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Regulation of stability and density of energetic materials via isomerism.
Zhang, Wenjin; Yang, Yiling; Shi, Shaoyi; Pang, Siping; Li, Yuchuan; Sun, Chenghui.
Afiliación
  • Zhang W; School of Materials Science & Engineering, Beijing Institute of Technology, Beijing 100081, China. liyuchuan@bit.edu.cn.
  • Yang Y; School of Materials Science & Engineering, Beijing Institute of Technology, Beijing 100081, China. liyuchuan@bit.edu.cn.
  • Shi S; School of Materials Science & Engineering, Beijing Institute of Technology, Beijing 100081, China. liyuchuan@bit.edu.cn.
  • Pang S; School of Materials Science & Engineering, Beijing Institute of Technology, Beijing 100081, China. liyuchuan@bit.edu.cn.
  • Li Y; School of Materials Science & Engineering, Beijing Institute of Technology, Beijing 100081, China. liyuchuan@bit.edu.cn.
  • Sun C; School of Materials Science & Engineering, Beijing Institute of Technology, Beijing 100081, China. liyuchuan@bit.edu.cn.
Phys Chem Chem Phys ; 25(30): 20168-20172, 2023 Aug 02.
Article en En | MEDLINE | ID: mdl-37470709
ABSTRACT
Selective regulation of stability and density via isomerism is a promising strategy for developing energetic materials. In this work, we selectively introduced dinitromethyl groups at different positions of 4-nitro-1,2,3-triazole. The regional heterogeneity endows a high crystal density by virtue of the dense packing; on the other hand, it changes the charge distribution in the molecule, and reinforces the hydrogen bonding interactions, all of which stabilize the material. The resulting compounds exhibit excellent detonation properties and impact sensitivity that are comparable to those of HMX (Dv = 9250 m s-1 and IS = 10 J).

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Phys Chem Chem Phys Asunto de la revista: BIOFISICA / QUIMICA Año: 2023 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Phys Chem Chem Phys Asunto de la revista: BIOFISICA / QUIMICA Año: 2023 Tipo del documento: Article