Alanine and Samll Peptides of Alanine and Glycine,
J. Org. Chem., 1995, 60, 1704. [all data]
Wu and Lebrilla, 1995
Wu, J.; Lebrilla, C.B.,
Intrinsic Basicity of Oligomeric Peptides that Contain Glycine, Alanine, and Valine - The Effects of the Alkyl Side Chain on Proton Transfer Reactions,
J. Am. Soc. Mass Spectrom., 1995, 6, 91. [all data]
Notes
Go To: Top, Condensed phase thermochemistry data, Gas phase ion energetics data, References
- Symbols used in this document:
Cp,solid Constant pressure heat capacity of solid - Data from NIST Standard Reference Database 69: NIST Chemistry WebBook
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