The co-crystallization of (benzylthio)acetic acid (HBTA) with L-proline (L-PRO), D-proline (D-PRO), DL-proline (DL-PRO), isonicotinamide (INA) and tryptamine (TPA) led to the formation of five novel crystalline compounds: L-PRO·HBTA (), D-PRO·HBTA (), DL-PRO·HBTA (), INA·HBTA () and TPA·BTA (). The prepared supramolecular assemblies were characterized by single crystal X-ray diffraction, an elemental analysis, FT-IR spectroscopy and a thermal analysis based on thermogravimetry (TG) combined with differential scanning calorimetry (DSC). Additionally, their melting points through TG/DSC measurements were established. All fabricated adducts demonstrated the same stoichiometry, displayed as 1:1. The integration of HBTA with selected N-containing co-formers yielded different forms of multi-component crystalline phases: zwitterionic co-crystals (-), true co-crystal () or true salt (). In the asymmetric units of -, the acidic ingredient is protonated, whereas the corresponding N-containing entities take either the zwitterionic form (-) or remain in the original neutral figure (). The molecular structure of complex is occupied by the real ionic forms of both components, namely the (benzylthio)acetate anion (BTA) and the tryptaminium cation (TPA). In crystals -, the respective molecular residues are permanently bound to each other via strong H-bonds provided by the following pairs of donor···acceptor: O···O and N···O in -, O···N and N···O in as well as N···O and N···O in . The crystal structures of conglomerates - are also stabilized by numerous weaker intermolecular contacts, including C-H···O (-, ), C-H···S (, , ), C-H···N (), C-H···C (), C-H···π (-) as well as π···π () interactions. The different courses of registered FT-IR spectral traces and thermal profiles for materials - in relation to their counterparts, gained for the pure molecular ingredients, also clearly confirm the formation of new crystalline phases.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9740739PMC
http://dx.doi.org/10.3390/molecules27238203DOI Listing

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The co-crystallization of (benzylthio)acetic acid (HBTA) with L-proline (L-PRO), D-proline (D-PRO), DL-proline (DL-PRO), isonicotinamide (INA) and tryptamine (TPA) led to the formation of five novel crystalline compounds: L-PRO·HBTA (), D-PRO·HBTA (), DL-PRO·HBTA (), INA·HBTA () and TPA·BTA (). The prepared supramolecular assemblies were characterized by single crystal X-ray diffraction, an elemental analysis, FT-IR spectroscopy and a thermal analysis based on thermogravimetry (TG) combined with differential scanning calorimetry (DSC). Additionally, their melting points through TG/DSC measurements were established.

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DFT approach to (benzylthio)acetic acid: Conformational search, molecular (monomer and dimer) structure, vibrational spectroscopy and some electronic properties.

Spectrochim Acta A Mol Biomol Spectrosc

January 2018

Department of General and Coordination Chemistry, Faculty of Chemistry, Maria Curie-Skłodowska University, M.C. Skłodowska Sq. 2, 20-031 Lublin, Poland. Electronic address:

The DFT studies were carried out with the B3LYP method utilizing the 6-31G and 6-311++G(d,p) basis sets depending on whether the aim of calculations was to gain the geometry at equilibrium, or to calculate the optimized molecular structure of (benzylthio)acetic acid (Hbta) in the forms of monomer and dimer. The minimum conformational energy search was followed by the potential energy surface (PES) scan of all rotary bonds existing in the acid molecule. The optimized geometrical monomeric and dimeric structures of the title compound were compared with the experimental structural data in the solid state.

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