首页> 外文期刊>Journal of the American Chemical Society >Development Of An Arylthiobismuthine Cocatalyst In Organobismuthine-mediated Living Radical Polymerization: Applications For Synthesis Of Ultrahigh Molecular Weight Polystyrenes And Polyacrylates
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Development Of An Arylthiobismuthine Cocatalyst In Organobismuthine-mediated Living Radical Polymerization: Applications For Synthesis Of Ultrahigh Molecular Weight Polystyrenes And Polyacrylates

机译:有机铋介导的活性自由基聚合中芳硫基铋的助催化剂的开发:超高分子量聚苯乙烯和聚丙烯酸酯的合成应用

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Diphenyl(2,6-dimesitylphenylthio)bismuthine (1a) serves as an excellent cocatalyst in organo-bismuthine-mediated living radical polymerization (BIRP). Both low and high molecular weight polystyrenes and poly(butyl acrylate)s (PBAs) with controlled molecular weights and low polydispersity indexes (PDIs) were synthesized by the addition of a catalytic amount of 1a to an organobismuthine chain-transfer agent, methyl 2-dimethylbismuthanyl-2-methylpropionate (3). The number-average molecular weight (M_n) of the resulting polymers increases linearly with the monomer/3 ratio. Structurally well-defined polystyrenes with M'_ns in the range from 1.0 × 10~4 to 2.0 × 10~5 and PDIs of 1.07-1.15 as well as PBAs with M'_ns in the range from 1.2 × 10~4 to 2.8 × 10~6 and PDIs of 1.06-1.43 were successfully prepared under mild thermal conditions. Control experiments suggested that 1a reversibly reacts with the polymer-end radical to generate an organobismuthine dormant species and 2,6-dimesitylphenylthiyl radical (2a). This reaction avoids the occurrence of chain termination reactions involving the polymer-end radicals and avoids undesired loss of the bismuthanyl polymer end group. The bulky 2,6-dimesitylphenyl group attached to the sulfur atom may prevent the addition of thiyl radicals to the vinyl monomers to generate new polymer chains.
机译:二苯基(2,6-二甲基间苯硫基)铋(1a)在有机铋介导的活性自由基聚合(BIRP)中是出色的助催化剂。通过将催化量的1a添加到有机铋链转移剂甲基2-上来合成低分子量和高分子量聚苯乙烯以及分子量受控和低多分散指数(PDI)的聚丙烯酸丁酯(PBA)。二甲基双变戊基-2-甲基丙酸酯(3)。所得聚合物的数均分子量(M_n)随单体/ 3比率线性增加。结构明确的M'_ns范围为1.0×10〜4至2.0×10〜5的聚苯乙烯和PDI为1.07-1.15以及M'_ns范围为1.2×10〜4至2.8×的PBA在温热条件下成功制备了10〜6,PDI为1.06-1.43。对照实验表明1a与聚合物端基可逆地反应,生成有机铋休眠基团和2,6-二苯甲基苯基噻吩基(2a)。该反应避免了涉及聚合物端基的链终止反应的发生,并且避免了双muthanyl聚合物端基的不希望的损失。连接到硫原子上的庞大的2,6-二苯甲基苯基可能会阻止将噻吩基加到乙烯基单体上以生成新的聚合物链。

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