首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Aurophilicity in Action: Fine-Tuning the Gold(I)-Gold(I) Distance in the Excited State To Modulate the Emission in a Series of Dinuclear Homoleptic Gold(I)-NHC Complexes
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Aurophilicity in Action: Fine-Tuning the Gold(I)-Gold(I) Distance in the Excited State To Modulate the Emission in a Series of Dinuclear Homoleptic Gold(I)-NHC Complexes

机译:行动中的亲油性:在激发态下微调Gold(I)-Gold(I)距离,以调节一系列双核同感性Gold(I)-NHC配合物的发射

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The solution-state emission profiles of a series of dinuclear Au(I) complexes 4-6 of the general formula Au-2(NHC-(CH2)(n)-NHC)(2)Br-2, where NHC = N-benzylbenzimidazol-2-ylidene and n = 1-3, were found to be markedly different from each other and dependent on the presence of excess bromide. The addition of excess bromide to the solutions of 4 and 6 leads to red shifts of ca. 60 nm, and in the case of 5, which is nonemissive when neat, green luminescence emerges. A detailed computational study undertaken to rationalize the observed behavior revealed the determining role aurophilicity plays in the photophysics of these compounds, and the formation of exciplexes between the complex cations and solvent molecules or counterions was demonstrated to significantly decrease the Au Au distance in the triplet excited state. A direct dependence of the emission wavelength on the strength of the intracationic aurophilic contact allows for a controlled manipulation of the emission energy by varying the linker length of a diNHC ligand and by judicial choice of counterions or solvent. Such unique stimuli-responsive solution-state behavior is of interest to prospective applications in medical diagnostics, bioimaging, and sensing. In the solid, the investigated complexes are intensely phosphorescent and, notably, 5 and 6 exhibit reversible luminescent mechanochromism arising from amorphization accompanied by the loss of co-crystallized methanol molecules. The mechano-responsive properties are also likely to be related to changes in bromide coordination and the ensuing alterations of intramolecular aurophilic interactions. Somewhat surprisingly, the photophysics of NHC ligand precursors 2 and 3 is related to the formation of ground state associates with bromide counterions through hydrogen bonding, whereas 1 does not appear to bind its counterions.
机译:一系列通式为Au-2(NHC-(CH2)(n)-NHC)(2)Br-2的双核Au(I)配合物4-6的溶液状态发射曲线,其中NHC = N-发现苄基苯并咪唑-2-亚甲基和n = 1-3彼此显着不同,并且取决于过量溴化物的存在。向4和6的溶液中添加过量的溴化物会导致ca的红移。 60 nm,在5的情况下(整洁时不发光)发出绿色发光。为使观察到的行为合理化而进行的详细计算研究表明,嗜酸性在这些化合物的光物理性质中起决定性作用,并且已证明在复杂阳离子与溶剂分子或抗衡离子之间形成激基复合物可显着降低三重激发态中的Au Au距离州。发射波长直接依赖于阳离子内亲金接触的强度,可以通过改变diNHC配体的接头长度以及通过合理选择抗衡离子或溶剂来控制发射能量。这种独特的刺激响应性溶液状态行为引起医学诊断,生物成像和传感领域的预期应用。在固体中,研究的配合物是强烈磷光的,特别是5和6表现出可逆的发光机械致变色,该现象是由非晶化引起的,伴随着共结晶甲醇分子的损失。机械响应特性也可能与溴化物配位的变化以及随后的分子内亲嗜性相互作用的改变有关。出乎意料的是,NHC配体前体2和3的光物理性质与通过氢键与溴化物抗衡离子缔合的基态缔合物有关,而1似乎未结合其抗衡离子。

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