Issue 1, 2011

Anion tuning of the rheology, morphology and gelation of a low molecular weight salt hydrogelator

Abstract

1-(3-Methyl-1H-pyrazol-5-yl)-3-(3-nitrophenyl)urea (1) forms hydrogels in a range of acids at pH 1–2. The morphology and rheology of these gels are dependent on the identity of the anion and represent a way of tuning the gels' physical properties. The magnitude of the elastic storage modulus of the gels follows the trend according to the acid used to protonate the gelator H2SO4 > MePO3H2 > H3PO4 ≈ HBF4 ≈ HPF6 > EtPO3H2. Chloride salts do not form gels and the nitrate gels are unstable with respect to crystallisation. Salting out or addition of methanol results in the characterisation of five salts of 1 which reveals extensive solvation in the solid state and the absence of urea⋯urea hydrogen bonding in contrast to the well known bis(urea) gelators.

Graphical abstract: Anion tuning of the rheology, morphology and gelation of a low molecular weight salt hydrogelator

Supplementary files

Article information

Article type
Paper
Submitted
29 Jun 2010
Accepted
07 Sep 2010
First published
30 Sep 2010

Soft Matter, 2011,7, 75-84

Anion tuning of the rheology, morphology and gelation of a low molecular weight salt hydrogelator

G. O. Lloyd and J. W. Steed, Soft Matter, 2011, 7, 75 DOI: 10.1039/C0SM00594K

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