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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Theoretical studies of solid bicyclo-HMX: Effects of hydrostatic pressure and temperature
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Theoretical studies of solid bicyclo-HMX: Effects of hydrostatic pressure and temperature

机译:固体双环-HMX的理论研究:静水压力和温度的影响

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On the basis of density functional theory (DFT) and molecular dynamics (MID), the structural, electronic, and mechanical properties of the energetic material bicyclo-HMX have been studied. The crystal structure optimized by the LDA/CA-PZ method compares well with the experimental data. Band structure and density of states calculations indicate that bicyclo-HMX is an insulator with the band gap of ca. 3.4 eV and the N-NO2 bond is the reaction center. The pressure effect on the bulk structure and properties has been investigated in the range of 0-400 GPa. The crystal structure and electronic character change slightly as the pressure increases from 0 to 10 GPa; when the pressure is over 10 GPa, further increment of the pressure determines significant changes of the structures and large broadening of the electronic bands together with the band gap decreasing sharply. There is a larger compression along the c-axis than along the a- and b-axes. To investigate the influence of temperature on the bulk structure and properties, isothermal-isobaric MID simulations are performed on bicyclo-HMX in the temperature range of 5-400 K. It is found that the increase of temperature does not significantly change the crystal structure. The thermal expansion coefficients calculated for the model indicate anisotropic behavior with slightly larger expansion along the a- and c-axes than along the b-axis.
机译:基于密度泛函理论(DFT)和分子动力学(MID),研究了高能材料双环HMX的结构,电子和机械性能。通过LDA / CA-PZ方法优化的晶体结构与实验数据相吻合。能带结构和状态密度的计算表明,双环-HMX是带隙为ca的绝缘体。 3.4 eV和N-NO2键是反应中心。在0-400 GPa的范围内已研究了压力对整体结构和性能的影响。晶体结构和电子特性随压力从0 GPa升高到10 GPa而略有变化。当压力超过10 GPa时,压力的进一步增加将决定结构的显着变化以及电子带的大范围扩展以及带隙急剧减小。沿c轴的压缩比沿a轴和b轴大。为了研究温度对整体结构和性能的影响,在5-400 K的温度范围内对双环HMX进行了等温-等压MID模拟。发现温度的升高并不会显着改变晶体结构。为模型计算的热膨胀系数表明各向异性行为,沿a轴和c轴的膨胀比沿b轴的膨胀略大。

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