International Journal of Chemistry

ISSN 2995-9246

International Journal of Chemistry | Vol. 14, No. 10, October 2023 | pp. 73–80

DOI: 10.46882/2023/IJC/000180

Article Type: Original Research Paper

Title: Synthesis, Luminescent Kinetics, and Metal Sensing Performance of Novel Lutetium(III) β-Diketone Coordination Complexes

Names of Authors: A. O. Balogun¹, J. E. Kim²*

Authors’ Affiliations:
¹Department of Chemistry, University of Ilorin, Ilorin, Nigeria.
²Department of Chemistry, Seoul National University, Seoul, South Korea.

Abstract: Rare-earth coordination materials displaying highly sensitive photoluminescent behaviors are increasingly sought for chemical sensor fabrications due to their specific emission bands and high signal-to-noise ratios. This study reports the synthesis, material characterization, and analytical sensor optimization of a novel lutetium(III) complex using thenoyltrifluoroacetone and 1,10-phenanthroline ligands. Structural configurations were verified using elemental analysis, molar conductance, and Fourier-transform infrared (FT-IR) spectroscopy. Analytical calculations confirmed a 1:3:1 metal-to-ligand stoichiometric coordination pattern, conforming to the formula [Lu(TTA)₃(phen)]. Molar conductivity tests in acetonitrile confirmed a completely non-electrolytic layout. Photoluminescence scanning at room temperature showed narrow emission lines characteristic of the central Lu(III) complex framework. The analytical potential of the complex as a fluorimetric sensor for trace nitroaromatic explosives was evaluated in aqueous media. The introduction of picric acid caused immediate, highly selective luminescence quenching of the emission intensity. The fluorimetric quenching behavior followed the Stern-Volmer relationship with a high quenching constant (Ksv) of 4.2 x 10⁴ M⁻¹ and a low limit of detection (LOD) of 0.21 μM, pointing to a photoinduced electron transfer pathway.

Keywords: Lutetium complexes; Rare earth elements; Photoluminescence; Fluorimetric sensor; Nitroaromatic explosives; Stern-Volmer relation

Manuscript Timeline: Received: May 12, 2022; Revised: June 25, 2022; Accepted: July 18, 2022; Published: October 05, 2023.

Citation: Balogun, A. O., & Kim, J. E. (2023). Synthesis, Luminescent Kinetics, and Metal Sensing Performance of Novel Lutetium(III) β-Diketone Coordination Complexes. International Journal of Chemistry, 14(10), 73–80.