首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >A new benzimidazole/carbazole hybrid bipolar material for highly efficient deep-blue electrofluorescence, yellow-green electrophosphorescence, and two-color-based white OLEDs
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A new benzimidazole/carbazole hybrid bipolar material for highly efficient deep-blue electrofluorescence, yellow-green electrophosphorescence, and two-color-based white OLEDs

机译:一种新型苯并咪唑/咔唑混合双极材料,用于高效的深蓝色电致荧光,黄绿色电致磷光和基于两种颜色的白色OLED

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摘要

The bipolar molecule CPhBzIm exhibits an excellent solid state photoluminescence quantum yield (φ_(PL) = 69%), triplet energy (E_T = 2.48 eV), and bipolar charge transport ability (≈_h ≈ ≈_e ≈ 10~(-5)-10~(-5) cm~2 V~(-1) s~(-1)). We have used it to fabricate a non-doped deep-blue organic light emitting diode (OLED) exhibiting promising performance [η_(ext) = 3%; CIE = (0.16, 0.05)] and to serve as host material for a yellow-green phosphorescent OLED [η_(ext) = 19.2%; CIE = (0.42, 0.56)]. Exploiting these dual roles, we used CPhBzIm in a simple singly doped, two-color-based white OLED (η_(ext) = 7%; CIE = 0.31, 0.33).
机译:双极分子CPhBzIm具有出色的固态光致发光量子产率(φ_(PL)= 69%),三重态能量(E_T = 2.48 eV)和双极电荷传输能力(≈_h≈≈__e≈10〜(-5)- 10〜(-5)cm〜2 V〜(-1)s〜(-1))。我们已经用它来制造无掺杂的深蓝色有机发光二极管(OLED),其表现出令人鼓舞的性能[η_(ext)= 3%; CIE =(0.16,0.05)]并用作黄绿色磷光OLED的主体材料[η_(ext)= 19.2%; CIE =(0.42,0.56)]。利用这些双重作用,我们将CPhBzIm用于简单的单掺杂,基于双色的白色OLED(η_(ext)= 7%; CIE = 0.31、0.33)。

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