Brightening and Locking a Weak and Floppy N-H Chromophore: The Case of Pyrrolidine

2010 | journal article. A publication of Göttingen

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​Brightening and Locking a Weak and Floppy N-H Chromophore: The Case of Pyrrolidine​
Hesse, S.; Wassermann, T. N. & Suhm, M. A. ​ (2010) 
The Journal of Physical Chemistry A114(39) pp. 10492​-10499​.​ DOI: https://doi.org/10.1021/jp105517b 

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Authors
Hesse, Susanne; Wassermann, Tobias N.; Suhm, Martin A. 
Abstract
The N-H stretching signature of the puckering equilibrium between equatorial and axial pyrrolidine is analyzed via FUR and Raman spectroscopy in supersonic jets as a function of aggregation. Vibrational temperatures along the expansion axis can be extracted from the Raman spectra and allow for a localization of the compression shock waves. While the equatorial conformation is more stable in the ground state monomer, this preference is probably switched in the excited state with one N-H stretching quantum. Furthermore, the dominant dimer involves an axial donor and the trimer and tetramer structures seem to prefer uniform axial conformations. The IR intensity is boosted by up to 3 orders of magnitude upon aggregation, whereas the Raman scattering intensity shows only moderate hydrogen bond effects. B3LYP and MP2 calculations provide a reasonable description of the N-H vibrational dynamics under the influence of self-aggregation. In mixed dimers with pyrrole, pyrrolidine assumes the role of a hydrogen bond acceptor.
Issue Date
2010
Status
published
Publisher
Amer Chemical Soc
Journal
The Journal of Physical Chemistry A 
Organization
Institut für Physikalische Chemie 
ISSN
1089-5639
Sponsor
Fonds der Chemischen Industrie and the DFG [Su 121/2, GRK 782]

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