Wurm Frederik, Hilf Stefan, Frey Holger
Institut für Organische Chemie-Makromolekulare Chemie, Johannes Gutenberg Universität Mainz, Duesbergweg 10-14, 55099 Mainz, Germany.
Chemistry. 2009 Sep 14;15(36):9068-77. doi: 10.1002/chem.200900666.
A convenient two-step protocol is presented for synthesis of linear-hyperbranched diblock copolymers consisting of a linear, organometallic poly(ferrocenylsilane) (PFS) block and hyperbranched poly(carbosilane) (hbPCS) segments. Linear PFS diblock copolymers were synthesized through photolytic ring-opening polymerization of dimethyl[1]silaferrocenophane as the first block and methylvinyl[1]silaferrocenophane as the second. These block copolymers served as polyfunctional cores in a subsequent hydrosilylation polyaddition of different silane-based AB(2) monomers. Three AB(2) monomers (methyldiallylsilane; methyldiundecenylsilane, and ferrocenyldiallylsilane) were investigated; they introduced structural diversity to the hyperbranched block and showed variable reactivity for the hydrosilylation reaction. In the case with the additional ferrocene moiety in the ferrocenyldiallylsilane monomer, an electroactive hyperbranched block was generated. No slow monomer addition was necessary for molecular-weight control of the hyperbranching polyaddition, as the core had much higher functionality and reactivity than the carbosilane monomers. Different block ratios were targeted and hybrid block copolymers with narrow polydispersity (<1.2) were obtained. All the resulting polymers were investigated and characterized by size exclusion chromatography, NMR spectroscopy, cyclic voltammetry, and TEM, and exhibited strongly anisotropic aggregation.
本文提出了一种简便的两步法协议,用于合成由线性有机金属聚(二茂铁基硅烷)(PFS)嵌段和超支化聚(碳硅烷)(hbPCS)链段组成的线性-超支化二嵌段共聚物。线性PFS二嵌段共聚物是通过二甲基[1]硅杂二茂铁的光解开环聚合作为第一嵌段,甲基乙烯基[1]硅杂二茂铁作为第二嵌段合成的。这些嵌段共聚物在随后不同硅烷基AB(2)单体的硅氢加成聚合中用作多官能团核。研究了三种AB(2)单体(甲基二烯丙基硅烷、甲基二十一碳烯基硅烷和二茂铁基二烯丙基硅烷);它们为超支化链段引入了结构多样性,并对硅氢加成反应表现出不同的反应活性。在二茂铁基二烯丙基硅烷单体中含有额外二茂铁部分的情况下,生成了一种电活性超支化链段。由于核的官能度和反应活性比碳硅烷单体高得多,因此在超支化加成聚合的分子量控制中无需缓慢添加单体。目标是不同的嵌段比例,并获得了具有窄多分散性(<1.2)的杂化嵌段共聚物。对所有所得聚合物进行了尺寸排阻色谱、核磁共振光谱、循环伏安法和透射电子显微镜研究与表征,结果表明它们表现出强烈的各向异性聚集。