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On the Nature of Luminescence Thermochromism of Multinuclear Copper(I) Benzoate Complexes in the Crystalline State

机译:关于多核铜(I)苯甲酸盐复合物在晶体状态下的发光热切割性质

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摘要

A model luminescent [(PhCO2)4Cu4] (Cu4) complex in the crystalline state was investigated via combined crystallographic and spectroscopic techniques contributed substantially by theoretical modelling. The complex appeared to exhibit luminescence thermochromism, i.e., red phosphorescence at room temperature which changes to green when lowering the temperature to 90 K. The low-energy emissive state was assigned as a cluster-centred triplet, 3CC. The emission from this state predicted in TDDFT (~635 nm) matches the experimental red band observed at 660–715 nm. In contrast, the nature of the high-energy “green” band was less straightforward. The next reached cluster-centred triplet excited state occurred to be energetically close to the experimental value of ~545 nm. The two excited states also exhibit significant metal-to-ligand and ligand-to-metal charge transfer characteristics, especially for solid-state distorted geometries. In both cases the cluster core was expected to become notably contracted when compared to the ground state. Time-resolved photocrystallographic results supported the computationally predicted core contraction upon excitation. Additionally, the differences between the spectroscopic behaviour of the related tetra- and hexanuclear copper(I) complexes, Cu4 and Cu6 (i.e., [(PhCO2)6Cu6]) in the crystalline state were discussed and examined. It appeared that crystal packing may constitute an important factor as far as the lack of luminescence thermochromism in the latter case is concerned. Synopsis: Structure–property relationships characterising a model luminescent [(PhCO2)4Cu4] (Cu4) complex in the crystalline state were investigated via combined crystallographic and spectroscopic techniques contributed by theoretical modelling, and compared with the properties of the related [(PhCO2)6Cu6] (Cu6) complex.
机译:通过组合的晶体和光谱技术研究了结晶状态中的模型发光[(PHCO2)4Cu4](Cu 4)复合物,基本上通过理论建模贡献。该复合物似乎表现出发光热致变色,即室温下的红色磷光,当将温度降低到90k时,将变为绿色变化。低能量发射状态被分配为簇中心的三联网,3cc。在TDDFT(〜635nm)中预测的这种状态的发射与660-715nm观察到的实验红带。相比之下,高能量“绿色”频段的性质不太直接。接下来的达到的簇居中的三联振兴状态发生在靠近〜545nm的实验值的高端近。两个激发态还表现出显着的金属 - 配体和配体 - 金属电荷转移特性,特别是对于固态变形几何形状。在这两种情况下,与地面州相比,群集核心预计会变得明显收缩。时间分辨的光电镀结果支持励磁时的计算预测的核心收缩。另外,讨论了结晶状态中相关的四核铜(I)络合物,Cu4和Cu6(即[(PHCO 2)6Cu6])的光谱行为之间的差异。目前似乎晶体包装可以构成后一种情况下缺乏发光热切割的重要因素。提示:通过组合的晶体和光谱技术研究了表征模型发光[(PHCO2)4Cu4](Cu4)复合物的结构性质关系,并通过理论模拟贡献的晶体和光谱技术,并与相关[(PHCO2)6CU6的性质进行比较](CU6)复合物。

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