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Design of nanostructured hybrid materials: twin polymerization of urethane-based twin prepolymers

机译:纳米结构杂化材料的设计:氨基甲酸酯双预聚物的双聚合

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摘要

Organic–inorganic hybrid materials with urethane functionalities were obtained by simultaneous twin polymerization of twin prepolymers in combination with the ideal twin monomer 2,2′-spirobi[4 H -1,3,2-benzodioxasiline]. The twin prepolymers consist of a urethane-based prepolymer with reactive terminal groups which can react during the twin polymerization process. Nanostructured hybrid materials with integrated dialkylsiloxane crosslinked urethane structures, phenolic resin and SiO _(2) are obtained in a one pot process. The effects of the polymerization temperature as well as those of various catalysts and reagent ratios on the polymerization behavior were investigated. The molecular structures of the obtained materials were determined by ~(13) C- and ~(29) Si-{ ~(1) H}-CP-MAS NMR spectroscopies. HAADF-STEM-measurements were performed to prove the distribution of silicon in the hybrid material.
机译:通过将双预聚物与理想的双单体2,2'-spirobi [4 H -1,3,2-苯并二恶唑啉]结合同时双聚合获得具有氨基甲酸酯官能度的有机-无机杂化材料。孪生预聚物由具有反应性端基的基于氨基甲酸酯的预聚物组成,该端基可以在孪生聚合过程中反应。具有一体的二烷基硅氧烷交联氨基甲酸酯结构,酚醛树脂和SiO_(2)的纳米结构杂化材料是通过一锅法获得的。研究了聚合温度以及各种催化剂和试剂比例对聚合行为的影响。通过〜(13)C-和〜(29)Si- {〜(1)H} -CP-MAS NMR光谱法确定获得的材料的分子结构。进行了HAADF-STEM-测量,以证明杂化材料中硅的分布。

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