Journal of Physical Chemistry A: Molecules, Spectroscopy, Kinetics, Environment and General Theory 2008-08-21

Elementary peptide motifs in the gas phase: FTIR aggregation study of formamide, acetamide, N-methylformamide, and N-methylacetamide.

Merwe Albrecht, Corey A Rice, Martin A Suhm

Index: J. Phys. Chem. A 112(33) , 7530-42, (2008)

Full Text: HTML

Abstract

Cold, isolated peptide model compounds and their aggregates are generated in pulsed supersonic jet expansions and detected by FTIR spectroscopy in the amide-A region, complemented by amide-I spectra. The most stable, symmetric dimer of formamide is unambiguously assigned in the gas phase for the first time, also by comparison to the analogous acetamide dimer. Efficient quenching of a hot-state Fermi resonance by cooling of the dimers is invoked. As the preferred relative orientation of the C=O and N-H groups in N-methylated formamide and acetamide is trans, these compounds show a fundamentally different dimerization pattern. Their most stable dimers, which would be analogous to those of formamide and acetamide, remain undetected as a consequence of kinetic control in the jet. Accurate benchmark quantities for multidimensional vibrational treatments of these peptide models are derived, and the influence of methyl groups on the N-H stretching dynamics is discussed.


Related Compounds

Related Articles:

Surface-enhanced resonance Raman scattering nanostars for high-precision cancer imaging.

2015-01-21

[Sci. Transl. Med. 7(271) , 271ra7, (2015)]

Mitochondrial DNA alterations in blood of the humans exposed to N,N-dimethylformamide.

2007-02-20

[Chem. Biol. Interact. 165(3) , 211-9, (2007)]

Amidic and acetonic cryoprotectants improve cryopreservation of volvocine green algae.

2012-01-01

[Cryo. Letters 33(3) , 202-13, (2012)]

N-methylformamide: antitumour activity and metabolism in mice.

1982-06-01

[Br. J. Cancer 45(6) , 843-50, (1982)]

Use of N-methylformamide as a solvent in indium-promoted Barbier reactions en route to enediyne and epoxy diyne formation: comparison of rate and stereoselectivity in C-C bond-forming reactions with water.

2009-08-21

[J. Org. Chem. 74(16) , 5861-70, (2009)]

More Articles...