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Synthesis of Fluorene Based Alternating Copolymers using Direct Arylation Polymerization

机译:用直接芳基化聚合对芴基交替共聚物的合成

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Many researches have been done to obtain a low band gap and high Polymeric solar cell (PSCs) polymer either by creating new polymer or revising reported polymers from previous studies. In present work, two new copolymers were synthesized through direct arylation polymerization to produce poly(9,9-didodecylfluorene-alr-benzo[c][l,2,5]thiadiazole (PI) and poly(9,9-didodecylfluorene-alt-thieno[3,2-bjthiophene) (P2). The PI and P2 are donor-accepter copolymers. PI and P2 were compared to investigate its suitability to be applied in PSCs. The polymers obtained were characterized using FT-IR, NMR and LTV-Vis spectroscopy. PI shows two adsorption bands at A.max, = 243 nni and = 320 nm, whereas P2 also shows two adsorption bands at = 243 nm and = 427 nm. The optical band gap was calculated, PI enabled band gap of 3.88 eV while P2 showed band gap of 2.91 eV. This work could be provided an insight to design and synthesize more efficient fluorene-based copolymers as acti .e layer of PSCs in due course.
机译:为了获得低禁带和高聚物太阳能电池(PSCs)聚合物,人们进行了许多研究,包括创建新的聚合物或修改先前研究中报道的聚合物。在目前的工作中,通过直接芳基化聚合合成了两种新的共聚物,以制备聚(9,9-二十二烷基芴-alr-苯并[c][l,2,5]噻二唑(PI)和聚(9,9-二十二烷基芴-alt-噻吩[3,2-噻吩)(P2).PI和P2是给体-受体共聚物。将PI和P2进行比较,以研究其在PSC中的适用性。利用FT-IR、NMR和LTV-Vis光谱对所得聚合物进行了表征。PI在A.max处显示两条吸附带,=243 nni和=320 nm,而P2在=243 nm和=427 nm处也显示两条吸附带。计算了光学带隙,PI使能带隙为3.88 eV,而P2显示带隙为2.91 eV。这项工作为设计和合成更高效的芴基共聚物提供了新的思路。在适当的时候对PSC进行e层测试。

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