A Dual Approach on Experimental, Theoretical Insight of Structural Elucidation, Hirshfeld Surface Analysis, Optical and Electrochemical Properties of Acyl Thiourea-Ethynyl Hybrid Derivatives.

J Chem Crystallogr

CEQUINOR (UNLP, CONICET-CCT La Plata), Departamento de Química, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, Bv 120 N 1465, La Plata, República Argentina.

Published: March 2022

AI Article Synopsis

  • - Two hybrid compounds, Th1 and Th2, were created by reacting ethynyl derivatives with 4-butylbenzoyl isothiocyanate, and they were characterized using techniques like NMR, UV-visible spectroscopy, FT-IR, and elemental analysis.
  • - Thermal stability tests showed that Th1 and Th2 remain stable up to 210 °C, and X-ray diffraction helped determine the crystal structure of Th2, highlighting significant hydrogen bonding interactions.
  • - Electrochemical analyses revealed that both compounds have irreversible redox processes, and computational studies indicated a strong delocalization of electronic density in their molecular structures, involving a conjugated π-system.

Article Abstract

Unlabelled: Hybrid moieties of ethynylated-thiourea, Th1 and Th2 have been synthesised via the addition reaction between ethynyl derivatives and 4--butylbenzoyl isothiocyanate in acetone, and were characterised by selected spectroscopic methods (i.e., H and C NMR, UV-visible, FT-IR) and elemental analysis. Thermogravimetric analysis indicated that Th1 and Th2 were relatively stable up to 210 °C. Single-crystal X-ray diffraction was used to identify the crystal structure of Th2 in which the centre of 1-acyl thiourea moiety (-C(O)NHC(S)NH) exhibits conformation. The Hirshfeld surface analysis has allowed visualizing the crystal packing, which is characterised by the prolonged intermolecular N-H⋯O = C and N-H⋯S = C hydrogen-bonding interactions within Th2 molecule. Electrochemical data of both compounds correspondingly exhibit irreversible redox potential processes. Besides, frontier molecular orbitals and Natural Bond Orbital population analysis were computed at the B3LYP/6-31G (d, p) level of approximation, suggesting strong delocalization of the electronic density through a conjugated π-system involving the ethynyl-phenyl and thiourea groups.

Graphical Abstract: Figure of molecular structure for acyl thiourea-ethynyl derivative. Two derivatives of acyl thiourea-ethynyl were synthesised and characterised by selected spectroscopic methods such as 1H and 13C NMR, UV-visible, FT-IR, elemental, thermal, electrochemical, X-ray diffraction, and density functional theory (DFT) calculation for molecular orbitals and natural bond orbital population analysis.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8916082PMC
http://dx.doi.org/10.1007/s10870-022-00935-3DOI Listing

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A Dual Approach on Experimental, Theoretical Insight of Structural Elucidation, Hirshfeld Surface Analysis, Optical and Electrochemical Properties of Acyl Thiourea-Ethynyl Hybrid Derivatives.

J Chem Crystallogr

March 2022

CEQUINOR (UNLP, CONICET-CCT La Plata), Departamento de Química, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, Bv 120 N 1465, La Plata, República Argentina.

Article Synopsis
  • - Two hybrid compounds, Th1 and Th2, were created by reacting ethynyl derivatives with 4-butylbenzoyl isothiocyanate, and they were characterized using techniques like NMR, UV-visible spectroscopy, FT-IR, and elemental analysis.
  • - Thermal stability tests showed that Th1 and Th2 remain stable up to 210 °C, and X-ray diffraction helped determine the crystal structure of Th2, highlighting significant hydrogen bonding interactions.
  • - Electrochemical analyses revealed that both compounds have irreversible redox processes, and computational studies indicated a strong delocalization of electronic density in their molecular structures, involving a conjugated π-system.
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