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高能晶体撞击感度理论研究——第一性原理带隙(ΔEg)判据
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国家自然科学基金中物院NSAF联合基金(No. 10876013, 10576016); 国防“973”子专题(No. 61339)


Theoretical Studies of Impact Sensitivity of Energetic Crystals-First-Principles Band Gap (ΔEg) Criterion
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    摘要:

    概述了运用量子化学第一性原理密度泛函理论方法系统计算研究高能晶体能带结构的近期结果。发现对于结构或热解机理类似的系列高能晶体,其带隙(ΔEg)越小则撞击感度越大。撞击感度的带隙理论判据,对于离子型或分子型晶体,对于同一化合物的不同晶型,以及在不同压力和掺杂条件下,均具较好适用性。

    Abstract:

    Some recent studies on predicting impact sensitivity for different classes of energetic crystals based on first-principles band gap were reviewed. It is found that for energetic crystals with similar structure or with similar thermal decomposition mechanism, the smaller the band gap (ΔEg) is, the easier the electron transfers from the valence band to the conduction band, and the more they becomes decomposed and exploded. This band gap criterion is applicable to ionic or molecular crystals, different polymorphs of energetic crystals, energetic crystals at different pressures,and doped energetic crystals.

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朱卫华,张效文,肖鹤鸣.高能晶体撞击感度理论研究——第一性原理带隙(ΔEg)判据[J].含能材料, 2010, 18(4):431-434. DOI:10.3969/j. issn.1006-9941.2010.04.017.
ZHU Wei-hua, ZHANG Xiao-wen, XIAO He-ming. Theoretical Studies of Impact Sensitivity of Energetic Crystals-First-Principles Band Gap (ΔEg) Criterion[J]. Chinese Journal of Energetic Materials, 2010, 18(4):431-434. DOI:10.3969/j. issn.1006-9941.2010.04.017.

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历史
  • 收稿日期: 2009-12-24
  • 最后修改日期: 2010-01-19
  • 录用日期: 2010-01-26
  • 在线发布日期: 2012-02-22
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