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首页> 外文期刊>ACS Omega >Synthesis of a Bisbenzylideneacetone-Containing Benzoxazine and Its Photo- and Thermally Cured Thermoset
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Synthesis of a Bisbenzylideneacetone-Containing Benzoxazine and Its Photo- and Thermally Cured Thermoset

机译:合成含双苄基苯甲酸苯甲酸苯甲酸苯并恶嗪及其光 - 和热固化的热固性

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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 ~(1)H and ~(13)C 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 ~(1)H 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 T _(g) as high as 318 °C for curing procedure 1 and 342 °C for curing procedure 2. These values are much higher than that of a traditional bisphenol/aniline-based benzoxazine thermoset. We conclude that the thermal curing of the double bond of bisbenzylideneacetone and photodimerization of bisbenzylideneacetone contributes to the good thermal properties.
机译:由双苄基二苯酚,双(4-羟基苄基),苯胺和通过曼尼希制备双苄基二甲苯的双酚,双(4-羟基苄基),苯胺和多聚甲醛制备双(4-羟基苄基)丙酮/苯胺基苯恶嗪( BHBA-A)甲苯/乙醇的共溶剂中的缩合(2:1,v / v)。通过傅里叶变换红外线和〜(1)H和〜(13)C NMR光谱成功证实了 BHBA-A的结构。根据差分扫描量热法(DSC)热视图的 BHBA,观察到熔融峰后立即放热峰,表明 BHBA是热活性的。热处理的NMR数据 BHBA确认在DSC热分析图中熔化B> BHBA后的立即放热峰是由双键的固化产生的。 BHBA-A的UV和〜(1)H NMR光谱表明,双苄基乙基部分通过[2π+2π]环加成伴随的二聚化。因此,将两种方法应用于固化 BHBA-A。第一个是双苄基琥珀酸酯和恶嗪部分双键的热固化。第二个是光固化双苄基缩酮部分,然后进行恶化部分的热固化。基于这两种方法评估热固性的热性质。 BHBA-A的热固性能量 T _(g)高达318℃的固化过程1和342℃,用于固化过程2.这些值远高于传统的双酚/苯胺 - 基于苯并恶嗪热固性。我们得出结论,双苄基乙基酮双键的热固化和双苄基乙基丙酮的光二聚体有助于良好的热性能。

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