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发光面式-[ReX(CO)(苯基-吡唑啉酮)](X = Cl、Br、I)配合物:卤化物配体对溶液和固态中电子性质的影响

Luminescent fac-[ReX(CO)(phenyl-pyta)] (X = Cl, Br, I) complexes: influence of the halide ligand on the electronic properties in solution and in the solid state.

作者信息

Poirot Alexandre, Vanucci-Bacqué Corinne, Delavaux-Nicot Béatrice, Saffon-Merceron Nathalie, Serpentini Charles-Louis, Leygue Nadine, Bedos-Belval Florence, Benoist Eric, Fery-Forgues Suzanne

机构信息

SPCMIB, CNRS UMR 5068, Université de Toulouse III Paul Sabatier, 118 route de Narbonne, 31062, Toulouse cedex 9, France.

Laboratoire de Chimie de Coordination du CNRS (LCC), CNRS UPR 8241, CNRS and Université de Toulouse (UPS), 205 route de Narbonne, 31077, Toulouse Cedex 4, France.

出版信息

Photochem Photobiol Sci. 2023 Jan;22(1):169-184. doi: 10.1007/s43630-022-00307-y. Epub 2022 Sep 30.

Abstract

Tricarbonylrhenium(I) complexes that incorporate a chloride ligand are promising photoluminescent materials, but those incorporating a bromide or iodide ligand have received very little attention regarding their solid-state properties. In this work, three rhenium(I) complexes differing only by the nature of their halide ligand (X = Cl, Br, and I) were compared. They are based on a fac-[ReX(CO)(N^N)] framework where the N^N bidentate ligand is a 3-(2-pyridyl)-1,2,4-triazole unit functionalized by an appended phenyl group. DFT calculations showed that the character of the lowest energy transitions progressively changes from Re → N^N ligand (MLCT) to X → N^N ligand (XLCT) when increasing the size of the halogen atom. Regarding the electrochemical behavior, the chloride and bromide complexes 1-Cl and 1-Br were similar, while the iodide complex 1-I exhibited a strikingly different electrochemical signature in oxidation. From a spectroscopic viewpoint, all three complexes emitted weak red-orange phosphorescence in dichloromethane solution. However, in the solid state, marked differences appeared. Not only was 1-Cl a good emitter of yellow light, but it had strong solid-state luminescence enhancement (SLE) properties. In comparison, 1-Br and 1-I were less emissive and they showed better mechanoresponsive luminescence (MRL) properties, probably related to a loose molecular arrangement in the crystal packing and to the opening of vibrational non-radiative deactivation pathways. This study highlights for the first time how the nature of the halide ligand in this type of complex allows fine tuning of the solid-state optical properties, for potential applications either in bio-imaging or in the field of MRL-active materials.

摘要

含有氯配体的三羰基铼(I)配合物是很有前景的光致发光材料,但含有溴或碘配体的此类配合物在固态性质方面却很少受到关注。在这项工作中,比较了三种仅卤化物配体性质不同(X = Cl、Br和I)的铼(I)配合物。它们基于一个面式-[ReX(CO)(N^N)]骨架,其中N^N双齿配体是一个通过连接的苯基官能化的3-(2-吡啶基)-1,2,4-三唑单元。密度泛函理论计算表明,当增大卤素原子尺寸时,最低能量跃迁的性质逐渐从Re→N^N配体(金属-配体电荷转移,MLCT)转变为X→N^N配体(卤素-配体电荷转移,XLCT)。关于电化学行为,氯化物和溴化物配合物1-Cl和1-Br相似,而碘化物配合物1-I在氧化时表现出明显不同的电化学特征。从光谱学角度看,所有三种配合物在二氯甲烷溶液中都发出弱的红橙色磷光。然而,在固态下,出现了显著差异。不仅1-Cl是黄光的良好发射体,而且它具有很强的固态发光增强(SLE)性质。相比之下,1-Br和1-I的发射性较差,它们表现出更好的机械响应发光(MRL)性质,这可能与晶体堆积中松散的分子排列以及振动非辐射失活途径的打开有关。这项研究首次强调了此类配合物中卤化物配体的性质如何能够精细调节固态光学性质,以用于生物成像或MRL活性材料领域的潜在应用。

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