首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Solution-processable Yb/Er 2D-layered metallorganic frameworks with high NIR-emission quantum yields
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Solution-processable Yb/Er 2D-layered metallorganic frameworks with high NIR-emission quantum yields

机译:溶液可处理的YB / ER 2D层状金属无人框架,具有高NIR-发射量子产量

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Here we report on solution-processable homo- and hetero-metallic Yb3+, Er3+ and Gd3+ lanthanide 2D-layered metallorganic frameworks with the chlorocyananilate linker (ClCNAn(2-), the dianion of 2-chloro-5-cyano-3,6-dihydroxybenzoquinone) showing long-lived emission in the near-infrared (NIR) spectral region after efficient ligand photosensitization. In these compounds the nature of the lanthanide ion determines the in-plane structural arrangement of the 2D layers, giving rise to peculiar porous networks. The investigated compounds, which are synthesized in high yields through a rapid one-pot procedure, show strong luminescence upon ligand excitation in a broad visible range with unusually long-lived emission for Er3+ (similar to 10 mu s), either in the bulk crystalline state, in solution, or in crystalline films dropcast from solution. The remarkable sensitization properties of the ligand provide NIR emission total quantum yields as high as 15.6% for Yb3+ and 0.16% for Er3+ in DMSO-d(6), which are the highest so far reported for coordination compounds. Efficient Yb-to-Er energy transfer is observed in the heterometallic derivative, which is maintained in all the studied material phases. The remarkable optical performance, the high thermal stability, the facile synthesis and the suitability for solution processing make these materials particularly promising for integration in photonic devices working in the NIR.
机译:在这里,我们在氯氰酸盐连接物(Clcnan(2-),2-氯-5-氰基-3,6-3,6-3,6-36 - 二羟基苯醌)在有效配体光敏后,近红外(NIR)光谱区域的长寿命发射。在这些化合物中,镧系元素离子的性质决定了2D层的面内结构布置,从而产生特殊的多孔网络。所研究的化合物,通过快速的单罐方法以高产率合成,在宽的可见范围内,在宽的可见范围内,具有异常长的百分之一的ER3 +(类似于10μs)的强化发光,无论是在散装晶体中溶液中的状态,在溶液中或晶体膜的液体薄膜中。配体的显着敏化性能为YB3 +和0.16%在DMSO-D(6)中为YB3 +和0.16%提供的Nir排放总量子产率,这是迄今为止据报道的配位化合物最高。在杂常数衍生物中观察到高效的Yb-or ER能量转移,其保持在所有研究的材料相中。显着的光学性能,高热稳定性,容易合成和溶液加工的适用性使得这些材料具有特别有希望在所述NIR中工作的光子器件中的集成。

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