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首页> 外文期刊>Macromolecules >Highly bright and efficient electroluminescence of new PPV derivatives containing polyhedral oligomeric silsesquioxanes (POSSs) and their blends
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Highly bright and efficient electroluminescence of new PPV derivatives containing polyhedral oligomeric silsesquioxanes (POSSs) and their blends

机译:含有多面体低聚倍半硅氧烷(POSS)及其混合物的新型PPV衍生物的高亮度高效电致发光

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摘要

A new series of highly bright and efficient poly(p-phenylenevinylene)s (PPV) s based on polyhedral oligomeric silsesquioxanes (POSSs) was synthesized via the Gilch polymerization method. The three POSS-containing PPVs are as follows: POSS05-PPV(containing 5 mol % POSS-appended PPV units), POSS25-PPV, and POSS100-PPV (this is the first d-conjugated polymer composed of 100 mol % POSSs-appended repeating units). These polymers were found to be completely soluble in common organic solvents, and homogeneous thin films of these polymers were fabricated easily by spin-coating onto the quartz glasses and indium tin oxide (ITO) substrates. The POSS-containing PPVs exhibit higher glass transition temperatures (64-77 degrees C) than that of MEHPPV (58 degrees C), indicating that electroluminescence (EL) devices fabricated with these polymers should have good thermal stabilities. The presence of the POSSs in the PPV side chains was found to result in the lowering of the maximum wavelengths of the UV-vis absorption and photoluminescence (PL) spectra, which occurs because of the nanosize effect of the POSS moieties appended to the polymer backbones. As the POSS content ratio in the polymers increases, the maximum wavelengths of the UV-vis absorption and PL emission spectra are increasingly blue-shifted except for those of POSS05-PPV. Light-emitting diodes (LEDs) with the configuration of ITO/ PEDOT:PSS/polymer/Ca/Al were fabricated using the novel POSS-containing PPVs. The LED devices based on the POSS-containing PPVs were found to exhibit maximum EL wavelengths ranging from 577 to 543 nm (POSS05-PPV,577 nm; POSS25-PPV, 575 nm; and POSS100-PPV, 543 nm). The LED devices containing POSS05-PPV or POSS25-PPV emitted orange-red light, whereas that containing POSS100-PPV emitted yellow-orange light. Interestingly, the maximum brightness and luminance efficiency of the POSS25-PPV device were found to be up to 6340 cd/m(2) at 13.2 V and 0.26 cd/A at 6190 cd/m(2), respectively, which are higher maximum brightness and luminance efficiencies than those of the MEH-PPV device (3880 cd/m(2) at 14.8 V and 0.075 cd/A at 3880 cd/m(2)). The improvements in the EL properties of PPV derivatives that result from the introduction of the POSS moieties into the PPVs and the contribution of the POSS moieties to the conjugated polymer matrixes of EL devices were also reproduced in binary blend systems composed of a POSS-containing PPV (POSS25-PPV) and MEH-PPV. Surprisingly, the luminescence efficiency (0.48 cd/ A at 10540 cd/m(2)) of the binary blend consisting of 5 wt % of POSS25-PPV and 95 wt % of MEH-PPV was found to be enhanced by a factor of 6.4 with a maximum brightness of 11 010 cd/m(2) (at 14.3 V). It is likely that the enhanced device performance of POSS25-PPV and the binary blend consisting of 5 wt % of POSS25-PPV and 95 wt % of MEH-PPV are due to the formation of suitable insulation domains of the POSS moieties in the conjugated polymer matrixes, resulting in a balance of charge carriers, that is, of electrons and holes.
机译:通过Gilch聚合法合成了基于多面体低聚倍半硅氧烷(POSSs)的一系列新的高亮度,高效的聚对苯撑亚乙烯基(PPV)。三种含POSS的PPV如下:POSS05-PPV(含5 mol%POSS附加的PPV单元),POSS25-PPV和POSS100-PPV(这是第一个由100 mol%附加POSS组成的d共轭聚合物)重复单元)。发现这些聚合物完全溶于常见的有机溶剂中,并且可以通过旋涂到石英玻璃和氧化铟锡(ITO)基板上轻松制造这些聚合物的均质薄膜。含POSS的PPV的玻璃化转变温度(64-77摄氏度)比MEHPPV(58摄氏度)更高,这表明用这些聚合物制成的电致发光(EL)器件应具有良好的热稳定性。发现PPV侧链中POSS的存在会导致UV-vis吸收和光致发光(PL)光谱的最大波长降低,这是由于POSS部分附加到聚合物主链的纳米尺寸效应引起的。随着聚合物中POSS含量比的增加,除POSS05-PPV的波长外,UV-vis吸收光谱和PL发射光谱的最大波长逐渐蓝移。使用新型的含POSS的PPV制造了具有ITO / PEDOT:PSS /聚合物/ Ca / Al构型的发光二极管(LED)。发现基于含POSS的PPV的LED器件显示的最大EL波长为577至543 nm(POSS05-PPV,577 nm; POSS25-PPV,575 nm; POSS100-PPV,543 nm)。包含POSS05-PPV或POSS25-PPV的LED器件发出橙红色的光,而包含POSS100-PPV的LED器件发出橙黄色的光。有趣的是,发现POSS25-PPV器件的最大亮度和亮度效率分别在13.2 V和6190 cd / m(2)时分别高达6340 cd / m(2)和0.26 cd / A。比MEH-PPV装置的亮度和亮度效率更高(在14.8 V时为3880 cd / m(2),在3880 cd / m(2)下为0.075 cd / A)。在由含POSS的PPV组成的二元共混体系中,也再现了PPV衍生物的EL性质的改善,该改善是由于将POSS部分引入PPV中以及POSS部分对EL器件的共轭聚合物基质的贡献。 (POSS25-PPV)和MEH-PPV。令人惊讶的是,发现由5 wt%的POSS25-PPV和95 wt%的MEH-PPV组成的二元共混物的发光效率(在10540 cd / m(2)时为0.48 cd / A)提高了6.4倍最大亮度为11010 cd / m(2)(在14.3 V时)。 POSS25-PPV和由5 wt%的POSS25-PPV和95 wt%的MEH-PPV组成的二元共混物的增强的器件性能可能是由于在共轭聚合物中形成了合适的POSS部分绝缘域矩阵,导致电荷载流子,即电子和空穴的平衡。

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