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Solid state forms of 4-aminoquinaldine - From void structures with and without solvent inclusion to close packing.


ABSTRACT: Polymorphs of 4-aminoquinaldine (4-AQ) have been predicted in silico and experimentally identified and characterised. The two metastable forms, AH (anhydrate) II and AH III, crystallise in the trigonal space group [Formula: see text] and are less densely packed than the thermodynamically most stable phase AH I° (P21/c ). AH II can crystallise and exist both, as a solvent inclusion compound and as an unsolvated phase. The third polymorph, AH III, is exclusively obtained by desolvation of a carbon tetrachloride solvate. Theoretical calculations correctly estimated the experimental 0K stability order, confirmed that AH II can exist without solvents, gave access to the AH III structure, and identified that there exists a subtle balance between close packing and number of hydrogen bonding interactions in the solid state of anhydrous 4-AQ. Furthermore, the prevalence of void space and solvent inclusion in [Formula: see text] structures is discussed.

SUBMITTER: Braun DE 

PROVIDER: S-EPMC4693969 | biostudies-literature | 2015 Mar

REPOSITORIES: biostudies-literature

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Solid state forms of 4-aminoquinaldine - From void structures with and without solvent inclusion to close packing.

Braun Doris E DE   Gelbrich Thomas T   Kahlenberg Volker V   Griesser Ulrich J UJ  

CrystEngComm 20150301 12


Polymorphs of 4-aminoquinaldine (<b>4-AQ</b>) have been predicted in silico and experimentally identified and characterised. The two metastable forms, <b>AH</b> (anhydrate) <b>II</b> and <b>AH III</b>, crystallise in the trigonal space group [Formula: see text] and are less densely packed than the thermodynamically most stable phase <b>AH I°</b> (<i>P</i>2<sub>1/<i>c</i></sub> ). <b>AH II</b> can crystallise and exist both, as a solvent inclusion compound and as an unsolvated phase. The third po  ...[more]

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