In this contribution, we present new NIR-CPL/CD active Yb(III) complexes, which are synthesized by combining two ligands characterized by different types of chirality: central and axial chirality. The ligand bearing central chirality is represented by the neutral trans-N,N '-bis(2-pyridylmethylidene)-1,2-(R,R or S,S) cyclohexanediamine (L), whereas the axial ligand is 1,1 '-binaphthyl-2,2 '-diol (BINOL-H2). A combined 1H NMR, thermodynamic (spectrophotometric titrations), and theoretical (DFT structural calculations) study is presented, revealing the high stability in the methanol solution of the homochiral C 2 -symmetric anionic [YbL(BINOL)2]- complexes, in which the two labile BINOLate molecules exhibit the same stereochemistry (R or S). The metal ion-related optical and chiroptical properties of the complexes in the near-infrared spectral region are here presented and discussed: while the axial chirality dominates the circularly polarized luminescence features, the NIR-CD signal is affected by both chiral elements.

Ruggieri, S., George Willis, O., Mizzoni, S., Cavalli, E., Sanadar, M., Melchior, A., et al. (2025). Near Infrared-Circularly Polarized Luminescence/Circular Dichroism Active Yb(III) Complexes Bearing Both Central and Axial Chirality. INORGANIC CHEMISTRY, 64(11), 5505-5512 [10.1021/acs.inorgchem.4c05420].

Near Infrared-Circularly Polarized Luminescence/Circular Dichroism Active Yb(III) Complexes Bearing Both Central and Axial Chirality

Giorgiana Denisa Bisag;Mariafrancesca Fochi;Luca Bernardi;
2025

Abstract

In this contribution, we present new NIR-CPL/CD active Yb(III) complexes, which are synthesized by combining two ligands characterized by different types of chirality: central and axial chirality. The ligand bearing central chirality is represented by the neutral trans-N,N '-bis(2-pyridylmethylidene)-1,2-(R,R or S,S) cyclohexanediamine (L), whereas the axial ligand is 1,1 '-binaphthyl-2,2 '-diol (BINOL-H2). A combined 1H NMR, thermodynamic (spectrophotometric titrations), and theoretical (DFT structural calculations) study is presented, revealing the high stability in the methanol solution of the homochiral C 2 -symmetric anionic [YbL(BINOL)2]- complexes, in which the two labile BINOLate molecules exhibit the same stereochemistry (R or S). The metal ion-related optical and chiroptical properties of the complexes in the near-infrared spectral region are here presented and discussed: while the axial chirality dominates the circularly polarized luminescence features, the NIR-CD signal is affected by both chiral elements.
2025
Ruggieri, S., George Willis, O., Mizzoni, S., Cavalli, E., Sanadar, M., Melchior, A., et al. (2025). Near Infrared-Circularly Polarized Luminescence/Circular Dichroism Active Yb(III) Complexes Bearing Both Central and Axial Chirality. INORGANIC CHEMISTRY, 64(11), 5505-5512 [10.1021/acs.inorgchem.4c05420].
Ruggieri, Silvia; George Willis, Oliver; Mizzoni, Silvia; Cavalli, Enrico; Sanadar, Martina; Melchior, Andrea; Zinna, Francesco; Di Bari, Lorenzo; Bis...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1026276
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