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Synthesis of conjugated polymer consisting of three-component aromatic units via two-step cross-dehydrogenative-coupling reactions

机译:通过两步交叉脱氢 - 偶联反应的三组分芳族单元组成的共轭聚合物的合成

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摘要

A Pd-catalyzed two-step cross-dehydrogenative-coupling sequence enabled the synthesis of a pi-conjugated polymer consisting of three-component aromatic units, without the use of prefunctionalized starting substrates. When using 1,2,4,5-tetrafluorobenzene as the starting substrate, the cross-coupling reactions proceeded efficiently and the undesired homocoupling reaction was suppressed, producing a new donor-acceptor pi-conjugated polymer. The introduction of a 4H-cyclopenta[2,1-b:3,4-b']-dithiophenediyl unit between the tetra-fluorophenylene units enhanced coplanarity along the polymer chain, thus lowering the energy gap of the polymer. The obtained polymer was also evaluated for use as an emitting material in organic light-emitting diodes.
机译:PD催化的两步交叉脱氢偶联序列使得合成由三组分芳族单元组成的PI缀合聚合物,而不使用预官能的起始基材。 当使用1,2,5-四氟苯苯作为起始基底时,有效地进行了交叉偶联反应,抑制了不希望的同性耦合反应,产生了一种新的供体 - 受体Pi缀合聚合物。 在四氟苯单元之间的4H-环戊基[2,1-B:3,4-B'] - 二苯二苯基单元沿聚合物链增强共面,从而降低聚合物的能隙。 还评估所得聚合物用作有机发光二极管中的发光材料。

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