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首页> 外文期刊>Designed Monomers and Polymers: An International Journal on Monomer and Macromolecular Synthesis >Synthesis, characterization, and curing kinetics of novel bismaleimide monomers containing fluorene cardo group and aryl ether linkage
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Synthesis, characterization, and curing kinetics of novel bismaleimide monomers containing fluorene cardo group and aryl ether linkage

机译:含芴心基和芳醚键的新型双马来酰亚胺单体的合成,表征和固化动力学

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摘要

Two novel bismaleimide (BMI) monomers containing fluorene cardo group and aryl ether linkage, that is, 9,9-bis [4-(4-maleimidophenoxy)phenyl] fluorene (PF-BMI) and 9,9-bis[4-(4-maleimidophenoxy)-3-methylphenyl] fluorene (MPF-BMI) based on 9,9-bis(4-hydroxyphenyl)fluorene and its derivative were designed and synthesized. The chemical structures of the monomers were confirmed from 1H NMR, 13C NMR spectroscopy, and Fourier transform infrared spectroscopy. Both monomers obtained are readily soluble in common organic solvents, such as acetone, dichloromethane, and chloroform, enabling an easy solution processing. The thermal curing behavior of the monomers and their non-isothermal thermal curing processes were investigated using differential scanning calorimetry, displaying that both monomers have lower melt points and broad thermal processing windows. The corresponding kinetic data, for example, activation energy (Ea), pre-exponential factor (A), and the order of the reaction (n), were obtained by the Kissinger and Ozawa method. The BMI resins based on these new monomers have good thermal stability seen from the thermogravimetric analysis results. Kismaleimide;; fluorene cardo group;; synthesis;; curing kinetics;; thermal properties
机译:含有芴心基和芳基醚键的两种新型双马来酰亚胺(BMI)单体,即9,9-双[4-(4-马来酰亚胺苯氧基)苯基]芴(PF-BMI)和9,9-双[4-(设计合成了基于9,9-双(4-羟苯基)芴的4-马来酰亚胺基苯氧基)-3-甲基苯基]芴(MPF-BMI)。单体的化学结构由1 H NMR,13 C NMR光谱和傅里叶变换红外光谱确认。所获得的两种单体均易于溶于常见的有机溶剂,例如丙酮,二氯甲烷和氯仿中,从而易于溶液加工。使用差示扫描量热法研究了单体的热固化行为及其非等温热固化过程,结果表明这两种单体均具有较低的熔点和较宽的热处理窗口。相应的动力学数据,例如活化能(Ea),指数前因子(A)和反应阶数(n),是通过Kissinger和Ozawa方法获得的。从热重分析结果来看,基于这些新单体的BMI树脂具有良好的热稳定性。 K 双马来酰亚胺;;芴基团;合成;;固化动力学;热性能

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