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 >Electrochromic and electroluminescent devices based on a novel branched quasi-dendric fluorene-carbazole-2,5-bis(2-thienyl)-1H-pyrrole system
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Electrochromic and electroluminescent devices based on a novel branched quasi-dendric fluorene-carbazole-2,5-bis(2-thienyl)-1H-pyrrole system

机译:基于新型支化准树枝状芴-咔唑-2,5-双(2-噻吩基)-1H-吡咯体系的电致变色和电致发光器件

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We report here the synthesis of a novel branched quasi-dendric system, 9,9'-(9,9'-dihexylfluorene-2,7-diyl)bis[3,6-bis(2,5-bis(2-thienyl)pyrrol-1-yl)carbazole], (FCSNS), in four steps, followed by coating onto an ITO-coated glass surface by an electropolymerization process to give a very stable cross-linked polymeric film (poly-FCSNS). The yellowish-green color of this film in its neutral state changed reversibly to black upon oxidation. An electrochromic device, assembled in the sandwich configuration [ITO/anodically coloring polymer (poly-FCSNS)//gel electrolyte//cathodically coloring polymer/ (PEDOT)/ITO], exhibited a relatively short response time (about 1 s), a high redox stability, and a high coloration efficiency (1624 cm~2 C~(-1)). In addition to electrochromic studies, organic light-emitting diode (OLED) work was also carried out using FCSNS. A multilayer OLED having a configuration of ITO/ PEDOT:PSS/FCSNS/Alq3/LiF : Al was fabricated, and it showed a turn-on voltage of approximately 6 V and exhibited a bright green emission with a luminance of 3700 cd m~(-2). The maximum luminous efficiency was found to be 2.0 cd A~(-1) at 14 V and 11.75 mA cm~(-2). The emitted light from the OLED device is green, and has the color coordinates of (x, y) (0.33, 0.54) according to CIE. Electrochemical and optical properties were also studied by using cyclic voltammetry, UV-Vis absorption and fluorescence spectroscopy, respectively.
机译:我们在这里报告了一个新颖的分支准树突系统,9,9'-(9,9'-dihexylfluorene-2,7-diyl)bis [3,6-bis(2,5-bis(2-thienyl) (吡咯-1-基)咔唑],(FCSNS),分四个步骤,然后通过电聚合工艺涂覆到ITO涂覆的玻璃表面上,得到非常稳定的交联聚合物薄膜(poly-FCSNS)。该膜的中性状态的黄绿色在氧化时可逆地变为黑色。以三明治结构[ITO /阳极着色聚合物(poly-FCSNS)//凝胶电解质//阴极着色聚合物/(PEDOT)/ ITO]组装的电致变色器件表现出相对较短的响应时间(约1 s),氧化还原稳定性高,着色效率高(1624 cm〜2 C〜(-1))。除了电致变色研究,还使用FCSNS进行了有机发光二极管(OLED)的工作。制备了具有ITO / PEDOT:PSS / FCSNS / Alq3 / LiF:Al构型的多层OLED,其显示了大约6V的开启电压并显示了亮绿色发射,亮度为3700 cd m〜 -2)。发现在14 V和11.75 mA cm〜(-2)时的最大发光效率为2.0 cd A〜(-1)。 OLED装置发出的光是绿色的,并且根据CIE具有(x,y)(0.33,0.54)的颜色坐标。还分别通过循环伏安法,UV-Vis吸收法和荧光光谱法研究了电化学和光学性质。

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