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Synthesis and Thermal Properties of Resorcinol–Furfural Thermosetting Resin

机译:子莪糠醛热固性树脂的合成与热性能

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摘要

A mild and effective synthesis of resorcinol–furfural (RF) thermosetting resin was proposed with ethanol as a distinctive solvent, which, as a usually neglected factor, was shown to not only help form a homogeneous reaction system but also observably reduce the energy barriers between the early intermediates and transition states in addition reactions by explicit solvent effects, drawn from theoretical calculation conclusions. Besides, the para-additions on aromatic rings were more dominant than ortho-additions with the same reactants, which affected the final link types of monomers verified by Fourier transform infrared spectroscopy and two-dimensional nuclear magnetic resonance tests. The prepared resin can be assigned to a relatively fast gel speed and a high residual mass (65.25%) after pyrolysis in a N_(2) atmosphere by adjusting the molar ratios of F to R, and the curing of that was a complex reaction, with a curing temperature around 149 °C and an activation energy of about 49.11 kJ mol~(–1) obtained by the Kissinger method.
机译:用乙醇作为一种独特的溶剂提出了温和且有效的间苯糠醛(RF)热固性树脂,其作为通常被忽视的因子显示,不仅有助于形成均匀的反应系统,而且还可以观察地降低能量屏障之间的能量屏障早期中间体和过渡状态通过明确的溶剂效应来添加反应,从理论计算结论中得出。此外,芳香环上的对照比具有相同反应物的邻接更大,影响由傅里叶变换红外光谱和二维核磁共振测试验证的最终链接类型的单体。通过将F至R的摩尔比调节,可以将制备的树脂分配至相对快速的凝胶速度和高残留的质量(65.25%),并通过调节F至R的摩尔比,并将其固化是复杂的反应,固化温度约为149℃,并通过曲根法获得约49.11kJ摩尔〜(-1)的活化能。

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