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Dft theoretical study of energetic nitrogen-rich C4N6H8-n(NO2)n derivatives
Density functional theory (DFT) calculations at the B3LYP/6-31G** theoretical level were performed for a series of guanidine-fused bicyclic skeleton derivatives C4N6H8-n(NO2)n (n = 1 - 6). The heats of formation (HOFs) were calculated by isodesmic reactions, and the detonation properties were evalua...
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Published in: | Química Nova 2014, Vol.37 (1), p.74-80 |
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creator | Jin, Xinghui Hu, Bingcheng Jia, Huanqing Liu, Zuliang Lu, Chunxu |
description | Density functional theory (DFT) calculations at the B3LYP/6-31G** theoretical level were performed for a series of guanidine-fused bicyclic skeleton derivatives C4N6H8-n(NO2)n (n = 1 - 6). The heats of formation (HOFs) were calculated by isodesmic reactions, and the detonation properties were evaluated using the Kamlet - Jacobs equations. The bond dissociation energies were also analyzed to investigate the thermal stability and sensitivity of the compounds. The results show that all of the derivatives have high positive HOFs, compound G has the highest theoretical density, and compound F1 has the highest detonation velocity and detonation pressure. Considering both the detonation properties and thermal stabilities, compounds D1 and D4 (3 nitro substituents), E1 - E6 (4 nitro substituents), and G (6 nitro substituents) can be regarded as potential candidates for high-energy density materials. |
doi_str_mv | 10.1590/S0100-40422014000100014 |
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The heats of formation (HOFs) were calculated by isodesmic reactions, and the detonation properties were evaluated using the Kamlet - Jacobs equations. The bond dissociation energies were also analyzed to investigate the thermal stability and sensitivity of the compounds. The results show that all of the derivatives have high positive HOFs, compound G has the highest theoretical density, and compound F1 has the highest detonation velocity and detonation pressure. Considering both the detonation properties and thermal stabilities, compounds D1 and D4 (3 nitro substituents), E1 - E6 (4 nitro substituents), and G (6 nitro substituents) can be regarded as potential candidates for high-energy density materials.</description><identifier>ISSN: 0100-4042</identifier><identifier>ISSN: 1678-7064</identifier><identifier>DOI: 10.1590/S0100-40422014000100014</identifier><language>eng</language><publisher>Sociedade Brasileira de Química</publisher><subject>CHEMISTRY, MULTIDISCIPLINARY ; density functional theory ; guanidine-fused bicyclic skeleton derivatives ; molecular mechanics</subject><ispartof>Química Nova, 2014, Vol.37 (1), p.74-80</ispartof><rights>This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c2564-3dc3486996d8bd81656567839cc60ccd7c4c3ec298a6d46b63b355de3c2ef9403</citedby></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>230,314,776,780,881,24130,27903,27904</link.rule.ids></links><search><creatorcontrib>Jin, Xinghui</creatorcontrib><creatorcontrib>Hu, Bingcheng</creatorcontrib><creatorcontrib>Jia, Huanqing</creatorcontrib><creatorcontrib>Liu, Zuliang</creatorcontrib><creatorcontrib>Lu, Chunxu</creatorcontrib><title>Dft theoretical study of energetic nitrogen-rich C4N6H8-n(NO2)n derivatives</title><title>Química Nova</title><addtitle>Quím. 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Considering both the detonation properties and thermal stabilities, compounds D1 and D4 (3 nitro substituents), E1 - E6 (4 nitro substituents), and G (6 nitro substituents) can be regarded as potential candidates for high-energy density materials.