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八极D3和D2d联吡啶金属配合物的合成、线性和二次非线性光学性质。

Synthesis, linear, and quadratic-nonlinear optical properties of octupolar D3 and D2d bipyridyl metal complexes.

作者信息

Maury Olivier, Viau Lydie, Sénéchal Katell, Corre Brigitte, Guégan Jean-Paul, Renouard Thierry, Ledoux Isabelle, Zyss Joseph, Le Bozec Hubert

机构信息

Organométalliques et Catalyse, Chimie et Electrochimie Moléculaires, UMR 6509 CNRS-Université de Rennes 1, Institut de Chimie de Rennes, Campus de Beaulieu, 35042 Rennes Cedex, France.

出版信息

Chemistry. 2004 Sep 20;10(18):4454-66. doi: 10.1002/chem.200400012.

Abstract

A series of D3 (Fe(II), Ru(II), Zn(II), Hg(II)) and D2d (Cu(I), Ag(I), Zn(II)) octupolar metal complexes featuring different functionalized bipyridyl ligands has been synthesized, and their thermal, linear (absorption and emission), and nonlinear optical (NLO) properties were determined. Their quadratic NLO susceptibilities were determined by harmonic light scattering at 1.91 microm, and the molecular hyperpolarizability (beta0) values are in the range of 200-657 x 10(-30) esu for octahedral complexes and 70-157 x 10(-30) esu for tetrahedral complexes. The octahedral zinc(II) complex 1 e, which contains a 4,4'-oligophenylenevinylene-functionalized 2,2'-bipyridine, exhibits the highest quadratic hyperpolarizability ever reported for an octupolar derivative (lambdamax=482 nm, beta1.91(1 e)=870 x 10(-30) esu, beta0(1 e)=657 x 10(-30) esu). Herein, we demonstrate that the optical and nonlinear optical (NLO) properties are strongly influenced by the symmetry of the complexes, the nature of the ligands (donor endgroups and pi linkers), and the nature of the metallic centers. For example, the length of the pi-conjugated backbone, the Lewis acidity of the metal ion, and the increase of ligand-to-metal ratio result in a substantial enhancement of beta. The contribution of the metal-to-ligand (MLCT) transition to the molecular hyperpolarizability is also discussed with respect to octahedral d6 complexes (M=Fe, Ru).

摘要

已经合成了一系列具有不同功能化联吡啶配体的D3(Fe(II)、Ru(II)、Zn(II)、Hg(II))和D2d(Cu(I)、Ag(I)、Zn(II))八极金属配合物,并测定了它们的热、线性(吸收和发射)以及非线性光学(NLO)性质。通过在1.91微米处的谐波光散射测定了它们的二次NLO极化率,八面体配合物的分子超极化率(β0)值在200 - 657×10⁻³⁰ esu范围内,四面体配合物的分子超极化率(β0)值在70 - 157×10⁻³⁰ esu范围内。八面体锌(II)配合物1 e含有4,4'-寡聚亚苯基亚乙烯基功能化的2,2'-联吡啶,展现出八极衍生物中报道过的最高二次超极化率(λmax = 482 nm,β1.91(1 e) = 870×10⁻³⁰ esu,β0(1 e) = 657×10⁻³⁰ esu)。在此,我们证明了光学和非线性光学(NLO)性质受到配合物对称性、配体性质(供体端基和π连接体)以及金属中心性质的强烈影响。例如,π共轭主链的长度、金属离子的路易斯酸度以及配体与金属比例的增加导致β大幅增强。还针对八面体d6配合物(M = Fe、Ru)讨论了金属到配体(MLCT)跃迁对分子超极化率的贡献。

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