防务技术2024,Vol.35Issue(5) :60-68.DOI:10.1016/j.dt.2023.10.004

Significantly enhanced thermal stability of HMX by phase-transition lysozyme coating

Jiahui Liu Congmei Lin Jianhu Zhang Chengcheng Zeng Zhijian Yang Fude Nie
防务技术2024,Vol.35Issue(5) :60-68.DOI:10.1016/j.dt.2023.10.004

Significantly enhanced thermal stability of HMX by phase-transition lysozyme coating

Jiahui Liu 1Congmei Lin 2Jianhu Zhang 2Chengcheng Zeng 2Zhijian Yang 2Fude Nie2
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作者信息

  • 1. Institute of Chemical Materials,China Academy of Engineering Physics(CAEP),Mianyang 621900,China;Graduate School,China Academy of Engineering Physics(CAEP),Mianyang 621900,China
  • 2. Institute of Chemical Materials,China Academy of Engineering Physics(CAEP),Mianyang 621900,China
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Abstract

A new robust bio-inspired route by using lysozyme aqueous solution for surface modification on 1,3,5,7-tetranitro-1,3,5,7-tetrazocane(HMX)was described in this paper.HMX crystals were coated by in situ phase transition of lysozyme(PTL)molecules.The HMX decorated by PTL was characterized by SEM,XRD,FTIR and XPS,demonstrating a dense core-shell coating layer.The coverage of lysozyme on HMX crystal was calculated by the ratio of sulfur content.The surface coverage increased from 60.5%to 93.5%when the content of PTL was changed from 0.5 wt%to 2.0 wt%,indicating efficient coating.The thermal stability of HMX was investigated by in situ XRD and DSC.The thermal phase transition temperature of HMX(β to δ phase)was delayed by 42 ℃ with 2.0 wt%PTL coating,which prevented HMX from thermal damage and sensitivity by the effect of PTL coating.After heating at 215 ℃,large cracks appeared in the naked HMX crystal,while the PTL coated HMX still maintained intact,with the impact energy of HMX dropped dramatically from 5 J to 2 J.However,the impact energy of HMX with 1.0 wt%and 2.0 wt%coating content(HMX@PTL-1.0 and HMX@PTL-2.0)was unchanged(5 J).Present results potentially enable large-scale fabrication of polymorphic energetic materials with outstanding thermal stability by novel lysozyme coating.

Key words

HMX/Lysozyme/Phase transition/Thermal stability/Sensitivity

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基金项目

China National Nature Science Foundation(12102404)

出版年

2024
防务技术
中国兵工学会

防务技术

CSTPCD
影响因子:0.358
ISSN:2214-9147
参考文献量24
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