Formamide, N,N-dimethyl-
Formula : C3 H7 NO
Molecular weight : 73.0938
IUPAC Standard InChI:
InChI=1S/C3H7NO/c1-4(2)3-5/h3H,1-2H3
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IUPAC Standard InChIKey:
ZMXDDKWLCZADIW-UHFFFAOYSA-N
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CAS Registry Number: 68-12-2
Chemical structure:
This structure is also available as a 2d Mol file
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Other names:
Dimethylformamide;
DMF;
DMF (amide);
DMFA;
N-Formyldimethylamine;
N,N-Dimethylformamide;
HCON(CH3)2;
Formyldimethylamine;
Dimethylforamide;
Dimethylformamid;
Dimetilformamide;
Dwumetyloformamid;
N,N-Dimethylmethanamide;
NSC-5356;
U-4224;
Dimethylamid kyseliny mravenci;
Dimetylformamidu;
NCI-C60913;
UN 2265;
DMF (dimethylformamide);
N,N-Dimethylformaldehyde
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Reaction thermochemistry data
Go To: Top , Ion clustering 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 as indicated in comments:
B - John E. Bartmess
M - Michael M. Meot-Ner (Mautner) and Sharon G. Lias
RCD - 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.
Individual Reactions
C7 H7 NO3 - + = ( C7 H7 NO3 - • )
By formula: C7 H7 NO3 - + C3 H7 NO = ( C7 H7 NO3 - • C3 H7 NO )
Free energy of reaction
C6 H5 NO2 - + = ( C6 H5 NO2 - • )
By formula: C6 H5 NO2 - + C3 H7 NO = ( C6 H5 NO2 - • C3 H7 NO )
Free energy of reaction
C7 H4 N2 O2 - + = ( C7 H4 N2 O2 - • )
By formula: C7 H4 N2 O2 - + C3 H7 NO = ( C7 H4 N2 O2 - • C3 H7 NO )
Free energy of reaction
C6 H4 FNO2 - + = ( C6 H4 FNO2 - • )
By formula: C6 H4 FNO2 - + C3 H7 NO = ( C6 H4 FNO2 - • C3 H7 NO )
Free energy of reaction
C6 H4 FNO2 - + = ( C6 H4 FNO2 - • )
By formula: C6 H4 FNO2 - + C3 H7 NO = ( C6 H4 FNO2 - • C3 H7 NO )
Free energy of reaction
C6 H4 FNO2 - + = ( C6 H4 FNO2 - • )
By formula: C6 H4 FNO2 - + C3 H7 NO = ( C6 H4 FNO2 - • C3 H7 NO )
Free energy of reaction
C7 H7 NO3 - + = ( C7 H7 NO3 - • )
By formula: C7 H7 NO3 - + C3 H7 NO = ( C7 H7 NO3 - • C3 H7 NO )
Free energy of reaction
C7 H7 NO2 - + = ( C7 H7 NO2 - • )
By formula: C7 H7 NO2 - + C3 H7 NO = ( C7 H7 NO2 - • C3 H7 NO )
Free energy of reaction
C6 H4 N2 O4 - + = ( C6 H4 N2 O4 - • )
By formula: C6 H4 N2 O4 - + C3 H7 NO = ( C6 H4 N2 O4 - • C3 H7 NO )
Free energy of reaction
C6 H4 N2 O4 - + = ( C6 H4 N2 O4 - • )
By formula: C6 H4 N2 O4 - + C3 H7 NO = ( C6 H4 N2 O4 - • C3 H7 NO )
Free energy of reaction
C7 H7 NO2 - + = ( C7 H7 NO2 - • )
By formula: C7 H7 NO2 - + C3 H7 NO = ( C7 H7 NO2 - • C3 H7 NO )
Free energy of reaction
C6 F4 O2 - + = ( C6 F4 O2 - • )
By formula: C6 F4 O2 - + C3 H7 NO = ( C6 F4 O2 - • C3 H7 NO )
Free energy of reaction
+ = ( • )
By formula: C6 H4 O2 - + C3 H7 NO = ( C6 H4 O2 - • C3 H7 NO )
Free energy of reaction
C7 H4 N2 O2 - + = ( C7 H4 N2 O2 - • )
By formula: C7 H4 N2 O2 - + C3 H7 NO = ( C7 H4 N2 O2 - • C3 H7 NO )
Free energy of reaction
+ = ( • )
By formula: K+ + C3 H7 NO = ( K+ • C3 H7 NO )
C7 H4 N2 O2 - + = ( C7 H4 N2 O2 - • )
By formula: C7 H4 N2 O2 - + C3 H7 NO = ( C7 H4 N2 O2 - • C3 H7 NO )
Free energy of reaction
C7 H4 F3 NO2 - + = ( C7 H4 F3 NO2 - • )
By formula: C7 H4 F3 NO2 - + C3 H7 NO = ( C7 H4 F3 NO2 - • C3 H7 NO )
Free energy of reaction
+ = ( • )
By formula: Na+ + C3 H7 NO = ( Na+ • C3 H7 NO )
Free energy of reaction
C3 H6 NO- + =
By formula: C3 H6 NO- + H+ = C3 H7 NO
+ = ( • )
By formula: Li+ + C3 H7 NO = ( Li+ • C3 H7 NO )
