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Decomposition and oligomerization of 23-naphthyridine under high-pressure and high-temperature conditions

机译:23-萘啶在高温高压下的分解和低聚

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摘要

The chemical reaction of 2,3-naphthyridine, a nitrogen-containing aromatic compound, was investigated at pressures ranging from 0.5 to 1.5 GPa and temperatures from 473 to 573 K. A distinct decrease in the amount of residual 2,3-naphthyridine was observed in the samples recovered after reaction at ˃523 K at 0.5 and 1.0 GPa, and ˃548 K at 1.5 GPa. The formation of o-xylene and o-tolunitrile accompanied a decreasing N/C ratio of the reaction products, indicating decomposition of the aromatic ring and release of nitrogen. Precise analysis of the reaction products indicated the oligomerization of decomposed products with the residual 2,3-naphthyridine to form larger molecules up to 7mers. Nitrogen in the aromatic ring accelerated reactions to decompose the molecule and to oligomerize at lower temperatures than those typically reported for aromatic hydrocarbon oligomerization. The major reaction mechanism was similar between 0.5 and 1.5 GPa, although larger products preferentially formed in the samples at higher pressure.
机译:在压力为0.5至1.5 2,GPa和温度为473至573 K的条件下研究了含氮芳族化合物2,3-萘啶的化学反应。观察到残留的2,3-萘啶的量明显减少反应后回收的样品分别在0.5和1.0 GPa下分别在523˃K和1.5 GPa下回收到548K。邻二甲苯和邻甲苯二甲苯的形成伴随着反应产物的N / C比值的降低,表明芳环分解并释放出氮。对反应产物的精确分析表明,分解产物与残留的2,3-萘啶一起低聚形成更大的分子,直至7聚体。与通常报道的芳族烃低聚反应相比,芳环中的氮可促进反应分解分子并在更低的温度下低聚。在0.5至1.5 0.5GPa之间,主要的反应机理相似,尽管较大的产物优先在高压下形成。

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