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三价铬配合物中2,2'-联咪唑配体的调控

Taming 2,2'-biimidazole ligands in trivalent chromium complexes.

作者信息

Chong Julien, Benchohra Amina, Besnard Céline, Guénée Laure, Rosspeintner Arnulf, Cruz Carlos M, Jiménez Juan-Ramón, Piguet Claude

机构信息

Department of Inorganic and Analytical Chemistry, University of Geneva, 30 quai E. Ansermet, CH-1211 Geneva 4, Switzerland.

Laboratoire CEMCA UMR, CNRS 6521, UFR Sciences and Techniques, 6, avenue Victor Le Gorgeu, 29238 Brest Cedex 3, France.

出版信息

Dalton Trans. 2024 Oct 1;53(38):15801-15814. doi: 10.1039/d4dt01608d.

Abstract

Complete or partial replacement of well-known five-membered chelating 2,2'-bipyridine (bipy) or 1,10-phenanthroline (phen) ligands with analogous didentate 2,2'-biimidazole (Hbiim) provides novel perspectives for exploiting the latter pH-tuneable bridging unit for connecting inert trivalent chromium with cationic partners. The most simple homoleptic complex [Cr(Hbiim)] and its stepwise deprotonated analogues are only poorly soluble in most solvents and their characterization is limited to some solid-state structures, in which the pseudo-octahedral [CrN] units are found to be intermolecularly connected peripheral N-H⋯X hydrogen bonds. Moreover, the associated high-energy stretching N-H vibrations drastically quench the targeted near infrared (NIR) Cr-based phosphorescence, which makes these homoleptic building blocks incompatible with the design of molecular-based luminescent assemblies. Restricting the number of bound 2,2'-biimidazole ligands to a single unit in the challenging heteroleptic [Cr(phen)(Hbiim)] ( = 2-0) complexes overcomes the latter limitations and allows (i) the synthesis and characterization of these [CrN] chromophores in the solid state and in solution, (ii) the stepwise and controlled deprotonation of the bound 2,2'-biimidazole ligand and (iii) the implementation of Cr-centered phosphorescence with energies, lifetimes and quantum yields adapted for using the latter chromophores as sensitizers in promising 'complex-as-ligand' strategies.

摘要

用类似的双齿2,2'-联咪唑(Hbiim)完全或部分取代广为人知的五元螯合2,2'-联吡啶(bipy)或1,10-菲咯啉(phen)配体,为利用后者的pH可调桥连单元将惰性三价铬与阳离子伙伴连接起来提供了新的视角。最简单的同配络合物[Cr(Hbiim)]及其逐步去质子化的类似物在大多数溶剂中溶解度很差,其表征仅限于一些固态结构,其中发现伪八面体[CrN]单元通过分子间的外围N-H⋯X氢键相连。此外,相关的高能拉伸N-H振动极大地淬灭了目标近红外(NIR)基于Cr的磷光,这使得这些同配结构单元与基于分子的发光组件设计不兼容。在具有挑战性的异配[Cr(phen)(Hbiim)]( = 2-0)络合物中将结合的2,2'-联咪唑配体数量限制为单个单元,克服了后者的局限性,并允许(i)在固态和溶液中合成和表征这些[CrN]发色团,(ii)对结合的2,2'-联咪唑配体进行逐步和可控的去质子化,以及(iii)实现具有适合在有前景的“络合物作为配体”策略中使用后者发色团作为敏化剂的能量、寿命和量子产率的基于Cr的磷光。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/926b/11443315/8a39203e39d7/d4dt01608d-s1.jpg

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