( • 2 ) + = ( • 3 )
By formula: ( K+ • 2 C3 H7 NO ) + C3 H7 NO = ( K+ • 3 C3 H7 NO )
Quantity
Value
Units
Method
Reference
Comment
Δr H° 15. kcal/mol HPMS Sunner, 1984 gas phase; M
Quantity
Value
Units
Method
Reference
Comment
Δr S° 18. cal/mol*K HPMS Sunner, 1984 gas phase; M
( • 3 ) + = ( • 4 )
By formula: ( K+ • 3 C3 H7 NO ) + C3 H7 NO = ( K+ • 4 C3 H7 NO )
Quantity
Value
Units
Method
Reference
Comment
Δr H° 13. kcal/mol HPMS Sunner, 1984 gas phase; M
Quantity
Value
Units
Method
Reference
Comment
Δr S° 24. cal/mol*K HPMS Sunner, 1984 gas phase; M
( • ) + = ( • 2 )
By formula: ( K+ • C3 H7 NO ) + C3 H7 NO = ( K+ • 2 C3 H7 NO )
Quantity
Value
Units
Method
Reference
Comment
Δr H° 21. kcal/mol HPMS Sunner, 1984 gas phase; M
Quantity
Value
Units
Method
Reference
Comment
Δr S° 20. cal/mol*K HPMS Sunner, 1984 gas phase; M
Ion clustering data
Go To: Top , Reaction 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 compiled as indicated in comments:
B - John E. Bartmess
M - Michael M. Meot-Ner (Mautner) and Sharon G. Lias
RCD - Robert C. Dunbar
Note: Please consider using the
reaction search for this species. This page allows searching
of all reactions involving this species. Searches may be limited
to ion clustering reactions. A general reaction search form is
also available .
Clustering reactions
C6 F4 O2 - + = ( C6 F4 O2 - • )
By formula: C6 F4 O2 - + C3 H7 NO = ( C6 F4 O2 - • C3 H7 NO )
Free energy of reaction
C6 H4 FNO2 - + = ( C6 H4 FNO2 - • )
By formula: C6 H4 FNO2 - + C3 H7 NO = ( C6 H4 FNO2 - • C3 H7 NO )
Free energy of reaction
C6 H4 FNO2 - + = ( C6 H4 FNO2 - • )
By formula: C6 H4 FNO2 - + C3 H7 NO = ( C6 H4 FNO2 - • C3 H7 NO )
Free energy of reaction
C6 H4 FNO2 - + = ( C6 H4 FNO2 - • )
By formula: C6 H4 FNO2 - + C3 H7 NO = ( C6 H4 FNO2 - • C3 H7 NO )
Free energy of reaction
C6 H4 N2 O4 - + = ( C6 H4 N2 O4 - • )
By formula: C6 H4 N2 O4 - + C3 H7 NO = ( C6 H4 N2 O4 - • C3 H7 NO )
Free energy of reaction
C6 H4 N2 O4 - + = ( C6 H4 N2 O4 - • )
By formula: C6 H4 N2 O4 - + C3 H7 NO = ( C6 H4 N2 O4 - • C3 H7 NO )
Free energy of reaction
+ = ( • )
By formula: C6 H4 O2 - + C3 H7 NO = ( C6 H4 O2 - • C3 H7 NO )
Free energy of reaction
C6 H5 NO2 - + = ( C6 H5 NO2 - • )
By formula: C6 H5 NO2 - + C3 H7 NO = ( C6 H5 NO2 - • C3 H7 NO )
Free energy of reaction
C7 H4 F3 NO2 - + = ( C7 H4 F3 NO2 - • )
By formula: C7 H4 F3 NO2 - + C3 H7 NO = ( C7 H4 F3 NO2 - • C3 H7 NO )
Free energy of reaction
C7 H4 N2 O2 - + = ( C7 H4 N2 O2 - • )
By formula: C7 H4 N2 O2 - + C3 H7 NO = ( C7 H4 N2 O2 - • C3 H7 NO )
Free energy of reaction
C7 H4 N2 O2 - + = ( C7 H4 N2 O2 - • )
By formula: C7 H4 N2 O2 - + C3 H7 NO = ( C7 H4 N2 O2 - • C3 H7 NO )
Free energy of reaction
C7 H4 N2 O2 - + = ( C7 H4 N2 O2 - • )
By formula: C7 H4 N2 O2 - + C3 H7 NO = ( C7 H4 N2 O2 - • C3 H7 NO )
Free energy of reaction
C7 H7 NO2 - + = ( C7 H7 NO2 - • )
By formula: C7 H7 NO2 - + C3 H7 NO = ( C7 H7 NO2 - • C3 H7 NO )
Free energy of reaction
C7 H7 NO2 - + = ( C7 H7 NO2 - • )
By formula: C7 H7 NO2 - + C3 H7 NO = ( C7 H7 NO2 - • C3 H7 NO )
Free energy of reaction
C7 H7 NO3 - + = ( C7 H7 NO3 - • )
By formula: C7 H7 NO3 - + C3 H7 NO = ( C7 H7 NO3 - • C3 H7 NO )
Free energy of reaction
C7 H7 NO3 - + = ( C7 H7 NO3 - • )
By formula: C7 H7 NO3 - + C3 H7 NO = ( C7 H7 NO3 - • C3 H7 NO )
Free energy of reaction
+ = ( • )
By formula: K+ + C3 H7 NO = ( K+ • C3 H7 NO )
