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首页> 外文期刊>Journal of Molecular Structure >Intramolecular hydrogen bonding and calixarene-like structures in p-cresol/formaldehyde resins
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Intramolecular hydrogen bonding and calixarene-like structures in p-cresol/formaldehyde resins

机译:对甲酚/甲醛树脂中的分子内氢键和杯芳烃样结构

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摘要

The nature of the strong hydrogen bonds found in p-cresol/formaldehyde (PCF) resins, compared to ordinary phenolic compounds, is studied. The evidence form FTIR spectroscopy indicates that this strong interaction is due to intramolecular hydrogen bonding from "calixarene-like" structures. The formation of this structure in PCF is enabled by its "linear" (all-ortho-linkage) structure, which is not present in branched resins. Additionally, a transition is observed at around 175 to 200 deg C where the intramolecular hydrogen bonded structure is lost. This structure cannot be recovered upon cooling or annealing due to restrictions on conformational rotations that are coupled to a new pattern of intermolecular hydrogen bonding. However, the structure is reformed by dissolving the resin in solution and casting new films.
机译:与普通酚类化合物相比,研究了对甲酚/甲醛(PCF)树脂中发现的强氢键性质。 FTIR光谱的证据表明,这种强相互作用是由于“杯芳烃样”结构的分子内氢键所致。 PCF中此结构的形成是通过其“线性”(全邻位键合)结构实现的,该结构在支化树脂中不存在。另外,在约175至200℃观察到转变,其中分子内氢键结构丢失。由于与分子间氢键键合的新模式相关的构象旋转的限制,这种结构在冷却或退火后无法恢复。然而,通过将树脂溶解在溶液中并流延新膜来改变结构。

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