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Electrospun europium complex/polymer composite microfibers and its modified photoluminescence properties

机译:电纺complex复合物/聚合物复合超细纤维及其改良的光致发光性能

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摘要

Ribbon-like microfibers of a new composite of europium complex Eu(aspirin)_3(Phen) (aspirin is acetylsalicylic acid; Phen represents 1,10-phenanthroline) and polystyrene (PS) were prepared successfully by electrospinning with different mass ratios of Eu(aspirin)_3(Phen) complex to PS = 1:10, 1:40 and 1:160. The microfibers were characterized by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR) and fluorescence spectrophotometry. It was found that the fibers displayed excellent photoluminescence properties compared with rare-earth complex. The photoluminescence intensity and the emission intensity of the peak at 616 nm (~5D_0→~7F_2) of Eu-ions increased with the Eu(aspirin)_3(Phen) loading. No obvious fluorescence quenching was observed. Further discussion on the structural and optical properties of the microribbons was presented. This kind of materials might be expected to be applied for optical or optoelectronic devices.
机译:通过电纺制不同质量比的Eu(Eu(阿司匹林)_3(Phen)(阿司匹林是乙酰水杨酸; Phen代表1,10-菲咯啉)和聚苯乙烯(PS)的新型复合材料,形成带状微纤维。 PS = 1:10、1:40和1:160的阿司匹林)_3(苯)复合物。通过扫描电子显微镜(SEM),傅立叶变换红外光谱(FTIR)和荧光分光光度法对微纤维进行了表征。发现该纤维与稀土配合物相比显示出优异的光致发光性能。 Eu(阿司匹林)_3(Phen)的加入增加了Eu离子在616 nm(〜5D_0→〜7F_2)处的发光强度和峰值发射强度。没有观察到明显的荧光猝灭。提出了关于微带的结构和光学性质的进一步讨论。可以预期将这种材料应用于光学或光电设备。

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