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Making the golden connection: Reversible mechanochemical and vapochemical switching of luminescence from bimetallic gold-silver clusters associated through aurophilic interactions

机译:建立黄金联系:通过嗜金相互作用产生的双金属金-银簇的发光的可逆机械化学和气相化学转换

摘要

Aiming at the development of new architectures within the context of the quest for strongly luminescent materials with tunable emission, we utilized the propensity of the robust bimetallic clusters [Au2Ag 2(RI/RII)4] (RI = 4-C6F4I, RII = 2-C6F 4I)for self-assembly through aurophilic interactions. With a de novo approach that combines the coordination and halogen-bonding potential of aromatic heteroperhalogenated ligands, we have generated a family of remarkably luminescent bimetallic materials that provide grounds to address the relevance, relative effects, and synergistic action of the two interactions in the underlying photophysics. By polymerizing the green-emitting (λ maxem = 540 nm) monomer [Au2Ag2R II 4(tfa)2]2- (tfa = trifluoroacetate) to a red-emitting (λmaxem = 660 nm) polymer [Au2Ag2RII 4(MeCN)2] n, we demonstrate herein that the degree of cluster association in these materials can be effectively and reversibly switched simply by applying mechanochemical and/or vapochemical stimuli in the solid state as well as by solvatochemistry in solution, the reactions being coincident with a dramatic switching of the intense, readily perceptible photoluminescence. We demonstrate that the key event in the related equilibrium is the evolution of a metastable yellow emitter (λmaxem = 580 nm) for which the structure determination in the case of the ligand RII revealed a dimeric nonsolvated topology [Au2Ag2RII 4]2. Taken together, these results reveal a two-stage scenario for the aurophilic-driven self-assembly of the bimetallic clusters [Au2Ag2(RI/RII)4]: (1) initial association of the green-emitting monomers to form metastable yellow-emitting dimers and desolvation followed by (2) resolvation of the dimers and their self-assembly to form a red-emitting linear architecture with delocalized frontier orbitals and a reduced energy gap. The green emission from [Au2Ag2RII 4(tfa)2] 2- (λmaxem = 540 nm) exceeds the highest energy observed for [Au2Ag2]-based structures to date, thereby expanding the spectral slice for emission from related structures beyond 140 nm, from the green region to the deep-red region. © 2011 American Chemical Society.
机译:在寻求具有可调节发射的强发光材料的背景下,针对新架构的发展,我们利用了坚固的双金属簇[Au2Ag 2(RI / RII)4](RI = 4-C6F4I,RII = 2 -C6F 4I)通过亲酸相互作用自组装。通过从头开始的方法,结合了芳香族杂全卤代配体的配位和卤素键势,我们产生了一系列显着发光的双金属材料,这些材料为解决基础相互作用中的两种相互作用的相关性,相对作用和协同作用提供了基础光物理。通过聚合发射绿色光的(αmaxem = 540 nm)单体[Au2Ag2R II 4(tfa)2] 2-(tfa =三氟乙酸盐)到发射红色光的(Δmaxem= 660 nm)聚合物[Au2Ag2RII 4(MeCN )2] n,我们在此证明,通过简单地以固态施加机械化学和/或气相化学刺激以及溶液中的溶剂化学刺激,可以有效且可逆地切换这些材料中的簇缔合程度,反应与强烈的,容易察觉的光致发光的急剧变化。我们证明,在相关的平衡中的关键事件是亚稳态黄色发射极的演化(maxim = 580 nm),在配体RII的情况下其结构确定揭示了二聚体非溶剂化拓扑[Au2Ag2RII 4] 2。综上所述,这些结果揭示了双金属团簇[Au2Ag2(RI / RII)4]的由两亲情驱动的自组装的两阶段情况:(1)发射绿光的单体初始缔合以形成亚稳态发黄光二聚体和去溶剂化,然后(2)二聚体的溶解及其自组装形成红色发光的线性结构,具有离域边界轨道和减小的能隙。从[Au2Ag2RII 4(tfa)2] 2-(Δmaxem= 540 nm)的绿色发射超过迄今为止观察到的基于[Au2Ag2]的结构的最高能量,从而扩大了从相关结构的发射的光谱切片超过140 nm ,从绿色区域到深红色区域。 ©2011美国化学学会。

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