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A bistriazolotetrazine zwitterionic architecture: mitigating the pervasive energy-stability antagonism in bistable energetic matrices

  • Bojun Tan
  • , Jian Su
  • , Jing Zhang
  • , Changwei Tang
  • , Jinkang Dou
  • , Xiong Yang
  • , Minghui Xu
  • , Shu Zeng
  • , Wenjie Li
  • , Jieyu Luan
  • , Gen Zhang
  • , Siwei Song
  • , Qinghua Zhang
  • , Xianming Lu
  • , Bozhou Wang
  • , Ning Liu
  • Xi'an Modern Chemistry Research Institute
  • Nanjing University of Science and Technology
  • Gansu Yinguang Chemical Industry Group Co.,Ltd

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

The pursuit of high-energy density materials has been long stymied by the fundamental trade-off between energy output and mechanical sensitivity, a challenge that has persisted for centuries. Herein, we present a dizwitterionic design strategy that enables the synthesis of TYX-2, a planar bistriazolotetrazine-based material exhibiting an unprecedented synergy of high energy and low sensitivity. The molecular model of TYX-2 was elucidated through single-crystal X-ray diffraction analysis of its dimethylamine adduct (TYX-22−·2(Me2NH2+)), which was successfully obtained via crystallization from an aqueous dimethylamine solution. With a measured density of 2.04 g cm−3 and detonation velocity of 9.915 km s−1, neutral TYX-2 attains energetic performance comparable to that of the benchmark caged explosive CL-20 while demonstrating radically improved safety characteristics. Its mechanical sensitivity, measured at 180 N (friction) and 22.5 J (impact), represents a 3.7-fold and 5.6-fold reduction relative to CL-20, respectively. When integrated into PNMMO-based solid propellants as a replacement for conventional explosives (such as AP, RDX, HMX and CL-20), neutral TYX-2 significantly enhances specific impulse while mitigating safety risks inherent to current formulations. This work achieves decoupling of energy and sensitivity in energetic materials, offering transformative potential for both military and civilian propulsion technologies.

Original languageEnglish
Pages (from-to)25103-25109
Number of pages7
JournalJournal of Materials Chemistry A
Volume13
Issue number30
DOIs
StatePublished - 29 Jul 2025

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

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