首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Cyclometalated Ir(III) complexes containing quinoline-benzimidazole-based N boolean AND N ancillary ligands: structural and luminescence modulation by varying the substituent groups or the protonation/deprotonation state of imidazole units
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Cyclometalated Ir(III) complexes containing quinoline-benzimidazole-based N boolean AND N ancillary ligands: structural and luminescence modulation by varying the substituent groups or the protonation/deprotonation state of imidazole units

机译:含有喹啉-苯并咪唑基 N 布尔和 N 辅助配体的环金属化 Ir(III) 配合物:通过改变取代基或咪唑单元的质子化/去质子化状态进行结构和发光调制

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摘要

Cyclometalated Ir(III) complexes Ir(dfppy)(2)(qbiH)(PF6) (1), Ir(dfppy)(2)(qbim)(PF6).H2O (2), Ir(dfppy)(2)(qbio) (PF6) (3) and Ir(dfppy)(2)(qbi) (4) have been designed and prepared, in which the NN ligands qbiH, qbim and qbio incorporate different substituent groups R on their imidazole units (H atom, CH3 group and n-C8H17 group, respectively) in order to explore the influence of the substituent groups R and the protonation/deprotonation state of imidazole units in these Ir(III) complexes on their structures and luminescence behaviors. Crystal structures indicate that an {Ir(dfppy)(2)}(+) unit is coordinated by neutral ligands qbiH in 1, qbim in 2 and qbio in 3, while a qbi-anion in 4. These Ir(III) complexes show clearly different molecular stacking modes. In compound 1, neighboring Ir(dfppy)(2)(qbiH)(+) cations are linked into a supramolecular chain through pi...pi stacking interactions between adjacent dfppy(-)/qbiH ligands. In 2 and 4, two neighboring iridium complex units connect each other through p. p stacking interactions between dfppy-ligands in the former, while between qbi(-) ligands in the latter, forming supramolecular dimers. Compared to 1, 2 and 4, compound 3 only exhibits intermolecular van der Waals interactions. At room temperature, these Ir(III) complexes in CH2Cl2 reveal phosphorescence with a mixing of (MLCT)-M-3 and (LC)-L-3 characters, emissions at 558 and 585 nm for 1, 572 (or 573) and 600 nm for 2 and 3, and 546 nm for 4. Compared to 1-3, compound 4 displays relatively weak luminescence intensity. Interestingly, upon addition of NEt3/TFA, both 1 and 4 in CH2Cl2 can switch their luminescence between strong emission at 558 nm and weak emission at 546 nm, due to their acid-/base-induced structural interconversion between the protonation state and the deprotonation state of the qbiH ligand. The emissions of 1-4 in the solid state reveal different degrees of the red shift compared to their corresponding emissions in CH2Cl2, the broad emission bands at 542, 572 and 611 nm for 1, 553, 581 and 612 nm for 2, 544, 578 and 630 nm for 3, and 595 and 633 nm for 4. Based on the crystal structures of 1-4, this work discusses the luminescence modulation of these Ir(III) complexes by varying their substituent groups or the protonation/deprotonation state of the imidazole units.
机译:环金属化Ir(III)配合物[Ir(dfppy)(2)(qbiH)](PF6)(1),[Ir(dfppy)(2)(qbim)](PF6)。设计制备了H2O(2)、[Ir(dfppy)(2)(qbio)](PF6)(3)和[Ir(dfppy)(2)(qbi)](4),其中NN配体qbiH、qbim和qbio在其咪唑单元(分别为H原子、CH3基团和n-C8H17基团)上掺入了不同的取代基R,以探究这些Ir(III)配合物中取代基R和咪唑单元的质子化/去质子化状态对其结构和发光的影响行为。晶体结构表明,{Ir(dfppy)(2)}(+)单元由中性配体qbiH(1)、qbim(2)和qbio(3)配位,而qbi-阴离子(4)配位。这些Ir(III)配合物显示出明显不同的分子堆积模式。在化合物 1 中,相邻的 [Ir(dfppy)(2)(qbiH)](+) 阳离子通过 pi...相邻 dfppy(-)/qbiH 配体之间的 pi 堆叠相互作用。在 2 和 4 中,两个相邻的铱络合物单元通过前者的 dfppy 配体之间的 p. p 堆叠相互作用相互连接,而后者的 qbi(-) 配体之间形成超分子二聚体。与 1、2 和 4 相比,化合物 3 仅表现出分子间范德华相互作用。在室温下,CH2Cl2 中的这些 Ir(III) 配合物以 (MLCT)-M-3 和 (LC)-L-3 特征混合显示磷光,1、572(或 573)和 600 nm 的 2 和 3 的发射波长为 558 nm 和 585 nm,4 的发射波长为 546 nm。与1-3相比,化合物4的发光强度相对较弱。有趣的是,在添加 NEt3/TFA 后,CH2Cl2 中的 1 和 4 都可以在 558 nm 处的强发射和 546 nm 处的弱发射之间切换它们的发光,因为它们在质子化态和 qbiH 配体的去质子化态之间由酸/碱诱导的结构相互转换。固态 1-4 的发射与 CH2Cl2 中的相应发射相比,红移程度不同,1、553、581 和 612 nm 处的宽发射带为 1、553、581 和 612 nm,3 的 595 nm 和 630 nm,4 的 595 nm 和 633 nm。基于1-4的晶体结构,本文讨论了通过改变其取代基或咪唑单元的质子化/去质子化状态来调制这些Ir(III)配合物的发光调制。

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