Synthesis and Self-Association Properties of Flexible
Guanidiniocarbonylpyrrole−Carboxylate Zwitterions in DMSO:
Intra- versus Intermolecular Ion Pairing
Posted on 2007-08-03 - 00:00
We have synthesized a new class of flexible zwitterions 6a−e, in which a carboxylate is linked via an
alkyl chain with variable length (one to five methylene groups) to a guanidiniocarbonylpyrrole cation.
The self-association properties of these zwitterions were determined by NMR dilution studies in DMSO
and by ESI-MS experiments. The stability and hence also the size of the aggregates formed via self-assembly is critically dependent on the length and therefore flexibility of the spacer. Whereas the smallest
zwitterion 6a forms large aggregates already at low concentrations, the more flexible zwitterions only
form small oligomers (6b) or dimers (6c−e) at much larger concentrations. The differences between the
five zwitterions can be explained based on the different extent of intramolecular ion pairing within the
monomers. Any intramolecular ion pairing, which becomes possible with increasing linker length, stabilizes
the monomer and therefore destabilizes any oligomer.
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Schmuck, Carsten; Rehm, Thomas; Geiger, Lars; Schäfer, Mathias (2016). Synthesis and Self-Association Properties of Flexible
Guanidiniocarbonylpyrrole−Carboxylate Zwitterions in DMSO:
Intra- versus Intermolecular Ion Pairing. ACS Publications. Collection. https://doi.org/10.1021/jo070641d