首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Two-photon luminescence from polar bis-terpyridyl-stilbene derivatives of Ir(III) and Ru(II)
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Two-photon luminescence from polar bis-terpyridyl-stilbene derivatives of Ir(III) and Ru(II)

机译:Ir(III)和Ru(II)的极性双-双吡啶基-sti衍生物的双光子发光

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摘要

Four structurally related iridium(iii) and ruthenium(ii) complexes bearing two polar terpyridyl-stilbene derived chromophores 4-(4-{2-[4-(methoxy)phenyl] ethenyl}phenyl)-2,2′-6′,2′′-terpyridine (ttpyeneanisole) and 4-(4-{2-[phenyl]ethenyl}phenyl)-2,2′-6′,2′′- terpyridine (tpystilbene) have been synthesised and characterised in the solid state and in solution. In the solid state, the dihedral angle subtending the pyridyl and tolyl groups of 27.1° in the Ir(iii) complex [Ir(ttpyeneanisole)_2]·3PF_6 is more acute than in the Ru(ii) derivative [Ru(tpystilbene)_2]·2PF_6 (35.5°), indicating the presence of a greater degree of π-delocalisation across the terpyridine unit in the former compound. Their luminescence properties in fluid solution have been investigated following both resonant and non-resonant excitation. We have shown that each of the complexes undergoes two-photon excitation when excited in the near infrared (740 to 820 nm), with two-photon absorption cross sections in the range 11-67 × 10~(-50) cm~4 s photon~(-1). The larger cross sections for the Ir(iii) complexes reflect the differences observed in the solid state. This work therefore demonstrates that such complexes are promising as luminescent markers for 3D imaging and illustrates that simple functionalisation of the chromophores and the choice of metal can lead to marked enhancements in the two-photon cross sections (σ_2) compared to those of simpler heteroleptic polypyridyl based derivatives.
机译:四个结构相关的铱(iii)和钌(ii)配合物,带有两个极性的吡啶基-sti衍生的发色团4-(4- {2- [4-(4-(甲氧基)苯基]乙烯基}苯基)-2,2'-6',合成并表征了2''-吡啶(叔丁基苯甲醚)和4-(4- {2- [苯基]乙烯基}苯基)-2,2'-6',2''-吡啶(叔丁基)并在解决方案中。在固态下,Ir(iii)络合物[Ir(ttpyeneanisole)_2]·3PF_6中与吡啶基和甲苯基基团相对的27.1°的二面角比Ru(ii)衍生物[Ru(tpystilbene)_2 ]·2PF_6(35.5°),表明在前一种化合物中,在整个吡啶吡啶单元中存在更大程度的π-离位。在共振和非共振激发之后,已经研究了它们在流体溶液中的发光特性。我们已经表明,每个配合物在近红外(740至820 nm)激发时都会经历双光子激发,双光子吸收截面在11-67×10〜(-50)cm〜4 s范围内光子〜(-1)。 Ir(iii)配合物的较大横截面反映了在固态下观察到的差异。因此,这项工作证明了这种络合物有望作为3D成像的发光标记,并且说明了与较简单的杂多聚吡啶基相比,发色团的简单官能化和金属的选择可导致双光子截面(σ_2)的显着增强。基础衍生品。

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