Sodium ion (1+)


Reaction 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: Robert C. Dunbar

Note: Please consider using the reaction search for this species. This page allows searching of all reactions involving this species. A general reaction search form is also available. Future versions of this site may rely on reaction search pages in place of the enumerated reaction displays seen below.

Reactions 201 to 248

Sodium ion (1+) + L-Threonine, N-glycyl- = (Sodium ion (1+) • L-Threonine, N-glycyl-)

By formula: Na+ + C6H12N2O4 = (Na+ • C6H12N2O4)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
162.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + L-Serine, N-glycyl- = (Sodium ion (1+) • L-Serine, N-glycyl-)

By formula: Na+ + C5H10N2O4 = (Na+ • C5H10N2O4)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
156.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + Glycyl-L-glutamic acid = (Sodium ion (1+) • Glycyl-L-glutamic acid)

By formula: Na+ + C7H12N2O5 = (Na+ • C7H12N2O5)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
170.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + 2,5-Piperazinedione = (Sodium ion (1+) • 2,5-Piperazinedione)

By formula: Na+ + C4H6N2O2 = (Na+ • C4H6N2O2)

Quantity Value Units Method Reference Comment
Δr143. ± 7.1kJ/molCIDCCerda, Hoyau, et al., 1998 

Sodium ion (1+) + Toluene = (Sodium ion (1+) • Toluene)

By formula: Na+ + C7H8 = (Na+ • C7H8)

Quantity Value Units Method Reference Comment
Δr112. ± 3.kJ/molCIDTAmunugama and Rodgers, 2002 

Sodium ion (1+) + Pyrrole = (Sodium ion (1+) • Pyrrole)

By formula: Na+ + C4H5N = (Na+ • C4H5N)

Quantity Value Units Method Reference Comment
Δr102. ± 4.6kJ/molCIDTHuang and Rodgers, 2002 

Sodium ion (1+) + 1H-Pyrazole = (Sodium ion (1+) • 1H-Pyrazole)

By formula: Na+ + C3H4N2 = (Na+ • C3H4N2)

Quantity Value Units Method Reference Comment
Δr128. ± 9.2kJ/molCIDTHuang and Rodgers, 2002 

Sodium ion (1+) + 12-Crown-4 = (Sodium ion (1+) • 12-Crown-4)

By formula: Na+ + C8H16O4 = (Na+ • C8H16O4)

Quantity Value Units Method Reference Comment
Δr372. ± 51.kJ/molCIDTMore, Ray, et al., 1997 

Sodium ion (1+) + Benzene, fluoro- = (Sodium ion (1+) • Benzene, fluoro-)

By formula: Na+ + C6H5F = (Na+ • C6H5F)

Quantity Value Units Method Reference Comment
Δr70. ± 3.kJ/molCIDTAmunugama and Rodgers, 2002, 2 

Sodium ion (1+) + 1H-Imidazole, 1-methyl- = (Sodium ion (1+) • 1H-Imidazole, 1-methyl-)

By formula: Na+ + C4H6N2 = (Na+ • C4H6N2)

Quantity Value Units Method Reference Comment
Δr161. ± 5.0kJ/molCIDTHuang and Rodgers, 2002 

Sodium ion (1+) + Glycylglycine ethyl ester = (Sodium ion (1+) • Glycylglycine ethyl ester)

By formula: Na+ + C6H12N2O4 = (Na+ • C6H12N2O4)

Quantity Value Units Method Reference Comment
Δr181. ± 7.1kJ/molCIDCCerda, Hoyau, et al., 1998 

Sodium ion (1+) + Glycyl-dl-alanine = (Sodium ion (1+) • Glycyl-dl-alanine)

By formula: Na+ + C5H10N2O3 = (Na+ • C5H10N2O3)

Quantity Value Units Method Reference Comment
Δr179. ± 7.1kJ/molCIDCCerda, Hoyau, et al., 1998 

Sodium ion (1+) + 1H-Pyrazole, 1-methyl- = (Sodium ion (1+) • 1H-Pyrazole, 1-methyl-)

By formula: Na+ + C4H6N2 = (Na+ • C4H6N2)

Quantity Value Units Method Reference Comment
Δr131. ± 3.kJ/molCIDTHuang and Rodgers, 2002 

Sodium ion (1+) + Anisole = (Sodium ion (1+) • Anisole)

By formula: Na+ + C7H8O = (Na+ • C7H8O)

Quantity Value Units Method Reference Comment
Δr113. ± 8.4kJ/molCIDTAmunugama and Rodgers, 2003 

Sodium ion (1+) + Pyridine = (Sodium ion (1+) • Pyridine)

By formula: Na+ + C5H5N = (Na+ • C5H5N)

Quantity Value Units Method Reference Comment
Δr127. ± 3.kJ/molCIDTAmunugama and Rodgers, 2000 

