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A flexible-molecule force field to model and study hexanitrohexaazaisowurtzitane (CL-20) - polymorphism under extreme conditions

机译:一种柔性分子力场,用于模型和研究己酸己唑己唑(CL-20) - 极端条件下的多态性

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The quantum-chemistry based force field (FF) developed for HMX by Smith and Bharadwaj (SB) [G. D. Smith and R. K. Bharadwaj, J. Phys. Chem. B, 1999, 103(18), 3570-3575] is transferred to another nitramine of different stoichiometry: hexanitrohexaazaisowurtzitane (CL-20 or HNIW). The modification of a single parameter alongside a very small number of add-ons related to carbon-carbon bonds, angles and dihedrals lead to two SB FF variants denoted SB-CL20 and SB-CL20 + CCNN. These flexible-molecule FFs should inherit the predictive capabilities of SB FF. For this purpose, we perform Molecular Dynamics simulations at ambient temperature and selected pressures. The modeled structures of the various CL-20 polymorphs are consistent with experimental data. Focusing on the epsilon-polymorph, we determine an equation of state which consolidates the general trend underpinned by most published results, and we confirm the increasing stiffness of the crystal under pressures up to 90 GPa. Moreover, we link some subtle pressure-induced changes of the elastic and structural properties to the flexibility and mobility of well-identified nitro groups. Finally, the simulations of the gamma <-> zeta phase transition suggest different multiple-step direct and reverse thermodynamic paths.
机译:基于量子化学的力场(FF)由史密斯和Bharadwaj(Sb)开发为HMX [G。 D. Smith和R. K.Bharadwaj,J. phy。化学。 B,1999,103(18),3570-3575]转移到另一种不同化学计量的硝酸硝胺:己酸甲己唑类尿丁烷(Cl-20或HNIW)。与碳 - 碳键,角度和二浆料相关的非常少量的加入接合的单个参数的修改导致两个Sb FF变体,其表示Sb-C120和Sb-C120 + Ccnn。这些柔性分子FF应该继承SB FF的预测性能。为此目的,我们在环境温度和所选压力下进行分子动力学模拟。各种CL-20多晶型物的建模结构与实验数据一致。专注于ε-多晶型夫,我们确定了大多数公布结果基础趋势的国家的等式,我们确认了高达90 GPa的压力下晶体的较高刚度。此外,我们将一些微妙的压力诱导的弹性和结构性能变化与良好鉴定的硝基的柔韧性和迁移率联系起来。最后,伽马< - > Zeta相变的模拟表明了不同的多步直接和反向热力学路径。

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    《RSC Advances》 |2019年第68期|共13页
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  • 正文语种 eng
  • 中图分类 化学;
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