We apply crystal engineering principles to prepare organic co-crystals and salts of sulfadiazine and pyridines. Pyridines are molecular building blocks utilized in crystal engineering that can disrupt the hydrogen bonded (amidine) N–H···N (pyrimidine) dimer within the parent sulfa drug (SD) crystals, while providing access to both co-crystals and salts. We have synthesized four co-crystals and three salts of sulfadiazine involving <i>N</i>,<i>N</i>-dimethyl-4-aminopyridine, 4-aminopyridine, 4-picoline, 4,4′-bipyridine, (<i>E</i>)-1,2-bis(4-pyridyl)ethylene, 1,2-bis(4-pyridyl)acetylene, and 4-(pyridin-4-yl)piperazine. Single-crystal X-ray analyses reveal three hydrogen-bond motifs, namely, dyads, rings, and chains based involving either...
R factor = 0.037; wR factor = 0.093; data-to-parameter ratio = 13.6. In the asymmetric unit of the t...
The sulfathiazole molecule in the title 1:1 co-crystal, C9H9N3O2S2·C18H12N6, adopts an approximate L...
Synthon robustness or lack of structural interference is a sought after goal in crystal engineering....
We apply crystal engineering principles to prepare organic co-crystals and salts of sulfadiazine and...
Thesis (MTech (Chemistry))--Cape Peninsula University of Technology, 2017.Crystal engineering princi...
Sulfadimethoxine (SDM) cocrystal formation was screened using coformers with cyclic amines, amide, c...
Despite the widespread occurrence of pyridinesulfonic acid and pyridinesulfonamide functional groups...
Seven crystal structures of pyromellitic acid or trimesic acid salts of molecules that contain pyrid...
Ten salts assembled by arenedisulfonic acid with hydrazine, flexible aliphatic diamines, rigid and s...
0.044; wR factor = 0.087; data-to-parameter ratio = 15.9. The sulfathiazole molecule in the title 1:...
R factor = 0.066; wR factor = 0.141; data-to-parameter ratio = 16.9. In the crystal structure of the...
Experimentally identified unique crystal forms (polymorphs, solvates, and molecular complexes) of a ...
The title molecular salt, C5H6N3O2+ ·H2NO3S−, was obtained from the reaction of sulfamic acid with 2...
With the help of robust principles of crystal engineering, it is possible to construct co-crystals w...
Crystallization of carboxylic acids with molecules containing complementary hydrogen bonding groups,...
R factor = 0.037; wR factor = 0.093; data-to-parameter ratio = 13.6. In the asymmetric unit of the t...
The sulfathiazole molecule in the title 1:1 co-crystal, C9H9N3O2S2·C18H12N6, adopts an approximate L...
Synthon robustness or lack of structural interference is a sought after goal in crystal engineering....
We apply crystal engineering principles to prepare organic co-crystals and salts of sulfadiazine and...
Thesis (MTech (Chemistry))--Cape Peninsula University of Technology, 2017.Crystal engineering princi...
Sulfadimethoxine (SDM) cocrystal formation was screened using coformers with cyclic amines, amide, c...
Despite the widespread occurrence of pyridinesulfonic acid and pyridinesulfonamide functional groups...
Seven crystal structures of pyromellitic acid or trimesic acid salts of molecules that contain pyrid...
Ten salts assembled by arenedisulfonic acid with hydrazine, flexible aliphatic diamines, rigid and s...
0.044; wR factor = 0.087; data-to-parameter ratio = 15.9. The sulfathiazole molecule in the title 1:...
R factor = 0.066; wR factor = 0.141; data-to-parameter ratio = 16.9. In the crystal structure of the...
Experimentally identified unique crystal forms (polymorphs, solvates, and molecular complexes) of a ...
The title molecular salt, C5H6N3O2+ ·H2NO3S−, was obtained from the reaction of sulfamic acid with 2...
With the help of robust principles of crystal engineering, it is possible to construct co-crystals w...
Crystallization of carboxylic acids with molecules containing complementary hydrogen bonding groups,...
R factor = 0.037; wR factor = 0.093; data-to-parameter ratio = 13.6. In the asymmetric unit of the t...
The sulfathiazole molecule in the title 1:1 co-crystal, C9H9N3O2S2·C18H12N6, adopts an approximate L...
Synthon robustness or lack of structural interference is a sought after goal in crystal engineering....