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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Controllable synthesis of iridium(ni)-based aggregationinduced emission and/or piezochromic luminescence phosphors by simply adjusting the substitution on ancillary ligandst
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Controllable synthesis of iridium(ni)-based aggregationinduced emission and/or piezochromic luminescence phosphors by simply adjusting the substitution on ancillary ligandst

机译:通过简单地调节辅助配体上的取代基,可控制地合成基于铱(ni)的聚集诱导的发射和/或压致变色发光磷光体

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摘要

Three multifunctional cationic iridium(III)-based materials with aggregation-induced emission (AIE) and piezochromic luminescence (PCL) behavior have been rationally designed with the help of the theoretical calculations and successfully synthesized. All complexes contain the same cyclometalated ligand, 1-(2,4-difluorophenyl)-1H-pyrazole (dfppz), while functionalized ancillary ligands with different substitution are used to control their photophysical properties. Complex 1 and 2 with ancillary ligands modified with aliphatic chains and carbazole end-capped alkyl groups, respectively, undergo remarkable and reversible changes in emission color in the solid state upon grinding or heating. In addition, 2, characterized as having the ~3ILCT excited-state feature, simultaneously exhibits an interesting AIE behavior, showing almost non-emission in good solution but enhanced emission in its solid state. Further modification of 2 by attachment of a tert-butyl group on the ligand obtains complex 3, an amorphous material, which only displays AIE activity. More importantly, with the merits of reversible PCL and AIE properties of 2, the rare multi-channel color change and temperature-dependent emission behavior of the iridium(III) complex have been observed. Furthermore, the emissive nanoaggregates of 2 can be efficiently quenched by picric acid, making it a highly sensitive chemosensor for explosives, which is demonstrated in iridium(III)-based luminescent materials for the first time.
机译:借助理论计算,合理设计了三种具有聚集诱导发射(AIE)和压致变色发光(PCL)行为的多功能阳离子铱(III)基材料,并成功进行了合成。所有配合物均包含相同的环金属化配体1-(2,4-二氟苯基)-1H-吡唑(dfppz),而具有不同取代基的官能化辅助配体用于控制其光物理性质。配合物1和配合物2分别用脂族链和咔唑封端的烷基修饰的辅助配体在研磨或加热后呈固态时发射色发生显着且可逆的变化。此外,2具有3ILCT激发态特征,同时具有有趣的AIE行为,在良好溶液中几乎不发射,但在固态下发射增强。通过叔丁基在配体上的连接进一步修饰2,得到复合物3,一种无定形物质,仅显示AIE活性。更重要的是,具有可逆PCL和AIE特性为2的优点,已观察到铱(III)配合物罕见的多通道颜色变化和与温度有关的发射行为。此外,2的发射纳米聚集体可被苦味酸有效地淬灭,使其成为用于炸药的高度敏感的化学传感器,这在铱(III)基发光材料中首次得到证明。

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