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首页> 外文期刊>Advanced Functional Materials >A Twisting Donor-Acceptor Molecule with an Intercrossed Excited State for Highly Efficient, Deep-Blue Electroluminescence
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A Twisting Donor-Acceptor Molecule with an Intercrossed Excited State for Highly Efficient, Deep-Blue Electroluminescence

机译:具有交叉激发态的扭曲供体-受体分子,可实现高效的深蓝色电致发光

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摘要

In an organic electroluminescent (EL) device, the recombination of injected holes and electrons produces what appears to be an ion-pair or charge-transfer (CT) exciton, and this CT exciton decays to produce one photon directly, or relaxes to a low-lying local exciton (LE). Thus the full utilization of both the energy of the CT exciton and the LE should be a pathway for obtaining high-efficiency EL. Here, a twisting donor-acceptor (D-A) triphenylamine-imidazol molecule, TPA-PPI, is reported: its synthesis, photophysics, and EL performance. Prepared by a manageable, one-pot cyclizing reaction, TPA-PPI exhibits deep-blue emission with high quantum yields (90%) both in solution and in the solid state. Fluorescent solvatochromic experiments for TPA-PPI solutions show a red-shift of 57 nm (3032 cm~(-1)) from low-polarity hexane (406 nm) to high-polarity acetonitrile (463 nm), accompanied by the gradual disappearance of the vibrational band in the spectra with increased solvent polarity. The photophysical investigation and DFT analysis suggest an intercrossed CT and LE excited state of the TPA-PPI, originating from its twisting D-A configuration. This is a rare instance that a CT-state material shows highly efficient deep-blue emission. EL characterization demonstrates that, as a deep-blue emitter with CIE coordinates of (0.15, 0.11), the performance of a TPA-PPI-based device is rather excellent, displaying a maximum current efficiency of >5.0 cd A~(-1), and a maximum external quantum efficiency of >5.0%, corresponding to a maximum internal quantum efficiency of >25%. The effective utilization of the excitation energy arising from materials with intercrossed-excited-state (LE and CT) characters is thought to be beneficial for the improved efficiency of EL devices.
机译:在有机电致发光(EL)器件中,注入的空穴和电子的复合产生似乎是离子对或电荷转移(CT)激子的形式,并且该CT激子衰减以直接产生一个光子,或弛豫到很低的水平。 -躺在本地激子(LE)。因此,CT激子能量和LE能量的充分利用应该成为获得高效率EL的途径。在这里,报道了扭曲的供体-受体(D-A)三苯胺-咪唑分子TPA-PPI:其合成,光物理和EL性能。通过可控的一锅式环化反应制备的TPA-PPI在溶液和固态下均显示深蓝色发射,并具有高量子产率(90%)。 TPA-PPI溶液的荧光溶剂化实验显示,从低极性己烷(406 nm)到高极性乙腈(463 nm)出现57 nm(3032 cm〜(-1))的红移,并伴随着逐渐消失。溶剂极性增加的光谱中的振动带。光物理研究和DFT分析表明,TPA-PPI的CT和LE激发态相互交叉,这源于其扭曲的D-A构型。这是一种罕见的情况,CT态材料显示出高效的深蓝色发射。 EL表征表明,作为CIE坐标为(0.15,0.11)的深蓝色发射器,基于TPA-PPI的器件的性能非常出色,最大电流效率大于5.0 cd A〜(-1) ,并且最大外部量子效率> 5.0%,对应于最大内部量子效率> 25%。人们认为有效利用由具有交叉激发态(LE和CT)特性的材料产生的激发能对提高EL器件的效率是有益的。

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  • 来源
    《Advanced Functional Materials》 |2012年第13期|p.2797-2803|共7页
  • 作者单位

    State Key Lab of Supramolecular Structure and Materials Jilin University 2699 Qianjin Avenue Changchun, 130012, P.R. China;

    State Key Lab of Supramolecular Structure and Materials Jilin University 2699 Qianjin Avenue Changchun, 130012, P.R. China;

    State Key Lab of Supramolecular Structure and Materials Jilin University 2699 Qianjin Avenue Changchun, 130012, P.R. China;

    State Key Laboratory of Polymer Physics and Chemistry Changchun Institute of Applied Chemistry Chinese Academy of Sciences Changchun 130022, P.R. China;

    State Key Lab of Supramolecular Structure and Materials Jilin University 2699 Qianjin Avenue Changchun, 130012, P.R. China;

    State Key Lab of Supramolecular Structure and Materials Jilin University 2699 Qianjin Avenue Changchun, 130012, P.R. China;

    State Key Lab of Supramolecular Structure and Materials Jilin University 2699 Qianjin Avenue Changchun, 130012, P.R. China;

    State Key Lab of Supramolecular Structure and Materials Jilin University 2699 Qianjin Avenue Changchun, 130012, P.R. China;

    State Key Lab of Supramolecular Structure and Materials Jilin University 2699 Qianjin Avenue Changchun, 130012, P.R. China;

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