( • ) + = ( • 2 )
By formula: ( K+ • C3 H7 NO ) + C3 H7 NO = ( K+ • 2 C3 H7 NO )
Quantity
Value
Units
Method
Reference
Comment
Δr H° 21. kcal/mol HPMS Sunner, 1984 gas phase; M
Quantity
Value
Units
Method
Reference
Comment
Δr S° 20. cal/mol*K HPMS Sunner, 1984 gas phase; M
( • 2 ) + = ( • 3 )
By formula: ( K+ • 2 C3 H7 NO ) + C3 H7 NO = ( K+ • 3 C3 H7 NO )
Quantity
Value
Units
Method
Reference
Comment
Δr H° 15. kcal/mol HPMS Sunner, 1984 gas phase; M
Quantity
Value
Units
Method
Reference
Comment
Δr S° 18. cal/mol*K HPMS Sunner, 1984 gas phase; M
( • 3 ) + = ( • 4 )
By formula: ( K+ • 3 C3 H7 NO ) + C3 H7 NO = ( K+ • 4 C3 H7 NO )
Quantity
Value
Units
Method
Reference
Comment
Δr H° 13. kcal/mol HPMS Sunner, 1984 gas phase; M
Quantity
Value
Units
Method
Reference
Comment
Δr S° 24. cal/mol*K HPMS Sunner, 1984 gas phase; M
+ = ( • )
By formula: Li+ + C3 H7 NO = ( Li+ • C3 H7 NO )
+ = ( • )
By formula: Na+ + C3 H7 NO = ( Na+ • C3 H7 NO )
Free energy of reaction
References
Go To: Top , Reaction thermochemistry data , Ion clustering data , Notes
Data compilation copyright
by the U.S. Secretary of Commerce on behalf of the U.S.A.
All rights reserved.
Chowdhury, Grimsrud, et al., 1987
Chowdhury, S. ; Grimsrud, E.P. ; Kebarle, P. ,
Bonding of Charged Delocalized Anions to Protic and Dipolar Aprotic Solvent Molecules ,
J. Phys. Chem. , 1987, 91, 10, 2551, https://doi.org/10.1021/j100294a021
. [all data ]
Chowdhury, 1987
Chowdhury, S. Grimsrud ,
Bonding of Charge Delocalized Anions to Protic and Dipolar Aprotic Solvents ,
J. Phys. Chem. , 1987, 91, 10, 2551, https://doi.org/10.1021/j100294a021
. [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 ]
Sunner, 1984
Sunner, J. Kebarle ,
Ion - Solvent Molecule Interactions in the Gas Phase. The Potassium Ion and Me2SO, DMA, DMF, and Acetone ,
J. Am. Chem. Soc. , 1984, 106, 21, 6135, https://doi.org/10.1021/ja00333a002
. [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 ]
McMahon and Ohanessian, 2000
McMahon, T.B. ; Ohanessian, G. ,
An Experimental and Ab Initio Study of the Nature of the Binding in Gas-Phase Complexes of Sodium Ions ,
Chem. Eur. J. , 2000, 6, 16, 2931, https://doi.org/10.1002/1521-3765(20000818)6:16<2931::AID-CHEM2931>3.0.CO;2-7
. [all data ]
DePuy, Grabowski, et al., 1985
DePuy, C.H. ; Grabowski, J.J. ; Bierbaum, V.M. ; Ingemann, S. ; Nibbering, N.M.M. ,
Gas-phase reactions of anions with methyl formate and N,N-dimethylformamide ,
J. Am. Chem. Soc. , 1985, 107, 1093. [all data ]
Staley and Beauchamp, 1975
Staley, R.H. ; Beauchamp, J.L. ,
Intrinsic Acid - Base Properties of Molecules. Binding Energies of Li+ to pi - and n - Donor Bases ,
J. Am. Chem. Soc. , 1975, 97, 20, 5920, https://doi.org/10.1021/ja00853a050
. [all data ]
Dzidic and Kebarle, 1970
Dzidic, I. ; Kebarle, P. ,
Hydration of the Alkali Ions in the Gas Phase. Enthalpies and Entropies of Reactions M+(H2O)n-1 + H2O = M+(H2O)n ,
J. Phys. Chem. , 1970, 74, 7, 1466, https://doi.org/10.1021/j100702a013
. [all data ]
Notes
Go To: Top , Reaction thermochemistry data , Ion clustering data , References
Symbols used in this document:
T
Temperature
Δr G°
Free energy of reaction at standard conditions
Δr H°
Enthalpy of reaction at standard conditions
Δr S°
Entropy of reaction at standard conditions
Data from NIST Standard Reference Database 69:
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