首页> 外文OA文献 >Krystalová morfologie 3,4-bis(3-nitrofurazan-4-yl)furoxanu (DNTF) v rozpuštědlovém systému: molekulárně-dynamická simulace a studium citlivosti.
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Krystalová morfologie 3,4-bis(3-nitrofurazan-4-yl)furoxanu (DNTF) v rozpuštědlovém systému: molekulárně-dynamická simulace a studium citlivosti.

机译:溶剂体系中3,4-双(3-硝基呋喃山-4-基)呋喃烷(DNTF)的晶体形态:分子动力学模拟和敏感性研究。

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摘要

Herein, the attachment energy (AE) model was employed to study the growth morphology of 3,4-bis(3-nitrofurazan-4-yl) furoxan (DNTF) under vacuum and solvent conditions by molecular dynamics simulation. The DNTF crystals were cultivated in H2O/acetic acid (AcOH) and H2O/EtOH solvents by natural cooling. The calculated results show that the (0 1 1) and (0 0 1) faces have large morphological importance in these two solvent systems, and the predicted DNTF morphologies agree qualitatively with those of the observed experimental results. Radial distribution function (RDF) and diffusion coefficient analyses were performed to explore the adsorption and diffusion behaviors of solvent molecules on DNTF surfaces. Furthermore, the impact and friction sensitivities of different crystal morphologies of DNTF were also tested and discussed. Results suggest that crystal morphology is an important impact factor for controlling the sensitivity of explosives.
机译:在本文中,通过分子动力学模拟,利用附着能(AE)模型研究了3,4-双(3-硝基呋喃山-4-基)呋喃聚糖(DNTF)在真空和溶剂条件下的生长形态。 DNTF晶体通过自然冷却在H2O /乙酸(AcOH)和H2O / EtOH溶剂中培养。计算结果表明(0 1 1)和(0 0 1)面在这两种溶剂系统中具有很大的形态学重要性,并且预测的DNTF形态与观察到的实验结果在质量上吻合。进行了径向分布函数(RDF)和扩散系数分析,以探索溶剂分子在DNTF表面上的吸附和扩散行为。此外,还测试和讨论了DNTF不同晶体形态的冲击和摩擦敏感性。结果表明,晶体形态是控制炸药敏感性的重要影响因素。

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