Sodium ion (1+) + Pyrazine = (Sodium ion (1+) • Pyrazine)

By formula: Na+ + C4H4N2 = (Na+ • C4H4N2)

Quantity Value Units Method Reference Comment
Δr108. ± 3.kJ/molCIDTAmunugama and Rodgers, 2000 

Sodium ion (1+) + 1,3,5-Triazine = (Sodium ion (1+) • 1,3,5-Triazine)

By formula: Na+ + C3H3N3 = (Na+ • C3H3N3)

Quantity Value Units Method Reference Comment
Δr88. ± 3.kJ/molCIDTAmunugama and Rodgers, 2000 

Sodium ion (1+) + N-acetyl-L-tyrosine = (Sodium ion (1+) • N-acetyl-L-tyrosine)

By formula: Na+ + C11H13NO4 = (Na+ • C11H13NO4)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
145.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + C7H14N2O3S = (Sodium ion (1+) • C7H14N2O3S)

By formula: Na+ + C7H14N2O3S = (Na+ • C7H14N2O3S)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
156.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + L-Cysteine, N-acetyl- = (Sodium ion (1+) • L-Cysteine, N-acetyl-)

By formula: Na+ + C5H9NO3S = (Na+ • C5H9NO3S)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
129.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + Glycyl-L-tyrosine = (Sodium ion (1+) • Glycyl-L-tyrosine)

By formula: Na+ + C11H14N2O4 = (Na+ • C11H14N2O4)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
159.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + Glycyl-L-proline = (Sodium ion (1+) • Glycyl-L-proline)

By formula: Na+ + C7H12N2O3 = (Na+ • C7H12N2O3)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
163.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + 2-Butanone = (Sodium ion (1+) • 2-Butanone)

By formula: Na+ + C4H8O = (Na+ • C4H8O)

Quantity Value Units Method Reference Comment
Δr131. ± 7.1kJ/molCIDTMoision and Armentrout, 2002 

Sodium ion (1+) + Propanoic acid = (Sodium ion (1+) • Propanoic acid)

By formula: Na+ + C3H6O2 = (Na+ • C3H6O2)

Quantity Value Units Method Reference Comment
Δr118. ± 5.9kJ/molCIDTMoision and Armentrout, 2002 

Sodium ion (1+) + L-Leucine, N-glycyl- = (Sodium ion (1+) • L-Leucine, N-glycyl-)

By formula: Na+ + C8H16N2O3 = (Na+ • C8H16N2O3)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
154.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + N-acetyl-L-aspartic acid = (Sodium ion (1+) • N-acetyl-L-aspartic acid)

By formula: Na+ + C6H9NO5 = (Na+ • C6H9NO5)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
146.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + Ethylene = (Sodium ion (1+) • Ethylene)

By formula: Na+ + C2H4 = (Na+ • C2H4)

Quantity Value Units Method Reference Comment
Δr43.1 ± 4.6kJ/molCIDTArmentrout and Rodgers, 2000 

Sodium ion (1+) + Acetaldehyde = (Sodium ion (1+) • Acetaldehyde)

By formula: Na+ + C2H4O = (Na+ • C2H4O)

Quantity Value Units Method Reference Comment
Δr113. ± 3.kJ/molCIDTArmentrout and Rodgers, 2000 

Sodium ion (1+) + 2-Butanol = (Sodium ion (1+) • 2-Butanol)

By formula: Na+ + C4H10O = (Na+ • C4H10O)

Quantity Value Units Method Reference Comment
Δr117. ± 5.0kJ/molCIDTRodgers and Armentrout, 1999 

Sodium ion (1+) + 1H-Pyrrole, 1-methyl- = (Sodium ion (1+) • 1H-Pyrrole, 1-methyl-)

By formula: Na+ + C5H7N = (Na+ • C5H7N)

Quantity Value Units Method Reference Comment
Δr111. ± 3.kJ/molCIDTHuang and Rodgers, 2002 

Sodium ion (1+) + L-Methionine, N-acetyl- = (Sodium ion (1+) • L-Methionine, N-acetyl-)

By formula: Na+ + C7H13NO3S = (Na+ • C7H13NO3S)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
144.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + L-Proline, 1-acetyl- = (Sodium ion (1+) • L-Proline, 1-acetyl-)

By formula: Na+ + C7H10NO3 = (Na+ • C7H10NO3)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
147.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + L-Valine, N-acetyl- = (Sodium ion (1+) • L-Valine, N-acetyl-)

By formula: Na+ + C7H13NO3 = (Na+ • C7H13NO3)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
140.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + L-Alanine, N-acetyl- = (Sodium ion (1+) • L-Alanine, N-acetyl-)

