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Synthesis of Poly(3-Hexylthiophene) with High Molecular Weight and Small Polydispersity

机译:具有高分子量和小多分散性的聚(3-己基噻吩)的合成

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Regioregular head-tail poly(3-hexylthiophenes) (HT-P3HT) with a controlled high molecular weight and a small polydispersity have been synthesized via an improved Kumada catalyst-transfer polycondensation (KCTP) by using the new-prepared hexylmagnesium bromide as the Grignard reagent. As the amount of nickel catalyst dichloro[1, 3-diphenylphosphinopropane] nickel (Ni(dppp)Cl_2) was 0.5% mol of the amount of monomer 2, 5-dibromo-3-hexylthiophene (DBHT) we can obtain a HT-P3HT with a high molecular weight Mn (38 449) and a small polydspersity (1.18). By using of LiCl as a co-catalyst, the regioregularity of the P3HT with high molecular weight (40 270) is maintained and the PDI (1.03) is smaller than that of the P3HT polymerized in the absence of LiCl but the conversion ratio of the monomer is promoted. The HT-P3HT with high molecular weight and small polydispersity will be an attractive candidate applied in solar cells.
机译:通过使用新制备的己基溴化物作为格氏子,通过改善的康马斯催化剂 - 转移缩聚(KCTP)合成了具有受控高分子量和小多分散性的高分子重量和小多分散性的植物细小尾酚(3-己二酮)(HT-P3HT)试剂。作为镍催化剂二氯[1,3-二苯基丙二醇丙烷]镍(Ni(DPPP)Cl_2)的量为0.5%摩尔的单体2,5-二溴-3-己基烯(DBHT),我们可以获得HT-P3HT具有高分子量Mn(38 449)和小的Polyspersity(1.18)。通过使用LiCl作为辅助催化剂,保持高分子量(4070)的P3HT的regioReguleary度,并且PDI(1.03)小于LiCl的不存在的P3HT聚合的P3HT但转化率单体促进。具有高分子量和小多分散性的HT-P3HT将是在太阳能电池中施加的有吸引力的候选者。

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