Journal Article

·2022 OPEN ACCESS

Two-Photon Absorption Cooperative Effects within Multi-Dipolar Ruthenium Complexes: The Decisive Influence of Charge Transfers

Nicolas Durand , Anissa Amar , Rana Mhanna , H. Akdas YTU , Olivier Soppera , Jean‐Pierre Malval , Abdou Boucekkine , Jean‐Luc Fillaut

Molecules

Abstract

= 0, 1, 2) complexes carrying bipyridine π-extended ligands (L), have been carried out. These π-extended D-π-A-A-π-D-type ligands (L), where the electron donor units (D) are based on diphenylamine, carbazolyl, or fluorenyl units, have been designed to modulate the conjugation extension and the donating effect. Density functional theory calculations were performed in order to rationalize the observed spectra. Calculations show that the electronic structure of the π-extended ligands has a pronounced effect on the composition of HOMO and LUMO and on the metallic contribution to frontier MOs, resulting in strikingly different nonlinear properties. This work demonstrates that ILCT transitions are the keystone of one- and two-photon absorption bands in the studied systems and reveals how much MLCT and LLCT charge transfers play a decisive role on the two-photon properties of both hetero- and homoleptic ruthenium complexes through cooperative or suppressive effects.

Keywords

Homoleptic Chemistry Ruthenium Time-dependent density functional theory Density functional theory Photochemistry Absorption (acoustics) Dipole Absorption spectroscopy Bipyridine Computational chemistry Crystallography Metal Materials science Organic chemistry Catalysis Physics

Subject Areas

Nonlinear Optical Materials Studies ·Biomedical Engineering ·Physical Sciences
Nonlinear Optical Materials Research ·Electronic, Optical and Magnetic Materials ·Physical Sciences
Porphyrin and Phthalocyanine Chemistry ·Materials Chemistry ·Physical Sciences

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