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首页> 外文期刊>chemistryselect >Aggregation Induced Emission (AIE) Properties of Heteroleptic Ir-III Complexes With Non-chromophoric Ligand Effect: Synthesis, Characterization and Photophysical Investigations
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Aggregation Induced Emission (AIE) Properties of Heteroleptic Ir-III Complexes With Non-chromophoric Ligand Effect: Synthesis, Characterization and Photophysical Investigations

机译:具有非发色配体效应的异质 Ir-III 复合物的聚集诱导发射 (AIE) 特性:合成、表征和光物理研究

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Three bis-cyclometalated iridium(III) complexes (1-3) Ir(ppz)(2)(L-1)(1), Ir(ppz)(2)(L-2)(2) and Ir(ppz)(2)(L-3)(3), containing 1-phenypyrazole (ppz) as the cyclometalated ligands and pyrazolone based derivatives as ancillary ligands (L-1-L-3) were synthesized and characterized by spectroscopic techniques. All the complexes show strong photoluminescence in the range of 517-521 nm in solid state at room temperature. However, it does not show luminescence in solution state due to 'Aggregation Induced Emission' (AIE). Photophysical and electrochemical properties were performed to understand and evaluate the AIE behavior of designed complexes on the basis of structural properties relationship with other reported iridium complexes. The designed complexes show good phi(PL) in the range of 0.18-0.21 in solid state due to non-chromophoric schiff base ligands lower the energy of the triplet state to such a value that the non-radiative (NR) state is no longer thermally accessible at room temperature. The ancillary ligands also tune the HOMO and LUMO level, where the decreases LUMO mainly influence by substitution effect of phenyl ring of Schiff base ligands and subsequently it makes the excited state far from the non-radiative states, leading to enhance the efficiency even at room temperature with the bandgap (E-g) in the range of 2.63-2.65 eV. All the designed complexes are thermally stable upto 300 degrees C.
机译:以1-苯吡唑(ppz)为环金属化配体,吡唑啉酮衍生物为辅助配体(L-1-L-3),合成了3个双环金属化铱(III)配合物(1-3)[Ir(ppz)(2)(L-1)](1)、[Ir(ppz)(2)(L-2)](2)和[Ir(ppz)(2)(L-3)](3),并采用光谱技术对它们进行了表征。所有配合物在室温下固态均表现出517-521 nm范围内的强光致发光。然而,由于“聚集诱导发射”(AIE),它在溶液状态下不会发光。基于与其他报道的铱配合物的结构性质关系,进行光物理和电化学性质分析和评估设计配合物的AIE行为。所设计的配合物在固态下显示出良好的phi(PL),因为非发色团希夫碱配体将三重态的能量降低到非辐射(NR)态在室温下不再热可及的值。辅助配体还调节HOMO和LUMO能级,其中LUMO的降低主要受Schiff碱配体苯环取代效应的影响,从而使激发态远离非辐射态,从而在室温下提高效率,带隙(E-g)在2.63-2.65 eV范围内。所有设计的复合物在高达 300 摄氏度的温度下都具有热稳定性。

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