By formula: Na+ + C5H9NO3 = (Na+ • C5H9NO3)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference
134.0.CIDCFeng, Gronert, et al., 1999

Sodium ion (1+) + Pyridine, 4-methyl- = (Sodium ion (1+) • Pyridine, 4-methyl-)

By formula: Na+ + C6H7N = (Na+ • C6H7N)

Quantity Value Units Method Reference Comment
Δr133. ± 4.kJ/molCIDTRodgers, 2001 

Sodium ion (1+) + Pyridine, 3-methyl- = (Sodium ion (1+) • Pyridine, 3-methyl-)

By formula: Na+ + C6H7N = (Na+ • C6H7N)

Quantity Value Units Method Reference Comment
Δr133. ± 4.2kJ/molCIDTRodgers, 2001 

Sodium ion (1+) + Pyridine, 2-methyl- = (Sodium ion (1+) • Pyridine, 2-methyl-)

By formula: Na+ + C6H7N = (Na+ • C6H7N)

Quantity Value Units Method Reference Comment
Δr128. ± 4.6kJ/molCIDTRodgers, 2001 

Sodium ion (1+) + 3-Aminopyridine = (Sodium ion (1+) • 3-Aminopyridine)

By formula: Na+ + C5H6N2 = (Na+ • C5H6N2)

Quantity Value Units Method Reference Comment
Δr136. ± 4.kJ/molCIDTRodgers, 2001, 2 

Sodium ion (1+) + 4-Aminopyridine = (Sodium ion (1+) • 4-Aminopyridine)

By formula: Na+ + C5H6N2 = (Na+ • C5H6N2)

Quantity Value Units Method Reference Comment
Δr146. ± 4.6kJ/molCIDTRodgers, 2001, 2 

Sodium ion (1+) + 2-Aminopyridine = (Sodium ion (1+) • 2-Aminopyridine)

By formula: Na+ + C5H6N2 = (Na+ • C5H6N2)

Quantity Value Units Method Reference Comment
Δr146. ± 5.9kJ/molCIDTRodgers, 2001, 2 

Sodium ion (1+) + Butanediamide = (Sodium ion (1+) • Butanediamide)

By formula: Na+ + C4H8N2O2 = (Na+ • C4H8N2O2)

Quantity Value Units Method Reference Comment
Δr186.kJ/molCIDTKlassen, Anderson, et al., 1996 

Sodium ion (1+) + N,N-Dimethylacetamide = (Sodium ion (1+) • N,N-Dimethylacetamide)

By formula: Na+ + C4H9NO = (Na+ • C4H9NO)

Quantity Value Units Method Reference Comment
Δr157.kJ/molCIDTKlassen, Anderson, et al., 1996 

Sodium ion (1+) + Acetamide, 2-amino- = (Sodium ion (1+) • Acetamide, 2-amino-)

By formula: Na+ + C2H6N2O = (Na+ • C2H6N2O)

Quantity Value Units Method Reference Comment
Δr173.kJ/molCIDTKlassen, Anderson, et al., 1996 

Sodium ion (1+) + Acetamide = (Sodium ion (1+) • Acetamide)

By formula: Na+ + C2H5NO = (Na+ • C2H5NO)

Quantity Value Units Method Reference Comment
Δr145.kJ/molCIDTKlassen, Anderson, et al., 1996 

Sodium ion (1+) + Cytosine = (Sodium ion (1+) • Cytosine)

By formula: Na+ + C4H5N3O = (Na+ • C4H5N3O)

Quantity Value Units Method Reference Comment
Δr177.kJ/molCIDCCerda and Wesdemiotis, 1996 

Sodium ion (1+) + Guanine = (Sodium ion (1+) • Guanine)

By formula: Na+ + C5H5N5O = (Na+ • C5H5N5O)

Quantity Value Units Method Reference Comment
Δr182.kJ/molCIDCCerda and Wesdemiotis, 1996 

Sodium ion (1+) + Acetamide, N-methyl- = (Sodium ion (1+) • Acetamide, N-methyl-)

By formula: Na+ + C3H7NO = (Na+ • C3H7NO)

Quantity Value Units Method Reference Comment
Δr149.kJ/molCIDTKlassen, Anderson, et al., 1996 

References

Go To: Top, Reaction thermochemistry data, Notes

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

Feng, Gronert, et al., 1999
Feng, W.Y.; Gronert, S.; Lebrilla, C.B., Lithium and sodium ion binding energies of N-acetyl and N-glycyl amino acids, J. Am. Chem. Soc., 1999, 121, 6, 1365, https://doi.org/10.1021/ja983116s . [all data]

Cerda, Hoyau, et al., 1998
Cerda, B.A.; Hoyau, S.; Ohanessian, G.; Wesdemiotis, C., PAs of Peptides, J. Am. Chem. Soc., 1998, 120, 2437. [all data]

