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Synthesis of a Bisbenzylideneacetone-ContainingBenzoxazine and Its Photo- and Thermally Cured Thermoset

机译:含双亚苄基丙酮的合成苯并恶嗪及其光固化和热固化的热固性材料

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摘要

A bis(4-hydroxybenzylidene)acetone/aniline-based benzoxazine (>BHBA-a) was prepared from a bisbenzylidene-containing bisphenol, bis(4-hydroxybenzylidene)acetone (>BHBA), aniline, and paraformaldehyde through Mannich condensation in a cosolvent of toluene/ethanol (2:1, v/v). The structure of >BHBA-a was successfully confirmed by Fourier transform infrared and 1H and 13C NMR spectra. According to the differential scanning calorimetry (DSC) thermogram of >BHBA, an immediate exothermic peak after the melting peak was observed, suggesting that >BHBA is thermally active. NMR data of thermally treated >BHBA confirm that the immediate exothermic peak after melting of >BHBA in the DSC thermogram is resulted from the curing of a double bond. UV and 1H NMR spectra of >BHBA-a show that the bisbenzylideneacetone moiety underwent dimerization through the [2π + 2π] cycloaddition. Therefore, two procedures were applied to cure >BHBA-a. The first one was thermal curing of the double bond of bisbenzylideneacetone and oxazine moieties. The second one was photocuring of the bisbenzylideneacetone moiety, followed by thermal curing of the oxazine moiety. The thermal properties of thermosets were evaluated based on these two procedures. Thermosets of >BHBA-a exhibit Tg as high as 318 °C for curing procedure 1 and 342 °C for curing procedure2. These values are much higher than that of a traditional bisphenol/aniline-basedbenzoxazine thermoset. We conclude that the thermal curing of thedouble bond of bisbenzylideneacetone and photodimerization of bisbenzylideneacetonecontributes to the good thermal properties.
机译:由含双亚苄基的双酚双(4-羟基亚苄基)丙酮(> BHBA )制得双(4-羟基亚苄基)丙酮/苯胺基苯并恶嗪(> BHBA-a )甲苯/乙醇(2:1,v / v)中的曼尼希缩合反应生成苯胺和多聚甲醛。 > BHBA-a 的结构已通过傅立叶变换红外光谱和 1 H和 13 C NMR谱成功地证实。根据> BHBA 的差示扫描量热法(DSC)热分析图,观察到熔化峰之后立即放热峰,表明> BHBA 具有热活性。热处理过的> BHBA 的NMR数据证实,DSC热分析图中> BHBA 熔化后立即放热峰是双键固化的结果。 > BHBA-a 的UV和 1 1 H NMR谱表明,双亚苄基丙酮部分通过[2π+2π]环加成反应进行了二聚。因此,应用了两种程序来治愈> BHBA-a 。第一个是双亚苄基丙酮和恶嗪部分双键的热固化。第二个是双亚苄基丙酮部分的光固化,然后恶嗪部分的热固化。基于这两个过程评估了热固性塑料的热性能。 > BHBA-a 的热固性材料的固化过程1的Tg高达318°C,固化过程的Tg高达342°C2.这些值远高于传统的基于双酚/苯胺的值苯并恶嗪热固性。我们得出的结论是,亚苄基丙酮的双键和双亚苄基丙酮的光二聚有助于良好的热性能。

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