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Near-UV to red-emitting charged bis-cyclometallated iridium(iii) complexes for light-emitting electrochemical cells

机译:近紫外至发红光的带电双环金属化铱(iii)配合物,用于发光电化学电池

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Herein we report a series of charged iridium complexes emitting from near-UV to red using carbene-based NC: ancillary ligands. Synthesis, photophysical and electrochemical properties of this series are described in detail together with X-ray crystal structures. Density Functional Theory calculations show that the emission originates from the cyclometallated main ligand, in contrast to commonly designed charged complexes using bidentate NN ancillary ligands, where the emission originates from the ancillary NN ligand. The radiative process of this series of compounds is characterized by relatively low photoluminescence quantum yields in solution that is ascribed to non-radiative deactivation of the excited state by thermally accessible metal-centered states. Despite the poor photophysical properties of this series of complexes in solution, electroluminescent emission from the bluish-green to orange region of the visible spectrum is obtained when they are used as active compounds in light-emitting electrochemical cells. This journal is
机译:在本文中,我们报告了使用基于卡宾的NC:辅助配体从近紫外线发射到红色的一系列带电铱配合物。对该系列的合成,光物理和电化学性质以及X射线晶体结构进行了详细描述。密度泛函理论计算表明,发射来自环金属化的主要配体,与通常设计的使用双齿NN辅助配体的带电配合物相反,该发射体源自辅助NN配体。该系列化合物的辐射过程的特征在于溶液中相对较低的光致发光量子产率,这归因于通过热可及的金属中心态对激发态的非辐射失活。尽管这一系列配合物在溶液中的光物理性能很差,但当将它们用作发光电化学电池中的活性化合物时,仍能从可见光谱的蓝绿色到橙色区域获得电致发光。这本日记是

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