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首页> 外文期刊>Polymer Journal >Catalyst-transfer system in stoichiometry-independent AA plus BB-type Migita-Kosugi-Stille coupling polycondensation using ester-functionalized dibromo monomer
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Catalyst-transfer system in stoichiometry-independent AA plus BB-type Migita-Kosugi-Stille coupling polycondensation using ester-functionalized dibromo monomer

机译:催化剂转送系统stoichiometry-independent AA + BB-typeMigita-Kosugi-Stille耦合缩聚使用ester-functionalized dibromo单体

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Catalyst-transfer systems have emerged in the condensative chain polymerization of AB-type monomers and stoichiometry-independent polycondensation of AA- and BB-type monomers to synthesize pi-conjugated polymers. Although catalyst-transfer polycondensation (CTP) systems have often been explained by a ring-walking process of catalytic metals with a main chain, the functional-group effect of aromatic monomers on such CTP phenomena is unclear. In this study, stoichiometry-independent Migita-Kosugi-Stille coupling polycondensation was performed between 2,5-bis(trimethyl-stannyl)thiophene and an ester-functionalized dibromo monomer, which is bis(2-butyloctyl) 2,5-dibromoterephthalate, to obtain high-molecular-weight pi-conjugated poly(phenylene thienylene) (M-n = 16,800). The method uses a 2-fold excess of the dibromo monomer toward the distannylated monomer. Such successful nonstoichiometric polycondensation may be derived from the intramolecular Pd(0) catalyst transfer on the aromatic dibromo monomer after the first coupling reaction between the dibromo monomer and stannylated compounds during polymerization. The results of model reactions and DFT calculations using ester-, ether- and alkyl-functionalized dibromo compounds suggest that incorporating the ester-carbonyl group into aromatic dibromo monomers is a key molecular design strategy to realize an efficient intramolecular Pd(0) catalyst-transfer system.
机译:催化剂转送系统中出现可凝结的AB-type链聚合单体和stoichiometry-independentAA -缩聚和BB-type单体合成pi-conjugated聚合物。催化剂转送缩聚(CTP)系统经常被解释为ring-walking吗催化金属与主链的过程,芳香族单体的官能团的影响在这样的CTP现象尚不清楚。stoichiometry-independent Migita-Kosugi-Stille之间的耦合进行缩聚2, 5-bis (trimethyl-stannyl)噻吩和一个ester-functionalized dibromo单体,5-dibromoterephthalate, bis (2-butyloctyl) 2获得高分子量pi-conjugated聚亚苯基thienylene) (m n = 16800)。方法使用一个2倍的dibromo过剩单体distannylated单体。成功的非化学计量缩聚可能是来自于分子内Pd(0)催化剂在芳香dibromo单体转移第一个dibromo之间的偶联反应单体和stannylated化合物聚合。和DFT计算使用酯、醚和alkyl-functionalized dibromo化合物显示将ester-carbonyl集团纳入芳香dibromo单体是一个关键分子设计实现一种有效的策略分子内Pd(0)催化剂转送系统。

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