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Synthesis, Crystal Structure, and Characterization of Energetic Salts Based on 3,5-Diamino-4H-Pyrazol-4-One Oxime

In order to broaden the study of energetic cations, a cation 3,5-diamino-4H-pyrazol-4-one oxime (DAPO) with good thermal stability was proposed, and its three salts were synthesized by a simple and efficient method. The structures of the three salts were verified by infrared spectroscopy, mass spect...

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Autores principales: Dong, Wen-Shuai, Zhang, Lu, Cao, Wen-Li, Lu, Zu-Jia, Tariq, Qamar-un-Nisa, Zhang, Chao, Wu, Xiao-Wei, Li, Zong-You, Zhang, Jian-Guo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9824549/
https://www.ncbi.nlm.nih.gov/pubmed/36615648
http://dx.doi.org/10.3390/molecules28010457
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author Dong, Wen-Shuai
Zhang, Lu
Cao, Wen-Li
Lu, Zu-Jia
Tariq, Qamar-un-Nisa
Zhang, Chao
Wu, Xiao-Wei
Li, Zong-You
Zhang, Jian-Guo
author_facet Dong, Wen-Shuai
Zhang, Lu
Cao, Wen-Li
Lu, Zu-Jia
Tariq, Qamar-un-Nisa
Zhang, Chao
Wu, Xiao-Wei
Li, Zong-You
Zhang, Jian-Guo
author_sort Dong, Wen-Shuai
collection PubMed
description In order to broaden the study of energetic cations, a cation 3,5-diamino-4H-pyrazol-4-one oxime (DAPO) with good thermal stability was proposed, and its three salts were synthesized by a simple and efficient method. The structures of the three salts were verified by infrared spectroscopy, mass spectrometry, elemental analysis, and single crystal X-ray diffraction. The thermal stabilities of the three salts were verified by differential scanning calorimetry and thermos-gravimetric analysis. DAPO-based energetic salts are analysed using a variety of theoretical techniques, such as 2D fingerprint, Hirshfeld surface, and non-covalent interaction. Among them, the energy properties of perchlorate (DAPOP) and picrate (DAPOT) were determined by EXPLO5 program combined with the measured density and enthalpy of formation. These compounds have high density, acceptable detonation performance, good thermal stability, and satisfactory sensitivity. The intermolecular interactions of the four compounds were studied by Hirshfeld surface and non-covalent interactions, indicating that hydrogen bonds and π–π stacking interactions are the reasons for the extracellular properties of perchlorate (DAPOP) and picrate (DAPOT), indicating that DAPO is an optional nitrogen-rich cation for the design and synthesis of novel energetic materials with excellent properties.
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spelling pubmed-98245492023-01-08 Synthesis, Crystal Structure, and Characterization of Energetic Salts Based on 3,5-Diamino-4H-Pyrazol-4-One Oxime Dong, Wen-Shuai Zhang, Lu Cao, Wen-Li Lu, Zu-Jia Tariq, Qamar-un-Nisa Zhang, Chao Wu, Xiao-Wei Li, Zong-You Zhang, Jian-Guo Molecules Article In order to broaden the study of energetic cations, a cation 3,5-diamino-4H-pyrazol-4-one oxime (DAPO) with good thermal stability was proposed, and its three salts were synthesized by a simple and efficient method. The structures of the three salts were verified by infrared spectroscopy, mass spectrometry, elemental analysis, and single crystal X-ray diffraction. The thermal stabilities of the three salts were verified by differential scanning calorimetry and thermos-gravimetric analysis. DAPO-based energetic salts are analysed using a variety of theoretical techniques, such as 2D fingerprint, Hirshfeld surface, and non-covalent interaction. Among them, the energy properties of perchlorate (DAPOP) and picrate (DAPOT) were determined by EXPLO5 program combined with the measured density and enthalpy of formation. These compounds have high density, acceptable detonation performance, good thermal stability, and satisfactory sensitivity. The intermolecular interactions of the four compounds were studied by Hirshfeld surface and non-covalent interactions, indicating that hydrogen bonds and π–π stacking interactions are the reasons for the extracellular properties of perchlorate (DAPOP) and picrate (DAPOT), indicating that DAPO is an optional nitrogen-rich cation for the design and synthesis of novel energetic materials with excellent properties. MDPI 2023-01-03 /pmc/articles/PMC9824549/ /pubmed/36615648 http://dx.doi.org/10.3390/molecules28010457 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dong, Wen-Shuai
Zhang, Lu
Cao, Wen-Li
Lu, Zu-Jia
Tariq, Qamar-un-Nisa
Zhang, Chao
Wu, Xiao-Wei
Li, Zong-You
Zhang, Jian-Guo
Synthesis, Crystal Structure, and Characterization of Energetic Salts Based on 3,5-Diamino-4H-Pyrazol-4-One Oxime
title Synthesis, Crystal Structure, and Characterization of Energetic Salts Based on 3,5-Diamino-4H-Pyrazol-4-One Oxime
title_full Synthesis, Crystal Structure, and Characterization of Energetic Salts Based on 3,5-Diamino-4H-Pyrazol-4-One Oxime
title_fullStr Synthesis, Crystal Structure, and Characterization of Energetic Salts Based on 3,5-Diamino-4H-Pyrazol-4-One Oxime
title_full_unstemmed Synthesis, Crystal Structure, and Characterization of Energetic Salts Based on 3,5-Diamino-4H-Pyrazol-4-One Oxime
title_short Synthesis, Crystal Structure, and Characterization of Energetic Salts Based on 3,5-Diamino-4H-Pyrazol-4-One Oxime
title_sort synthesis, crystal structure, and characterization of energetic salts based on 3,5-diamino-4h-pyrazol-4-one oxime
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9824549/
https://www.ncbi.nlm.nih.gov/pubmed/36615648
http://dx.doi.org/10.3390/molecules28010457
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