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首页> 外文期刊>Journal of Organometallic Chemistry >Synthesis and properties of organosilicon polymers containing 9,10-diethynylanthracene units with highly hole-transporting properties
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Synthesis and properties of organosilicon polymers containing 9,10-diethynylanthracene units with highly hole-transporting properties

机译:具有高空穴传输性能的含9,10-二乙硫基蒽单元的有机硅聚合物的合成与性能

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摘要

Coupling reactions of 9,10-di(lithioethynyl)anthracene with dichloromono-, di-, and trisilanes, Cl(SiR_2)_mCl (m = 1-3) gave polymers composed of alternating 9,10-diethynylanthracene and organosilicon units. With dichlorotetraorganodisilanes, the corresponding dianthracenophanes composed of two 9,10-diethynylanthracene units linked by tetraorganodisilanylene bridges were also obtained, together with the polymers. The emission spectra of the polymers with di- and trisilanylene units suggest that intrachain aggregation takes place in solution, although it is not obvious for the silanylene polymer. Cyclic voltammetric (CV) analysis of the polymers shows the evident dependence of the CV profiles on the lengths of the silicon chain between the diethynylanthracene units. When the polymer films were treated with FeCl_3 vapor, the films became conducting with the maximum conductivities in the order of 10~(-5) S cm~(-1). The double-layer-type electroluminescent (EL) devices were fabricated using these polymers as a hole-transporting layer and tris(8-quinolinotalo)aluminum (III) complex (Alq) as an electron-transporting-emitter layer. The turn-on voltage of the devices became higher and the maximum current density smaller, as increasing the number of silicon atoms in a polymer unit from m = 1 to 3. The highest luminance of 1300 cd m~(-2) was obtained from the device based on the silanylene-diethynylanthracene polymer.
机译:9,10-二(硫代乙炔基)蒽与二氯单-,二-和三硅烷Cl(SiR_2)_mCl(m = 1-3)的偶联反应产生了由交替的9,10-二乙炔基蒽和有机硅单元组成的聚合物。使用二氯四有机二硅烷,还获得了由两个通过四有机二亚硅烷基桥连接的9,10-二乙炔基蒽单元组成的相应的二蒽基硫烷。具有二亚甲硅烷基和三亚甲硅烷基单元的聚合物的发射光谱表明链内聚集在溶液中发生,尽管对于亚甲硅烷基聚合物并不明显。聚合物的循环伏安法(CV)分析表明,CV曲线对二乙炔基蒽之间的硅链长度有明显的依赖性。当用FeCl 3蒸气处理聚合物膜时,膜变得具有最大电导率,为10-(-5)S cm-(-1)。使用这些聚合物作为空穴传输层,并使用三(8-喹啉基铝)铝(III)络合物(Alq)作为电子传输发射极层来制造双层型电致发光(EL)器件。随着聚合物单元中硅原子的数量从m = 1增加到3,器件的开启电压变得更高,而最大电流密度变得更小。获得的最高亮度为1300 cd m〜(-2)。该装置基于亚甲硅烷基-二乙炔基蒽聚合物。

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