首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Improved Energy Transfer through the Formation of the β Phase for Polyfluorenes Containing Phosphorescent Iridium(III) Complexes
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Improved Energy Transfer through the Formation of the β Phase for Polyfluorenes Containing Phosphorescent Iridium(III) Complexes

机译:含磷铱(III)配合物的聚芴通过β相的形成改善了能量转移

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摘要

The formation of a β phase and its influence on the energy transfer efficiency were investigated for a series of polyfluorenes containing different contents of phosphorescent iridium(III) complex under various conditions. The effects of iridium (III) complex content, solution concentration, solventonsolvent ratio, as well as temperature on the β-phase formation in the copolymers were studied through UV-vis absorption, photoluminescence, and excitation spectra. First, it was easier to form a β phase for the copolymers with a low content of iridium(III) complex than those with a high content of iridium(III) complex. Second, an aggregation-induced β-phase formation for the copolymers was significantly displayed in the highly concentrated THF solution or THF/H2O mixtures. In addition, temperature was another factor for β-phase formation. And the βphase could be easily formed at low temperatures for copolymer films. On the basis of the above experimental results, the improved energy transfer from polyfluorene to iridium(III) complex was also observed through the β-phase formation.
机译:研究了一系列在不同条件下含有不同含量的磷铱(III)配合物的聚芴的β相的形成及其对能量转移效率的影响。通过紫外可见吸收,光致发光和激发光谱研究了铱(III)配合物含量,溶液浓度,溶剂/非溶剂比率以及温度对共聚物中β相形成的影响。首先,与铱(III)络合物含量高的共聚物相比,铱(III)络合物含量低的共聚物更容易形成β相。其次,在高浓度的THF溶液或THF / H2O混合物中,明显显示出共聚物引起的聚集诱导的β相形成。另外,温度是β相形成的另一个因素。对于共聚物薄膜,β相很容易在低温下形成。基于上述实验结果,通过β相形成,还观察到了从聚芴到铱(III)配合物的能量转移的改善。

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