CHINESE JOURNAL OF ENERGETIC MATERIALS
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Photothermal and Safety Performance of Perylene Diimide/Hexanitrostilbene Composite
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Affiliation:

1.School of Materials and Chemistry, Southwest University of Science and Technology, Mianyang 621010, China;2.Institute of Chemical Materials, China Academy of Engineering Physics, Mianyang 621999, China

Fund Project:

Grant support: National Natural Science Foundation of China(No. 22306178)

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    Abstract:

    To enhance the photothermal response of hexanitrostilbene (HNS) under laser initiation, a core-shell composite(HNS@PDI) was prepared by a combining strategy of molecular structure regulation and self-assembly surface deposition method, and the influence of the molecular structure of PDI on its photothermal conversion efficiency and the laser ignition performance of HNS@PDI were systematically studied. The perylene imide (PDI-C12) modified with a dodecyl chain can easily assemble into a J-stacking structure that is conducive to non-radiative exciton transitions. Under 1064 nm laser irradiation, the composite modified with PDI-C12 exhibits a photothermal conversion efficiency of 69.3%, which is 110% higher than that of the short-chain analog PDI-C2(32.9%). When the PDI loading was optimized to 5%, the laser ignition delay time was reduced to 22 ms at a laser power of 10 W and energy density of 80 W·cm-2. The PDI shell also significantly improves the safety performance of this composite. The critical impact energy of the composite increases from 5 J to 30 J, and the critical friction force is above 360 N. In addition, the PDI layer effectively inhibits photodecomposition. This study effectively improved the laser ignition performance of HNS, while enhanced the safety and photostability, providing new ideas for the development of high-performance laser ignition agents and photosensitizers.

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Get Citation

成卓,刘德芳,王骏,等.苝酰亚胺复合六硝基茋的光热与安全性能[J].含能材料,2025,33(11):1313-1325.
CHENG Zhuo, LIU De-Fang, WANG Jun, et al. Photothermal and Safety Performance of Perylene Diimide/Hexanitrostilbene Composite[J]. Chinese Journal of Energetic Materials,2025,33(11):1313-1325.

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History
  • Received:May 20,2025
  • Revised:September 08,2025
  • Adopted:September 02,2025
  • Online: September 05,2025
  • Published: