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Energetic Bis(3,5-dinitro‑1H‑1,2,4-triazolyl)dihydro- and dichloroborates and Bis(5-nitro‑2H‑tetrazolyl)‑, Bis(5-(trinitromethyl)‑2H‑tetrazolyl)‑, and Bis(5-(fluorodinitromethyl)‑2H‑tetrazolyl)dihydroborate

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Figshare2016-02-19 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Energetic_Bis_3_5_dinitro_1_i_H_i_1_2_4_triazolyl_dihydro_and_dichloroborates_and_Bis_5_nitro_2_i_H_i_tetrazolyl_Bis_5_trinitromethyl_2_i_H_i_tetrazolyl_and_Bis_5_fluorodinitromethyl_2_i_H_i_tetrazolyl_dihydroborate/2418331
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Salts of bis­(3,5-dinitro-1H-1,2,4-triazolyl)­dihydro- and dichloroborate and bis­(5-nitro-2H-tetrazolyl)-, bis­(5-trinitromethyl-2H-tetrazolyl)-, and bis­(5-fluorodinitromethyl-2H-tetrazolyl)­dihydroborate anions have been synthesized by the treatment of hydroborates or chloroborates with the corresponding nitroazoles or nitroazolates, respectively. Alkali-metal salts of these dihydroborates are energetic and can be shock-sensitive, while salts with larger organic cations, such as NMe4+, PPh4+, or (Ph3P)2N+, are less sensitive. Poly­(nitroazolyl)­borates are promising candidates for a new class of environmentally benign energetic materials and high-oxygen carriers.
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2016-02-19
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