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Fluorescence Amplification of Unsaturated Oxazolones Using Palladium: Photophysical and Computational Studies.

Authors :
Dalmau D
Crespo O
Matxain JM
Urriolabeitia EP
Source :
Inorganic chemistry [Inorg Chem] 2023 Jun 26; Vol. 62 (25), pp. 9792-9806. Date of Electronic Publication: 2023 Jun 14.
Publication Year :
2023

Abstract

Weakly fluorescent ( Z )-4-arylidene-5-(4 H )-oxazolones ( 1 ), Φ <subscript>PL</subscript> < 0.1%, containing a variety of conjugated aromatic fragments and/or charged arylidene moieties, have been orthopalladated by reaction with Pd(OAc) <subscript>2</subscript> . The resulting dinuclear complexes ( 2 ) have the oxazolone ligands bonded as a C^N-chelate, restricting intramolecular motions involving the oxazolone. From 2 , a variety of mononuclear derivatives, such as [Pd(C^N-oxazolone)(O <subscript>2</subscript> CCF <subscript>3</subscript> )(py)] ( 3 ), [Pd(C^N-oxazolone)(py) <subscript>2</subscript> ](ClO <subscript>4</subscript> ) ( 4 ), [Pd(C^N-oxazolone)(Cl)(py)] ( 5 ), and [Pd(C^N-oxazolone)(X)(NHC)] ( 6 , 7 ), have been prepared and fully characterized. Most of complexes 3 - 6 are strongly fluorescent in solution in the range of wavelengths from green to yellow, with values of Φ <subscript>PL</subscript> up to 28% ( 4h ), which are among the highest values of quantum yield ever reported for organometallic Pd complexes with bidentate ligands. This means that the introduction of the Pd in the oxazolone scaffold produces in some cases an amplification of the fluorescence of several orders of magnitude from the free ligand 1 to complexes 3 - 6 . Systematic variations of the substituents of the oxazolones and the ancillary ligands show that the wavelength of emission is tuned by the nature of the oxazolone, while the quantum yield is deeply influenced by the change of ligands. TD-DFT studies of complexes 3 - 6 show a direct correlation between the participation of the Pd orbitals in the HOMO and the loss of emission through non-radiative pathways. This model allows the understanding of the amplification of the fluorescence and the future rational design of new organopalladium systems with improved properties.

Details

Language :
English
ISSN :
1520-510X
Volume :
62
Issue :
25
Database :
MEDLINE
Journal :
Inorganic chemistry
Publication Type :
Academic Journal
Accession number :
37315074
Full Text :
https://doi.org/10.1021/acs.inorgchem.3c00601