Structural Variety, Luminescent Properties, and DFT Calculations of 2-Naphthaldehyde Thiosemicarbazone and Its Complexes with Zinc(II) and Cadmium(II)

Abstract A 2-naphthyl functionalized thiosemicarbazone has been synthesized in high yield by means of a Schiff base condensation reaction. The 2-(naphthalen-2-ylmethylene)hydrazinecarbothioamide (Hnatsc, 1) reacts with zinc(II) and cadmium(II) chlorides and acetates to obtain neutral complexes of formulae: [ZnCl2(Hnatsc)2]·H2O (2·H2O), [Zn(natsc)2]·3H2O (3·3H2O), [Zn(natsc)2(Hnatsc)2]·3H2O (4·3H2O), [Zn(OAc)(natsc)(Hnatsc)]·2H2O (5·2H2O), [CdCl2(Hnatsc)2] (6), [Cd(natsc)2] (7), and [Cd(OAc)(natsc)(MeOH)] (8), in which the thiosemicarbazone functions as a monodentate thione ligand or as a deprotonated bidentate chelating ligand coordinating to the metal ions via the imine nitrogen and thiolate sulfur atoms. The characterization of all compounds was through a combination of analytical techniques, including elemental analysis, nuclear magnetic resonance (NMR) spectroscopy, infrared (IR) spectroscopy, and electrospray ionization (ESI) mass spectrometry. The molecular and crystal structures of Hnatsc and complexes 2 and 6 were determined by means of single-crystal X-ray diffraction. Furthermore, a fluorescence study was conducted on the thiosemicarbazone and the complexes. A density functional theory (DFT) study using MEP, QTAIM, and NCIplot analyzed the supramolecular architecture, revealing that metal coordination significantly strengthens hydrogen-bonded synthons. Furthermore, TD-DFT calculations provided insight into the photophysical properties, confirming the ligand-centered nature of the electronic transitions and identifying high internal conversion rates as the primary quenching mechanism in the zinc complex 2.

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Journal
Inorganic Chemistry
Published
2026-09-15
DOI
https://doi.org/10.1021/acs.inorgchem.6c02677
Primary Topic
Metal complexes synthesis and properties
Type
article
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Structural Variety, Luminescent Properties, and DFT Calculations of 2-Naphthaldehyde Thiosemicarbazone and Its Complexes with Zinc(II) and Cadmium(II)

Isabel García‐Santos, A. Castiñeiras, Antonio Frontera, Julio Corredoira‐Vázquez et al.
Inorganic Chemistry
Metal complexes synthesis and properties
article

Structural Variety, Luminescent Properties, and DFT Calculations of 2-Naphthaldehyde Thiosemicarbazone and Its Complexes with Zinc(II) and Cadmium(II)

Isabel García‐Santos, A. Castiñeiras, Antonio Frontera, Julio Corredoira‐Vázquez, Sergi Burguera, Lorenzo Seijo
article en

Abstract

Abstract A 2-naphthyl functionalized thiosemicarbazone has been synthesized in high yield by means of a Schiff base condensation reaction. The 2-(naphthalen-2-ylmethylene)hydrazinecarbothioamide (Hnatsc, 1) reacts with zinc(II) and cadmium(II) chlorides and acetates to obtain neutral complexes of formulae: [ZnCl2(Hnatsc)2]·H2O (2·H2O), [Zn(natsc)2]·3H2O (3·3H2O), [Zn(natsc)2(Hnatsc)2]·3H2O (4·3H2O), [Zn(OAc)(natsc)(Hnatsc)]·2H2O (5·2H2O), [CdCl2(Hnatsc)2] (6), [Cd(natsc)2] (7), and [Cd(OAc)(natsc)(MeOH)] (8), in which the thiosemicarbazone functions as a monodentate thione ligand or as a deprotonated bidentate chelating ligand coordinating to the metal ions via the imine nitrogen and thiolate sulfur atoms. The characterization of all compounds was through a combination of analytical techniques, including elemental analysis, nuclear magnetic resonance (NMR) spectroscopy, infrared (IR) spectroscopy, and electrospray ionization (ESI) mass spectrometry. The molecular and crystal structures of Hnatsc and complexes 2 and 6 were determined by means of single-crystal X-ray diffraction. Furthermore, a fluorescence study was conducted on the thiosemicarbazone and the complexes. A density functional theory (DFT) study using MEP, QTAIM, and NCIplot analyzed the supramolecular architecture, revealing that metal coordination significantly strengthens hydrogen-bonded synthons. Furthermore, TD-DFT calculations provided insight into the photophysical properties, confirming the ligand-centered nature of the electronic transitions and identifying high internal conversion rates as the primary quenching mechanism in the zinc complex 2.

Inorganic Chemistry
Demos (US), Universidade de Santiago de Compostela (ES)
Openalex Percentile: Top 14%
Metal complexes synthesis and properties
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