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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Reversible thermal-mode control of luminescence from liquid-crystalline gold(I) complexes
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Reversible thermal-mode control of luminescence from liquid-crystalline gold(I) complexes

机译:液晶金(I)配合物的发光的可逆热模式控制

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摘要

The synthesis and characterisation of liquid-crystalline (LC) gold complexes designed to have a rod-like structure in a dimeric form are described, and the relationship between their photophysical properties and aggregated structure is discussed. The luminescence intensities of the complexes were enhanced in the condensed phase, meaning that the complexes showed aggregation-induced emission. Observed photoluminescence in the condensed phase could be assigned to a monomer emission; however, luminescence properties were strongly affected by the aggregated structures of the complexes. A reversible "on-off" switching of the luminescence induced by the phase transition between LC and isotropic phases is demonstrated. Moreover, complex lb showed thermochromic photoluminescence controlled by the aggregated structure; the colour of luminescence could be reversibly controlled by the phase transition between crystalline and LC phases. These LC gold complexes show potential application as materials for novel light-emitting devices.
机译:描述了设计为具有二聚体形式的棒状结构的液晶(LC)金配合物的合成和表征,并讨论了其光物理性质与聚集结构之间的关系。在凝聚相中,复合物的发光强度增强,这意味着复合物显示出聚集诱导的发射。凝结相中观察到的光致发光可归因于单体发射;然而,发光性能受到配合物聚集结构的强烈影响。证明了由LC和各向同性相之间的相变引起的发光的可逆“开-关”切换。此外,复合物1b显示出受聚集结构控制的热致变色光致发光。发光的颜色可以通过晶相和LC相之间的相变可逆地控制。这些LC金络合物显示出作为新型发光器件材料的潜在应用。

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