TY - JOUR
T1 - A Short Review on the Synthetic Efforts Toward Hexaazaisowurtzitane Based Energetic Derivatives
AU - Zhou, Jing
AU - Jiang, Zhen
AU - Lin, Tianle
AU - Lu, Jian
AU - Zhang, Junlin
AU - Wang, Bozhou
N1 - Publisher Copyright:
© 2026 Wiley-VCH GmbH.
PY - 2026
Y1 - 2026
N2 - As a multi-nitrogen caged skeleton, hexaazaisowurtzitane endows its energetic derivative CL-20 with outstanding energetic properties, making it a classic compound in energetic material synthesis. In this review, we focus on summarizing and comparing the different synthetic routes of CL-20, as well as CL-20 analogues containing other energetic groups, starting from the construction of multi substituted hexaazaisowurtzitanes. The synthesis of multi-substituted hexaazaisowurtzitane is directly related to the chosen substituents, and the electronic effects of the substituents is crucial for the successful formation of the hexaazaisowurtzitane skeleton. Substituents with conjugation effects similar to benzyl group are the most promising substituent structures. The different heat and gas release characteristics of nitration and nitrolysis bring significant differences in the subsequent processes, which deserve significant attention. In addition, modifications to N-NO2 have brought about a series of new energetic analogues, but so far, these compounds still have a long way to go before large-scale applications.
AB - As a multi-nitrogen caged skeleton, hexaazaisowurtzitane endows its energetic derivative CL-20 with outstanding energetic properties, making it a classic compound in energetic material synthesis. In this review, we focus on summarizing and comparing the different synthetic routes of CL-20, as well as CL-20 analogues containing other energetic groups, starting from the construction of multi substituted hexaazaisowurtzitanes. The synthesis of multi-substituted hexaazaisowurtzitane is directly related to the chosen substituents, and the electronic effects of the substituents is crucial for the successful formation of the hexaazaisowurtzitane skeleton. Substituents with conjugation effects similar to benzyl group are the most promising substituent structures. The different heat and gas release characteristics of nitration and nitrolysis bring significant differences in the subsequent processes, which deserve significant attention. In addition, modifications to N-NO2 have brought about a series of new energetic analogues, but so far, these compounds still have a long way to go before large-scale applications.
KW - CL-20
KW - debenzylation
KW - explosophoric groups
KW - hexaazaisowurtzitane
KW - nitration
UR - https://www.scopus.com/pages/publications/105039079121
U2 - 10.1002/prep.70211
DO - 10.1002/prep.70211
M3 - Review article
AN - SCOPUS:105039079121
SN - 0721-3115
JO - Propellants, Explosives, Pyrotechnics
JF - Propellants, Explosives, Pyrotechnics
ER -