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Synthesis of an aromatic N-heterocycle derived from biomass and its use as a polymer feedstock

机译:源自生物质的芳族N-杂环的合成及其作为聚合物原料的用途

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Aromatic N-heterocyclic compounds are very important chemicals, which are currently produced mostly from petroleum. Here we report that a pyridazine-based compound 6-(4-hydroxy-3-methoxyphenyl)pyridazin-3(2H)-one (GSPZ) can be efficiently synthesized by the Friedel-Crafts reaction of guaiacol and succinic anhydride, both of which can be derived from biomass. GSPZ is then treated with bio-based epichlorohydrin to prepare the epoxy resin precursor GSPZ-EP. With 4,4'-diaminodiphenylmethane as curing agent, GSPZ-EP possesses higher glass transition temperature (187?supo/supC vs. 173?supo/supC) and shows a 140%, 70 and 93% increase in char yield (in Nsub2/sub), storage modulus (30?supo/supC) and Young's modulus, respectively when compared with a standard petroleum-based bisphenol A epoxy resin. Moreover, the cured GSPZ-EP shows good intrinsic flame retardancy properties and is very close to the V-0 rating of UL-94 test. This work opens the door for production of aromatic N-heterocyclic compounds, which can be derived from biomass and employed to construct high performance polymers.
机译:芳香族N-杂环化合物是非常重要的化学物质,目前主要由石油生产。在这里我们报告说,可以通过愈创木酚和琥珀酸酐的Friedel-Crafts反应有效地合成哒嗪类化合物6-(4-羟基-3-甲氧基苯基)哒嗪-3(2H)-one(GSPZ)。可以源自生物质。然后用生物基表氯醇处理GSPZ,以制备环氧树脂前体GSPZ-EP。以4,4'-二氨基二苯甲烷为固化剂,GSPZ-EP具有较高的玻璃化转变温度(187° o C与173° o C),并且显示140%与标准石油基油相比,焦炭产量(以N 2 为单位),储能模量(30? o C)和杨氏模量分别提高70%和93%双酚A环氧树脂。此外,固化的GSPZ-EP具有良好的固有阻燃性能,非常接近UL-94测试的V-0等级。这项工作为生产芳香族N-杂环化合物打开了大门,该化合物可源自生物质,可用于构建高性能聚合物。

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