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首页> 外文期刊>Macromolecules >Synthesis of Asymmetrically Arranged Dendrimers with a Carbazole Dendron and a Phenylazomethine Dendron
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Synthesis of Asymmetrically Arranged Dendrimers with a Carbazole Dendron and a Phenylazomethine Dendron

机译:咔唑树枝状和苯基偶氮甲碱树枝状的不对称排列树状分子的合成

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Asymmetrically arranged dendrimers with a carbazole dendron and a phenylazomethine dendron were synthesized by the combination of Ullmann reaction and a dehydration reaction in the presence of titanium tetrachloride.Stepwise complexation in the phenylazomethine dendron unit within these dendrimers and SnCl_2 suggests a gradient in the electron density associated with the imine groups.The complexation of the dendrimer changes the HOMO/LUMO energy gap of the dendrimer.We show the dendrimers with higher generations have the larger HOMO values.The most electron-rich molecule,Cz3-DPA3,has the highest HOMO value of 5.35 eV and,accordingly,is expected to have the lowest barrier for the hole injection from the ITO electrode (4.6 eV) in OLEDs.However,for the HOMO energy levels of the carbazole dendrimer complex with SnCl_2,the energy levels of the carbazoles did not change based on almost the same redox potentials as those of the dendrimers themselves.Using Cz3-DPA3 as a hole-transport layer (HTL),only complexation with metal ions results in the enhanced maximum luminescence from 4041 to 10 640 cd/m~2 by only complexing with SnCl_2 under the nonoptimized conditions.A complexation leads to a high EL efficiency because of the p-type-doped structure of the dendrimers as a hole-transport layer.
机译:在四氯化钛存在下,通过Ullmann反应和脱水反应的结合,合成了具有咔唑树枝状和苯基偶氮次甲基树枝状的不对称树枝状聚合物。树枝状聚合物的络合改变了树枝状聚合物的HOMO / LUMO能隙,表明高代数的树枝状聚合物具有较高的HOMO值。电子最多的分子Cz3-DPA3的HOMO值最高为5.35 eV,据估计对OLED中ITO电极的空穴注入的势垒最低(4.6 eV)。但是,对于咔唑树枝状聚合物与SnCl_2的HOMO能级,咔唑的能级不会基于与树枝状聚合物本身几乎相同的氧化还原电位而改变。使用Cz3-DPA3作为空穴传输层(H TL),仅在非优化条件下通过与SnCl_2的络合,仅与金属离子的络合可将最大发光强度从4041提高到10640 cd / m〜2。由于p型掺杂,络合物可提高EL效率树状聚合物的结构作为空穴传输层。

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