首页> 外文期刊>Journal of the American Chemical Society >Cruciforms as functional fluorophores: Response to protons and selected metal ions - art. no. JA061112E
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Cruciforms as functional fluorophores: Response to protons and selected metal ions - art. no. JA061112E

机译:十字形作为功能性荧光团:对质子和选定的金属离子的反应-艺术。没有。 JA061112E

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The photophysics of dialkylamino- and/or pyridine-containing functional chromophores, 1,4-distyryl-2,5-bis(ethynylaryl) benzenes (cruciforms) was investigated; their fluorescence quantum yields and emissive lifetimes were determined. Depending upon their substituents, the frontier molecular orbitals (FMOs) of these cruciforms are either congruent, i.e., HOMO and LUMO occupy the same real space, or disjoint, i.e., the HOMO is located on one branch of the cruciform while the LUMO is located on the second one. Donor-acceptor substitution leads to a disjoint FMO pattern, while the parent 1,4-distyryl-2,5-bis(phenylethynyl)benzene shows congruent FMOs. The photophysics of the cruciforms was investigated upon addition of either an excess of trifluoroacetic acid or an excess of selected metal (Mg2+, Ca2+, Mn2+, Zn2+) trifluoromethanesulfonate salts. Addition of either metal ions or protons led to analogous but not identical changes in the spectroscopic properties of the investigated cruciforms. The collected data suggest that the metals bind preferentially at the aniline nitrogen and not at the electron-rich arene. The spatially separated FMOs permit the independent manipulation of the HOMO and the LUMO of such cruciforms. If the branches contain metal-complexing moieties, metal binding leads to either a hypsochromic or a bathochromic shift in emission via interaction of the metal cations with either the HOMO or the LUMO.
机译:研究了含二烷基氨基和/或吡啶的功能性发色团1,4-二苯乙烯基-2,5-双(乙炔基芳基)苯(十字形)的光物理性质;确定了它们的荧光量子产率和发射寿命。根据它们的取代基,这些十字形的前沿分子轨道(FMO)可以是全等的,即HOMO和LUMO占据相同的真实空间,也可以是不相交的,即HOMO位于十字形的一个分支上,而LUMO位于在第二个。供体-受体取代导致不相交的FMO模式,而母体1,4-二苯乙烯基-2,5-双(苯基乙炔基)苯显示出一致的FMO。通过添加过量的三氟乙酸或过量选择的金属(Mg2 +,Ca2 +,Mn2 +,Zn2 +)三氟甲磺酸盐,研究了十字形的光物理性质。金属离子或质子的加入导致所研究十字形的光谱性质发生类似但不同的变化。收集的数据表明,金属优先结合苯胺氮而不是富电子芳烃。在空间上分开的FMO允许独立操纵此类十字形的HOMO和LUMO。如果支链包含金属络合部分,则金属结合会通过金属阳离子与HOMO或LUMO的相互作用而导致发射光发生发色或红移。

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