Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5160746 | Journal of Molecular Structure | 2017 | 6 Pages |
Abstract
The title compounds, X(CH2COOH)2(CH2COO), X = S, 1, and X = Se, 2, have been characterised by FTIR, NMR and MS and by their crystal structures at 123(2) K. The FTIR spectra show two major peaks, at 1396 and 1731 cmâ1 in 1 and at 1390 and 1721 cmâ1 in 2. The 77Se NMR signal of 2 at 325.5 ppm is 83.4 ppm downfield from the signal of Se(CH2COOH)2 indicating a substantial selenonium character of 2. The two compounds are isostructural and have a pyramidal configuration. The C-X-C bond angles range from 99.29 to 103.14° in 1 and from 97.56 to 99.87° in 2. The XCCO torsion angles for the three substituents are most different; one of the carboxylic acid groups attains the anti-conformation with rather short Sâ¯O(H) and Seâ¯O(H) distances, 2.744 and 2.750 Ã
, the other acid group is synclinal and with longer Sâ¯OC and Seâ¯OC distances, 3.063 and 3.090 Ã
, whereas the carboxylate group is in the XCC plane with Xâ¯OC distances of 2.869 and 2.908 Ã
in 1 and 2. The presence of these strong Xâ¯O interactions is suggested to be the cause for the very low Bronsted basicity of this class of betaines preventing salts of the corresponding acids, the presently unknown [X(CH2COOH)3]+ - cations, to be isolated. The molecules are linked together with two fairly strong but different hydrogen bonds to the carboxylate oxygen atoms with Oâ¯O distances of 2.493 and 2.580 Ã
in 1 and 2.489 and 2.581Â Ã
in 2 and with one Xâ¯OC contact, 3.244 Ã
in 1 and 3.209Â Ã
in 2. The carbonyl oxygen atoms do not participate significantly in intermolecular hydrogen bonding and there are no contacts between the heteroatoms.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Organic Chemistry
Authors
Khalid Doudin, Karl W. Törnroos,