Amunugama and Rodgers, 2002
Amunugama, R.; Rodgers, M.T., Influence of substituents on cation-pi interactions. 1. Absolute binding energies of alkali metal cation-toluene complexes determined by threshold collision-induced dissociation and theoretical studies, J. Phys. Chem. A, 2002, 106, 22, 5529, https://doi.org/10.1021/jp014307b . [all data]

Huang and Rodgers, 2002
Huang, H.; Rodgers, M.T., Sigma versus Pi interactions in alkali metal ion binding to azoles: Threshold collision-induced dissociation and ab initio theory studies, J. Phys. Chem. A, 2002, 106, 16, 4277, https://doi.org/10.1021/jp013630b . [all data]

More, Ray, et al., 1997
More, M.B.; Ray, D.; Armentrout, P.B., Cation-ether complexes in the gas phase: Bond dissociation energies of Na+(dimethyl ether)(x), x=1-4; Na+(1,2-dimethoxyethane)(x), x=1 and 2; and Na+(12-crown-4), J. Phys. Chem. AJOURNAL OF PHYSICAL CHEMISTRY A 101 (5): 831-839 JAN 30 1997, 1997, 101, 831. [all data]

Amunugama and Rodgers, 2002, 2
Amunugama, R.; Rodgers, M.T., Influence of substituents on cation-pi interactions. 2. Absolute binding energies of alkali metal cation-fluorobenzene complexes determined by threshold collision-induced dissociation and theoretical studies, J. Phys. Chem. A, 2002, 106, 39, 9092, https://doi.org/10.1021/jp020459a . [all data]

Amunugama and Rodgers, 2003
Amunugama, R.; Rodgers, M.T., Influence of substituents on cation-pi interactions - 5. Absolute binding energies of alkali metal cation-anisole complexes determined by threshold collision-induced dissociation and theoretical studies, Int. J. Mass Spectrom., 2003, 222, 1-3, 431, https://doi.org/10.1016/S1387-3806(02)00945-4 . [all data]

Amunugama and Rodgers, 2000
Amunugama, R.; Rodgers, M.T., Absolute Alkali Metal Ion Binding Affinities of Several Azines Determined by Threshold Collision-Induced Dissociation and Ab Initio Theory, Int. J. Mass Spectrom., 2000, 195/196, 439, https://doi.org/10.1016/S1387-3806(99)00145-1 . [all data]

Moision and Armentrout, 2002
Moision, R.M.; Armentrout, P.B., Experimental and Theoretical Dissection of Sodium Cation/Glycine Interactions, J. Phys. Chem A, 2002, 106, 43, 10350, https://doi.org/10.1021/jp0216373 . [all data]

Armentrout and Rodgers, 2000
Armentrout, P.B.; Rodgers, M.T., An Absolute Sodium Cation Affinity Scale: Threshold Collision-Induced Dissociation Experiments and ab Initio Theory, J. Phys. Chem A, 2000, 104, 11, 2238, https://doi.org/10.1021/jp991716n . [all data]

Rodgers and Armentrout, 1999
Rodgers, M.T.; Armentrout, P.B., Absolute Binding Energies of Sodium Ions to Short-Chain Alcohols, CnH2n+2O, n=1-4, Determined by Threshold Collision-Induced Dissociation Experiments and Ab Initio Theory, 1999, 4955. [all data]

Rodgers, 2001
Rodgers, M.T., Substituent Effects in the Binding of Alkali Metal Ions to Pyridines, Studied by Threshold Collision-Induced Dissociation and ab Initio Theory: The Methylpyridines, J. Phys. Chem. A, 2001, 105, 11, 2374, https://doi.org/10.1021/jp004055z . [all data]

Rodgers, 2001, 2
Rodgers, M.T., Substituent Effects in the Binding of Alkali Metal Ions to Pyridines, Studied by Threshold Collision-Induced Dissociation and ab Initio Theory: The Aminopyridines, J. Phys. Chem. A, 2001, 105, 35, 8145, https://doi.org/10.1021/jp011555z . [all data]

Klassen, Anderson, et al., 1996
Klassen, J.S.; Anderson, S.G.; Blades, A.T.; Kebarle, P., Reaction Enthalpies for M+L = M+ + L, Where M+ = Na+ and K+ and L = Acetamide, N-Methylacetamide, N,N-Dimethylacetamide, Glycine, and Glycylglycine, from Determinations of the Collision-Induced Dissociation Thresholds, J. Phys. Chem., 1996, 100, 33, 14218, https://doi.org/10.1021/jp9608382 . [all data]

Cerda and Wesdemiotis, 1996
Cerda, B.A.; Wesdemiotis, C., PAs of Peptides, J. Am. Chem. Soc., 1996, 118, 11884. [all data]


Notes

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