4.7 Article

Microcrystalline solid-solid transformations of conformationally-responsive solvates, desolvates and a salt of N,N′-(1,4-phenylene)dioxalamic acid: the energetics of hydrogen bonding and n/π → π* interactions

期刊

CRYSTENGCOMM
卷 24, 期 5, 页码 1017-1034

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1ce01504d

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资金

  1. CONACYT [255354, 316892]
  2. Secretaria de Investigacion y Posgrado del Instituto Politecnico Nacional (SIP-IPN) [20211070, 20201274]
  3. CONACYT Red Tematica de Quimica Supramolecular Grant [271884]
  4. CGIC-UC (Coordinacion General de Investigacion Cientifica de la Universidad de Colima)
  5. PROMEP-SEP

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This work describes the molecular and supramolecular structures of oxalamic acid derivatives and their interactions with different solvents. The polymorphism and stability of these derivatives are explored using computational methods and experimental techniques. The results show that the crystallized solvents play a crucial role in determining the conformation of the derivatives through hydrogen bonding and molecular interactions. This study provides important insights into the understanding and application of oxalamic acid derivatives in crystal engineering and molecular recognition.
Oxalamic acid derivatives are model molecules used in crystal engineering and molecular recognition both in solution and in the solid state. Despite their growing importance, hardly any information on polymorphism, stability and interrelations of their solid forms can be found in the literature. In this work, the molecular and supramolecular structures of three cocrystal solvates of formula H(2)pOx center dot 2S (S = DMSO, DMF, 1/3(MeOH center dot 2W); W = H2O) and the dimethylammonium salt of N,N '-(1,4-phenylene)dioxalamic acid (H(2)pOx) are described. The nature and energetics of non-covalent interactions were explored through computational methods including the evaluation of the Hirshfeld surface, two-dimensional fingerprint plots, energy-framework diagrams and crystal lattice energies. The X-ray structural parameters were correlated with experimental solid state IR, C-13-CPMAS, thermal analysis and SEM to elucidate the unknown molecular and supramolecular structures of two hydromorphs and three desolvated polymorphs of H(2)pOx. The role of the crystallized solvents was demonstrated to fix the conformation of H(2)pOx through hydrogen bonding and n/pi -> pi* interactions, favoring the sp-ap conformation to fit the shape of the solvent. The interconversion pathways between the ten solid phases of H(2)pOx were stablished, relying on the crystal size and temperature to yield a specific solvent-free polymorph.

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