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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Metallocene-catalyzed synthesis of polyethylenes with side-chain triarylamines: Effects of catalyst structure and triarylamine functionality
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Metallocene-catalyzed synthesis of polyethylenes with side-chain triarylamines: Effects of catalyst structure and triarylamine functionality

机译:茂金属催化的带有侧链三芳基胺的聚乙烯的合成:催化剂结构和三芳基胺官能度的影响

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摘要

The copolymerization of ethylene with 8-triarylamine (TAA) substituted 1-octene monomers (TAA = triphenylamine (M1), N,N-diphenyl-m-tolylamine (M2), N,N-diphenyl-1-naphthylamine (M3)) using various types of group 4 single-site catalytic systems (Cp_2ZrCl_2 (C1), rac-EBIZrCl_2 (C2), rac-SBIZrCl_2 (C3), i-PrCpFluZrCl_2 (C4), Me_2Si(η~5-C_5Me_4)(η~1-N-~tBu)TiCl_2 (C5)) was investigated to prepare functionalized polyethylene with side-chain TAA groups. The metallocene/methylaluminoxane (MAO) catalytic systems (C1-C4) efficiently lead to the production of high-molecular-weight poly(ethylene-co-M1). While the C4/MAO catalytic system shows the highest comonomer response, the C5/MAO system exhibits the poor compatibility with the M1 comonomer. Copolymerization results of ethylene with M1-M3 using C4/MAO indicate that M1-M3 are well tolerated by both the cationic active species of C4 and MAO cocatalyst, giving rise to the copolymers with high levels of activity and molecular weight. Inspection of the aliphatic region of the ~(13)C NMR spectra of the copolymers (P1-P3) having ca. 11 mol% of M1-M3, respectively, reveals the presence of isolated comonomer units with prevailing [EEMEE] monomer sequences in the polymer chain. UV-vis absorption and PL spectra exhibit an apparent low-energy band broadening for P1 and P2 indicative of intrachain aggregate formation. Whereas P2 and P3 undergo completely reversible one-electron oxidation process, P1 shows relatively poor oxidational stability.
机译:乙烯与8-三芳基胺(TAA)取代的1-辛烯单体的共聚(TAA =三苯胺(M1),N,N-二苯基-间甲苯胺(M2),N,N-二苯基-1-萘胺(M3))使用各种类型的第4组单点催化系统(Cp_2ZrCl_2(C1),rac-EBIZrCl_2(C2),rac-SBIZrCl_2(C3),i-PrCpFluZrCl_2(C4),Me_2Si(η〜5-C_5Me_4)(η〜1研究了-N-〜tBu)TiCl_2(C5)以制备具有侧链TAA基团的功能化聚乙烯。茂金属/甲基铝氧烷(MAO)催化体系(C1-C4)有效地导致了高分子量聚(乙烯-co-M1)的生产。虽然C4 / MAO催化体系显示出最高的共聚单体响应,但C5 / MAO体系显示出与M1共聚单体的不良相容性。乙烯与M1-M3的使用C4 / MAO的共聚结果表明,C1-C3的阳离子活性物质和MAO助催化剂对M1-M3都具有良好的耐受性,从而使共聚物具有较高的活性和分子量。检验具有大约1的共聚物(P1-P3)的〜(13)C NMR谱的脂肪族区域。分别为11摩尔%的M1-M3揭示了在聚合物链中存在具有主要[EEMEE]单体序列的分离共聚单体单元。 UV-vis吸收和PL光谱对P1和P2表现出明显的低能带展宽,表明链内聚集体形成。 P2和P3经历了完全可逆的单电子氧化过程,而P1显示出相对较差的氧化稳定性。

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