首页> 外文OA文献 >Synthesis, structural, photophysical and electrochemical studies of various d-metal complexes of btp [2,6-bis(1,2,3-triazol-4-yl)pyridine] ligands that give rise to the formation of metallo-supramolecular gels
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Synthesis, structural, photophysical and electrochemical studies of various d-metal complexes of btp [2,6-bis(1,2,3-triazol-4-yl)pyridine] ligands that give rise to the formation of metallo-supramolecular gels

机译:btp [2,6-双(1,2,3-三唑-4-基)吡啶]配体的各种d-金属配合物的合成,结构,光物理和电化学研究,这些化合物会形成金属超分子凝胶

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摘要

2,6-Bis(1,2,3-triazol-4-yl)pyridine (btp) is a terdentate binding motif that is synthesised modularly via the CuAAC reaction. Herein, we present the synthesis of ligands 1 and 2 and the investigation of the coordination chemistry, photophysical behaviour and electrochemistry of complexes of these with a number of d-metal ions (e.g. Ru(II), Ir(III), Ni(II) and Pt(II)). The X-ray crystal structures of ligand 1 and the complexes [Ru·22](PF6)Cl, [Ni·12](PF6)Cl and [Ir·1Cl3] are also presented. All of the complexes displayed non-classical triazolyl C–HCl− hydrogen bonding. All but one complex showed no metal-based luminescence at room temperature, while all of the Pt(II) complexes displayed luminescence at 77 K. The electrochemistry of the Ru(II) complexes was also studied and these complexes were found to have higher oxidation potentials than analogous compounds. The redox behaviour of [RuL2]2+ complexes with both 1 and 2 was nearly identical, while [Ru·1Cl2(DMSO)] was oxidised at significantly lower potential. We also show that the Ru(II) complex of 2, [Ru·22](PF6)Cl, gave rise to the formation of a metallo-supramolecular gel, the morphology of which was studied using scanning electron and helium ion microscopy.
机译:2,6-双(1,2,3-三唑-4-基)吡啶(btp)是通过CuAAC反应模块化合成的三齿结合基序。在这里,我们介绍了配体1和2的合成,以及这些配体与许多d-金属离子(如Ru(II),Ir(III),Ni(II)的配合物的配位化学,光物理行为和电化学的研究。 )和Pt(II))。还给出了配体1和配合物[Ru·22](PF6)Cl,[Ni·12](PF6)Cl和[Ir·1Cl3]的X射线晶体结构。所有的配合物均显示出非经典的三唑基C–HCl−氢键。除一种配合物外,其他化合物在室温下均未显示出基于金属的发光,而所有Pt(II)配合物均在77 K下显示出发光。还研究了Ru(II)配合物的电化学性质,发现这些配合物具有更高的氧化度。电位比类似化合物高。具有[1]和[2]的[RuL2] 2+配合物的氧化还原行为几乎相同,而[Ru·1Cl2(DMSO)]在较低的电势下被氧化。我们还表明,2 [Ru·22](PF6)Cl的Ru(II)络合物引起了金属超分子凝胶的形成,使用扫描电子和氦离子显微镜对其形态进行了研究。

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