Structural Rationalisation of Co‐crystals Formed between Trithiocyanuric Acid and Molecules Containing Hydrogen Bonding Functionality
Chemistry - A European Journal 11(8): 2433-2439
Article 2005 English
Authors
SA
Shinbyoung Ahn
JP
J. PrakashaReddy
BK
Benson M. Kariuki
Abstract
1 min read
Crystallisation of trithiocyanuric acid (TTCA) from various organic solvents that have hydrogen bonding capability (acetone, 2-butanone, dimethylformamide, dimethyl sulfoxide, methanol and acetonitrile) leads to the formation of co-crystals in which the solvent molecules are incorporated together with TTCA in the crystal structure. Structure determination by single-crystal X-ray diffraction reveals that these co-crystals can be classified into different groups depending upon the topological arrangement of the TTCA molecules in the crystal structure. Thus, three different types of single-tape arrangements of TTCA molecules and one type of double-tape arrangement of TTCA molecules are identified. In all co-crystals, hydrogen-bonding interactions are formed through the involvement of N-H bonds of TTCA molecules in these tapes and the other molecule in the co-crystal. Detailed rationalisation of the structural properties of these co-crystals is presented.
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