</description><subject>CHEMISTRY, MULTIDISCIPLINARY</subject><subject>density functional theory</subject><subject>guanidine-fused bicyclic skeleton derivatives</subject><subject>molecular mechanics</subject><issn>0100-4042</issn><issn>1678-7064</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2014</creationdate><recordtype>article</recordtype><sourceid>DOA</sourceid><recordid>eNp1UctOwzAQ9AEkSuEbyBEOgfUjdnJE5dGKqj0AZ8tZO62rEiM7rdS_J21RLwjtYXdnNaPRLCE3FO5pUcHDO1CAXIBgDKgA2K_9cEYGp8MFuUxpBcAUV8WAvD01XdYtXYiu82jWWeo2dpeFJnOti4s9mLW-i2Hh2jx6XGYjMZPjMm9vZ3N212bWRb81nd-6dEXOG7NO7vq3D8nny_PHaJxP56-T0eM0R1ZIkXOLXJSyqqQta1tSWfSlSl4hSkC0CgVyh6wqjbRC1pLXvCis48hcUwngQzI56tpgVvo7-i8TdzoYrw9AiAttYm987XRdCGYUUkrBCWWaupdTqkFjwZqKY691f9RK6N066FXYxLY3rw9R6j9R9gR1JGAMKUXXnAxQ0Psn_Mv8AR9qd9c</recordid><startdate>2014</startdate><enddate>2014</enddate><creator>Jin, Xinghui</creator><creator>Hu, Bingcheng</creator><creator>Jia, Huanqing</creator><creator>Liu, Zuliang</creator><creator>Lu, Chunxu</creator><general>Sociedade Brasileira de Química</general><scope>AAYXX</scope><scope>CITATION</scope><scope>GPN</scope><scope>DOA</scope></search><sort><creationdate>2014</creationdate><title>Dft theoretical study of energetic nitrogen-rich C4N6H8-n(NO2)n derivatives</title><author>Jin, Xinghui ; Hu, Bingcheng ; Jia, Huanqing ; Liu, Zuliang ; Lu, Chunxu</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c2564-3dc3486996d8bd81656567839cc60ccd7c4c3ec298a6d46b63b355de3c2ef9403</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2014</creationdate><topic>CHEMISTRY, MULTIDISCIPLINARY</topic><topic>density functional theory</topic><topic>guanidine-fused bicyclic skeleton derivatives</topic><topic>molecular mechanics</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Jin, Xinghui</creatorcontrib><creatorcontrib>Hu, Bingcheng</creatorcontrib><creatorcontrib>Jia, Huanqing</creatorcontrib><creatorcontrib>Liu, Zuliang</creatorcontrib><creatorcontrib>Lu, Chunxu</creatorcontrib><collection>CrossRef</collection><collection>SciELO</collection><collection>DOAJ Directory of Open Access Journals</collection><jtitle>Química Nova</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Jin, Xinghui</au><au>Hu, Bingcheng</au><au>Jia, Huanqing</au><au>Liu, Zuliang</au><au>Lu, Chunxu</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Dft theoretical study of energetic nitrogen-rich C4N6H8-n(NO2)n derivatives</atitle><jtitle>Química Nova</jtitle><addtitle>Quím. Nova</addtitle><date>2014</date><risdate>2014</risdate><volume>37</volume><issue>1</issue><spage>74</spage><epage>80</epage><pages>74-80</pages><issn>0100-4042</issn><issn>1678-7064</issn><abstract>Density functional theory (DFT) calculations at the B3LYP/6-31G** theoretical level were performed for a series of guanidine-fused bicyclic skeleton derivatives C4N6H8-n(NO2)n (n = 1 - 6). The heats of formation (HOFs) were calculated by isodesmic reactions, and the detonation properties were evaluated using the Kamlet - Jacobs equations. The bond dissociation energies were also analyzed to investigate the thermal stability and sensitivity of the compounds. The results show that all of the derivatives have high positive HOFs, compound G has the highest theoretical density, and compound F1 has the highest detonation velocity and detonation pressure. Considering both the detonation properties and thermal stabilities, compounds D1 and D4 (3 nitro substituents), E1 - E6 (4 nitro substituents), and G (6 nitro substituents) can be regarded as potential candidates for high-energy density materials.</abstract><pub>Sociedade Brasileira de Química</pub><doi>10.1590/S0100-40422014000100014</doi><tpages>7</tpages><oa>free_for_read</oa></addata></record> |
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title | Dft theoretical study of energetic nitrogen-rich C4N6H8-n(NO2)n derivatives |
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