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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Copolyfluorenes Containing Bridged Triphenylamine or Triphenylamine: Synthesis, Characterization, and Optoelectronic Properties
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Copolyfluorenes Containing Bridged Triphenylamine or Triphenylamine: Synthesis, Characterization, and Optoelectronic Properties

机译:含桥联三苯胺或三苯胺的共聚芴:合成,表征和光电性能。

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A novel aryl-bridged triphenylamine derivative, 7-t-butyl-5,5,9,9-tetraaryl-13b-aza-naphtho[3,2,1-de]anthracene (ABTPA) was designed and synthesized. The alternating copolymers of ABTPA/dihexylfluorene (P1) and triphenylamine (TPA)/dihexylfluorene (P2) were synthesized by Suzuki coupling reaction. P1 shows excellent thermal stability with a decomposition temperature of 440 degrees C and a glass-transition temperature of 326 degrees C. The HOMO energy levels of the two polymers are very close (-5.15 eV for P1 and -5.13 eV for P2). The maximum absorption peak of P1 is red shifted by 23 nm with respect to P2, because the incorporation of ABTPA units into the PF backbone enhances the electronic conjugation degree compared with the case of TPA units. The rigidity and the steric hindrance of the ABTPA in P1 result in a small Stokes shift and almost the same emission spectra of P1 between its film and solution. A PLED with simple configurations of ITO/PI/TNS (tetranaphthalen-2-yl-silane)/Alq(3) (tris(8-hydroxyquinolinolato)aluminum)/Al emits a blue light with emission peak at 436 nm, and exhibits a maximum current efficiency of 1.89 cd/A and a maximum luminance of 4183 cd/m(2), which is superior to the device with P2 as emissive layer under the identical conditions. These results indicate that ABTPA unit could be a very promising candidate to replace TPA unit and find widely application in organic/polymeric optoelectronic materials.
机译:设计并合成了一种新型的芳基桥联三苯胺衍生物7,t-丁基-5,5,9,9-四芳基-13b-氮杂-萘并[3,2,1-de]蒽(ABTPA)。通过铃木偶联反应合成了ABTPA /二己基芴(P1)和三苯胺(TPA)/二己基芴(P2)的交替共聚物。 P1具有出色的热稳定性,分解温度为440摄氏度,玻璃化转变温度为326摄氏度。这两种聚合物的HOMO能级非常接近(P1为-5.15 eV,P2为-5.13 eV)。 P1的最大吸收峰相对于P2红移了23 nm,因为与TPA单元相比,将ABTPA单元结合到PF主链中可以增强电子共轭度。 P1中ABTPA的刚度和空间位阻导致其斯托克斯位移小,并且其薄膜和溶液之间的P1发射光谱几乎相同。具有简单配置的ITO / PI / TNS(四萘-2-基硅烷)/ Alq(3)(三(8-羟基喹啉甲酰基)铝)/ Al的PLED发出蓝光,其发射峰在436 nm处显示最大电流效率为1.89 cd / A,最大亮度为4183 cd / m(2),在相同条件下优于以P2作为发光层的器件。这些结果表明,ABTPA单元可能是替代TPA单元的非常有前途的候选者,并在有机/聚合物光电材料中得到广泛应用。

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