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首页> 外文期刊>International Journal of Quantum Chemistry >Theoretical modeling of the chemical synthesis and detonation performance of polynitrocubane derivatives
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Theoretical modeling of the chemical synthesis and detonation performance of polynitrocubane derivatives

机译:聚硝维硅烷衍生物化学合成与爆轰性能的理论模型

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摘要

Theoretical work was performed based on experimental methods described in the literature to simulate and explore feasible routes for the synthesis of energetic octanitrocubane (ONC) and polynitrocubane derivatives. In respective gaseous and liquidous environments, using cubane as the raw material, ONC was successfully synthesized through carboxylation, amination, oxidation and nitration stages, and the related reaction energy barriers were simultaneously acquired. In particular, the polyparametric calibrated gaseous molecular formation enthalpy and the group additivity approach-estimated molecular density were incorporated using the Kamlet-Jacobs equation to evaluate the detonation performance of polynitrocubane derivatives. Some high-energy-density derivatives were found to have superior characteristics as compared with traditional hexagon (RDX) and octagon (HMX) explosives.
机译:基于文献中描述的实验方法进行理论作品,以模拟和探索合成能量辛烷腈(ONC)和聚硝基甲烷衍生物的可行途径。 在各自的气态和液态环境中,使用Cubane作为原料,通过羧化,胺化,氧化和硝化阶成功地合成了ONC,并且同时获得相关的反应能量屏障。 特别地,使用Kamlet-Jacobs方程掺入了聚类校准的气态分子形成焓和群体添加剂估计的分子密度,以评估多硝基硅烷衍生物的爆轰性能。 与传统六边形(RDX)和八角形(HMX)炸药相比,发现一些高能密度衍生物具有优异的特性。

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