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Multifunctional Benzoxazines Feature Low Polymerization Temperature and Diverse Polymer Structures

机译:多功能苯并恶嗪具有较低的聚合温度和多样的聚合物结构

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3,4-dihydro-3-phenyl-2H-1,3-benzoxazines derived from phenol-, resorcinol-, and phloroglucinol give monomers with one, two, and three oxazine units at a single benzene ring, respectively. Aside from the synthesis and characterization of such multifunctional benzoxazines, reactivity and polymerization behavior is studied in dependence of the oxazine functionality. Monomer reactivities are directly related to the number of oxazine functionalities present at the benzene ring yielding the lowest polymerization temperature for the trifunctional phloroglucinol-based benzoxazine. Comparing the polymerization processes and resulting structures, the trifunctional benzoxazine derivative enter new polymerization pathways, which include methylene linkages bridging aniline units, as well as the formation of carbonyl-derived structures.
机译:衍生自苯酚-,间苯二酚-和间苯三酚的3,4-二氢-3-苯基-2H-1,3-苯并恶嗪在单个苯环上分别形成具有一个,两个和三个恶嗪单元的单体。除了这类多功能苯并恶嗪的合成和表征以外,还根据恶嗪官能度研究了反应性和聚合行为。单体反应性直接与苯环上存在的恶嗪官能团数量直接相关,从而产生基于三官能间苯三酚的苯并恶嗪的最低聚合温度。比较聚合过程和所得结构,三官能苯并恶嗪衍生物进入新的聚合途径,包括桥接苯胺单元的亚甲基键以及衍生自羰基的结构。

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