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April 11, 2026Crystal Growth & Design2 citations

Bionic Armor for HMX: A Plant Polyphenol Coating for Highly Stable and Insensitive Energetic Materials

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YLYing LiWBWenhao BaiBLBindong Li

Key Points

  • To explore the effectiveness of plant polyphenols as eco-friendly desensitizers for energetic materials like HMX.
  • Constructed core-shell structured HMX@polyphenol composites
  • Applied a bionic interface design for coating
  • Measured impact sensitivity of the composites
  • Impact sensitivity of the composite decreased by 1.92 times compared to pure HMX
  • The protective coating enhanced safety by shielding the core from external stimuli
  • Demonstrated potential for integrating natural substances in energetic materials

Abstract

In recent years, plant polyphenols have emerged as promising, eco-friendly desensitizers for energetic materials. By employing a bionic interface design, we successfully constructed core–shell structured Cyclotetramethylene tetranitroamine (HMX)@polyphenol composites, wherein plant polyphenols form a continuous protective coating. This coating effectively shields the energetic core from external stimuli, leading to a significant improvement in safety. Specifically, the impact sensitivity of the composite was reduced by 1.92 times compared to that of pure HMX. This work successfully integrates the advantages of natural polyphenols with advanced material design, demonstrating substantial potential for developing safer energetic materials.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69d9e4d578050d08c1b752b8https://doi.org/10.1021/acs.cgd.5c01672
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