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首页> 外文期刊>Results in Physics >Comprehensive study on photophysical properties of Eu(TTA) 3bipy phosphor molecularly doped in PMMA and PS matrices
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Comprehensive study on photophysical properties of Eu(TTA) 3bipy phosphor molecularly doped in PMMA and PS matrices

机译:分子掺杂在PMMA和PS基质中的Eu(TTA)3bipy荧光粉的光物理性质的综合研究

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Successful synthesis of the most studied europium activated β-diketonate red light emitting complex Eu(TTA)3bipy in which 2,2′ bipyridine is used as a synergistic ligand has been demonstrated. This complex is incorporated into Polymethylmetha acrylate (PMMA) and Polysterene (PS) at 10 and 25?wt% to check its compatibility with polymers. The photophysical properties of molecularly doped blended thin films were characterized by UV–visible absorption spectra and photoluminescence (PL) spectra in the solid state as well as by dissolving them in different organic solvents such as chloroform, tetrahydrofuran (THF), toluene (basic) and acetic acid (acidic). From the results of UV–vis absorption spectra, probability transition parameters were calculated. Thin films illustrated red emission, always peaking at 614?nm when excited at 380?nm, irrespective of solid state or solvated state. Comparison of optical intensities of the doped thin films dissolved in chloroform for different wt % and the pure complex in the same solvent reveals enhancement in PL intensity in the doped thin films rather than in pure complex. Relative intensity ratio (R-values) for different wt% of doping in PMMA and PS matrix were found to be in the range of 13.0–14.3. CIE coordinates of Eu (TTA)3bipy in PMMA and PS for 10 and 25?wt% in solid state were found to be (0.66, 0.34) and (0.66, 0.33), whereas in solvated state the same was found to be (0.67, 0.32) and (0.66, 0.34), respectively, clearly indicating unique emission wavelength. These results dictates that the blended films are more economical as compared to the pure Eu(TTA)3bipy, proving its great potential as strong red light emitting phosphor for the fabrication of optoelectronic devices such as OLEDs, flat panel displays by solution processing techniques.
机译:已证明成功合成了研究最多的euro活化的β-二酮红色发光复合物Eu(TTA)3bipy,其中2,2'联吡啶用作协同配体。将该配合物以10和25wt%的比例掺入聚甲基丙烯酸甲酯(PMMA)和聚苯乙烯(PS)中,以检查其与聚合物的相容性。分子掺杂共混薄膜的光物理特性通过固态的紫外可见吸收光谱和光致发光(PL)光谱以及将其溶解在不同的有机溶剂(例如氯仿,四氢呋喃(THF),甲苯(碱性))中进行表征。和乙酸(酸性)。根据紫外可见吸收光谱的结果,计算了概率跃迁参数。薄膜显示红色发射,在380nm激发时总是在614nm达到峰值,而与固态或溶剂化状态无关。比较不同重量百分比的溶解在氯仿中的掺杂薄膜和相同溶剂中的纯配合物的光学强度,可以发现掺杂薄膜而不是纯配合物的PL强度增强。在PMMA和PS基质中,不同重量百分比的掺杂相对强度比(R值)在13.0-14.3范围内。在固态中,PMMA和PS中Eu(TTA)3 bipy的10和25wt%的CIE坐标分别为(0.66,0.34)和(0.66,0.33),而在溶剂化状态下,CIE坐标为(0.67 (分别为0.32)和(0.66,0.34)清楚地表明独特的发射波长。这些结果表明,与纯Eu(TTA)3bipy相比,共混膜更经济,证明了其作为通过溶液处理技术制造光电子器件(如OLED),平板显示器的强红色发光磷光体的巨大潜力。

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