Energetic materials: The preparation and structural characterization of three biguanidinium dinitramides

被引:33
作者
Martin, A
Pinkerton, AA
Gilardi, RD
Bottaro, JC
机构
[1] USN,RES LAB,WASHINGTON,DC 20375
[2] SRI INT,MENLO PK,CA 94025
来源
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE | 1997年 / 53卷
关键词
D O I
10.1107/S0108768196013183
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Three biguanidinium salts of the energetic dinitramide anion have been prepared and structurally characterized from room-temperature X-ray diffraction data. Biguanidinium mono-dinitramide, (BIGH)(DN), triclinic, <P(1)over bar>, a = 4.3686(4), b = 9.404(2), c = 10.742(1) Angstrom, alpha = 83.54(1), beta = 80.386(9), gamma = 79.93(1)degrees, V = 426.8 (1) Angstrom(3), Z = 2, D-x = 1.62 g cm(-3). Biguanidinium bis-dinitramide, (BIGH(2))(DN)(2), monoclinic, C2/c, a = 11.892(2), b = 8.131(1), c = 13.038(2) Angstrom, beta = 115.79(1)degrees, V = 1135.1(3) Angstrom(3), Z = 4, D-x = 1.84 g cm(-3). Biguanidinium bis-dinitramide monohydrate, (BIGH(2))(DN)(2) . H2O, orthorhombic, P2(1)2(1)2(1), a = 6.4201(6), b = 13.408(1), c = 14.584(2) Angstrom, V = 1255.4(4) Angstrom(3), Z = 4, D-x = 1.76 g cm(-3). All three structures are characterized by extensive hydrogen bonding. Both the mono- and diprotontated cations consist of two planar halves twisted with respect to each other. The dinitramide anion has a surprisingly variable and asymmetric structure. The two halves of the anion are twisted with respect to each other; however, the twist varies from 5.1 to 28.9 degrees. In addition, the two ends of the anion have significantly different geometries, e.g. the 'equivalent' N-N bond lengths differ by up to 0.045 Angstrom.
引用
收藏
页码:504 / 512
页数:9
相关论文
共 50 条
  • [31] Computer simulations and analysis of structural and energetic features of some crystalline energetic materials
    Eckhardt, Craig J.
    Gavezzotti, Angelo
    [J]. JOURNAL OF PHYSICAL CHEMISTRY B, 2007, 111 (13) : 3430 - 3437
  • [32] A Review on the Preparation and Application of Nano-energetic Materials
    Wang S.-W.
    Xiao L.
    Hu Y.-B.
    Zhang G.-P.
    Gao H.-X.
    Zhao F.-Q.
    Hao G.-Z.
    Jiang W.
    [J]. Huozhayao Xuebao/Chinese Journal of Explosives and Propellants, 2022, 44 (06): : 705 - 734
  • [33] Theoretical chemical characterization of energetic-materials
    Rice, Betsy M.
    Byrd, Edward F. C.
    [J]. MULTIFUNCTIONAL ENERGETIC MATERIALS, 2006, 896 : 213 - +
  • [34] CHARACTERIZATION OF ENERGETIC AND STRUCTURAL HETEROGENEITIES OF ACTIVATED CARBONS
    JARONIEC, M
    MADEY, R
    LU, X
    CHOMA, J
    [J]. LANGMUIR, 1988, 4 (04) : 911 - 917
  • [35] Three-dimensional printing of energetic materials: A review
    Zhang, Ji-chi
    He, Kuai
    Zhang, Da-wei
    Dong, Ji-dong
    Li, Bing
    Liu, Yi-jie
    Gao, Guo -lin
    Jiang, Zai-xing
    [J]. ENERGETIC MATERIALS FRONTIERS, 2022, 3 (02): : 97 - 108
  • [36] High-pressure structural studies of energetic materials
    Millar, David I. A.
    Marshall, William G.
    Oswald, Iain D. H.
    Pulham, Colin R.
    [J]. CRYSTALLOGRAPHY REVIEWS, 2010, 16 (02) : 115 - 132
  • [37] Facile preparation methods of hydrotalcite layered materials and their structural characterization by combined techniques
    Conterosito, Eleonora
    Gianotti, Valentina
    Palin, Luca
    Boccaleri, Enrico
    Viterbo, Davide
    Milanesio, Marco
    [J]. INORGANICA CHIMICA ACTA, 2018, 470 : 36 - 50
  • [38] Electroactive materials for organic electronics: preparation strategies, structural aspects and characterization techniques
    Pron, Adam
    Gawrys, Pawel
    Zagorska, Malgorzata
    Djurado, David
    Demadrille, Renaud
    [J]. CHEMICAL SOCIETY REVIEWS, 2010, 39 (07) : 2577 - 2632
  • [39] Preparation, quasi-static, and dynamic compressive mechanical properties of BMG-W energetic structural materials
    Hu, Aobo
    Cai, Shuizhou
    [J]. JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2023, 24 : 9657 - 9676
  • [40] Preparation and characterization of GA/RDX nanostructured energetic composites
    YUANFEI LAN
    XUEBAO WANG
    YUNJUN LUO
    [J]. Bulletin of Materials Science, 2016, 39 : 1701 - 1707