Durand Nicolas, Amar Anissa, Mhanna Rana, Akdas-Kiliç Huriye, Soppera Olivier, Malval Jean-Pierre, Boucekkine Abdou, Fillaut Jean-Luc
Univ. Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) UMR 6226, 35000 Rennes, France.
Laboratoire de Physique et Chimie Quantiques, Faculté des Sciences, Université Mouloud Mammeri de Tizi-Ouzou, Tizi-Ouzou 15000, Algeria.
Molecules. 2022 Feb 23;27(5):1493. doi: 10.3390/molecules27051493.
One- and two-photon characterizations of a series of hetero- and homoleptic [RuL(bpy)] ( = 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.
对一系列带有联吡啶π-扩展配体(L)的杂配和同配[RuL(bpy)](n = 0, 1, 2)配合物进行了单光子和双光子表征。这些π-扩展的D-π-A-A-π-D型配体(L),其中电子供体单元(D)基于二苯胺、咔唑基或芴基单元,已被设计用于调节共轭延伸和供体效应。进行了密度泛函理论计算,以合理解释观察到的光谱。计算表明,π-扩展配体的电子结构对HOMO和LUMO的组成以及对前沿分子轨道的金属贡献有显著影响,导致明显不同的非线性性质。这项工作表明,在研究的体系中,ILCT跃迁是单光子和双光子吸收带的关键,并揭示了MLCT和LLCT电荷转移如何通过协同或抑制作用对杂配和同配钌配合物的双光子性质起决定性作用。