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首页> 外文期刊>Journal of the American Chemical Society >Pyrene-Decoration of a Chromium(0) Tris(diisocyanide) Enhances Excited State Delocalization: A Strategy to Improve the Photoluminescence of 3d~6 Metal Complexes
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Pyrene-Decoration of a Chromium(0) Tris(diisocyanide) Enhances Excited State Delocalization: A Strategy to Improve the Photoluminescence of 3d~6 Metal Complexes

机译:铬(0)Tris(二异氰化物)的芘装饰增强了激发的状态临床化:改善3D〜6金属络合物光致发光的策略

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摘要

There is a long-standing interest in iron(Ⅱ) complexes that emit from metal-to-ligand charge transfer (MLCT) excited states, analogous to ruthenium(Ⅱ) polypyridines. The 3d~6 electrons of iron(Ⅱ) are exposed to a relatively weak ligand field, rendering nonradiative relaxation of MLCT states via metal-centered excited states undesirably efficient. For isoelectronic chromium(0), chelating diisocyanide ligands recently provided access to very weak MLCT emission in solution at room temperature. Here, we present a concept that boosts the luminescence quantum yield of a chromium(0) isocyanide complex by nearly 2 orders of magnitude, accompanied by a significant increase of the MLCT lifetime. Pyrene units in the diisocyanide ligand backbone lead to an enlarged π-conjugation system and to a strongly delocalized MLCT state, from which nonradiative relaxation is less dominant despite a sizable redshift of the emission. While the pyrene moiety is electronically coupled to the core of the chromium(0) complex in the excited state, UV-vis absorption and 2D NMR spectroscopy show that this is not the case in the ground state. Luminescence lifetimes and quantum yields for our pyrenyl-decorated chromium(0) complex exhibit an unusual bell-shaped dependence on solvent polarity, indicative of two counteracting effects governing the MLCT deactivation. These two effects are identified as predominant deactivation either through an energetically nearby lying metal-centered state in the most apolar solvents, or alternatively via direct nonradiative relaxation to the ground state following the energy gap law in more polar solvents. This is the first example of a 3d~6 MLCT emitter to benefit from an increased π-conjugation network.
机译:对铁(Ⅱ)复合物具有长期兴趣,其从金属到配体电荷转移(MLCT)激发态,类似于钌(Ⅱ)萘葡萄酒。铁(Ⅱ)的3D〜6电子暴露于相对较弱的配体场,通过金属中心激发态呈现MLCT态的非接种性松弛。对于异形铬(0),螯合二异氰化物配体最近提供了在室温下溶液中的非常弱的MLCT发射。在这里,我们提出了一种概念,其通过伴随MLCT寿命的显着增加,提高铬(0)异氰化物复合物的发光量子产率的发光量子产率伴随着MLCT寿命的显着增加。二异氰化物配体骨架中的芘单元导致扩大的π-缀合系统,并且在强烈的截止值MLCT状态下,尽管发射的可相当大的红移,但是虽然不可能的射频,但是从中弛豫较少的显性。虽然在激发态中,芘部分电偶联到铬(0)复合物的核心,但UV-Vis吸收和2D NMR光谱表明,这不是地面状态的情况。发光寿命和量子产率为我们的芘基装饰的铬(0)复合物表现出对溶剂极性的不寻常的钟形依赖性,这表明两个控制MLCT失活的抵抗效果。通过在最不稳定的溶剂中,通过在最高溶剂中的高端躺线金属居中状态来鉴定这两种效果,或者通过在更极性溶剂中的能隙法之后通过直接的非散弛弛豫到地位。这是3D〜6MLCT发射器的第一示例,可以受益于增加的π-共轭网络。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第38期|15800-15811|共12页
  • 作者单位

    Department of Chemistry University of Basel 4056 Basel Switzerland;

    Department of Chemistry University of Basel 4056 Basel Switzerland;

    Department of Chemistry University of Basel 4056 Basel Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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