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1,3-diaminoguanidinium sulfate | 65802-57-5

中文名称
——
中文别名
——
英文名称
1,3-diaminoguanidinium sulfate
英文别名
diaminoguanidinium sulfate;bis(diaminoguanidinium) sulfate;N,N'-diamino-guanidine; sulfate;N,N'-Diamino-guanidin; Sulfat;Bis-(N,N'-diamino-guanidinium)-sulfat
1,3-diaminoguanidinium sulfate化学式
CAS
65802-57-5
化学式
CH9N5O4S
mdl
——
分子量
187.18
InChiKey
MUBBJXYCRVFYLJ-UHFFFAOYSA-N
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

计算性质

  • 辛醇/水分配系数(LogP):
    -2.81
  • 重原子数:
    11
  • 可旋转键数:
    1
  • 环数:
    0.0
  • sp3杂化的碳原子比例:
    0.0
  • 拓扑面积:
    185
  • 氢给体数:
    6
  • 氢受体数:
    7

反应信息

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文献信息

  • Nitrogen‐Rich Salts of 1 <i>H</i> ,1′ <i>H</i> ‐5,5′‐Bitetrazole‐1,1′‐diol: Energetic Materials with High Thermal Stability
    作者:Niko Fischer、Thomas M. Klapötke、Marius Reymann、Jörg Stierstorfer
    DOI:10.1002/ejic.201201192
    日期:2013.4.12
    the diammonium (2), the dihydrazinium (3), the bis-guanidinium (4), the bis(aminoguanidinium) (5), the diaminoguanidinium salt monohydrate (6), the triaminoguanidinium salt monohydrate (7), the 1-amino-3-nitroguanidinium salt dihydrate (8), the diaminouronium salt monohydrate (9), the bis(oxalyldihydrazidinium) (10), the oxalyldihydrazidinium salt dihydrate (11), the 3,6-dihydrazino-1,2,4,5-tetrazinium
    乙二醛为原料合成 1H,1'H-5,5'-Bitetraazole-1,1'-二醇,用羟胺处理后转化为乙二。在乙醇中用 Cl2 气体化乙二,然后进行/叠氮交换,生成二叠氮基二,在酸性条件下(HCl 气体在乙醚中)环化生成 1H,1'H-5,5'-bitetrazole-1,1'-二二醇 (1)。1 的多种富氮盐,例如二 (2)、二 (3)、双胍 (4)、双() (5)、二胍盐合物 (6)、三胍盐合物(7)、1-基-3-硝胍盐二水合物(8)、二盐一合物(9)、双(草酰二酰)(10)、草酰二酰二水合物(11)、3,6 -dihydrazino-1,2,4,5-tetrazinium (12), 5-四唑(13)、双(5-基-1-甲基-1H-四唑)盐(14)、双(5-基-2-甲基-2H-四唑)加合物(15)和1,5-二氨基四唑鎓盐
  • 4-Amino-3,5-dinitropyrazolate salts—highly insensitive energetic materials
    作者:Yanqiang Zhang、Yangen Huang、Damon A. Parrish、Jean'ne M. Shreeve
    DOI:10.1039/c1jm10340g
    日期:——
    Energetic salts based on the 4-amino-3,5-dinitropyrazolate anion and selected nitrogen-rich cations were prepared in high yield by neutralization or metathesis reactions. Their key properties of the resulting energetic salts, such as melting point, thermal stability (169–303 °C), density (1.54–1.84 g cm−3), impact sensitivity (>60 J), heat of formation, and detonation pressure (20.99–32.55 GPa) and velocity (7712–8751 m s−1), were measured or calculated. As highly insensitive energetic materials, salts 9 (32.55 GPa, 8743 m s−1) and 11 (28.85 GPa, 8751 m s−1) are comparable with 1,3,5-triamino-2,4,6-trinitrobenzene (TATB, 31.15 GPa and 8114 m s−1).
    通过中和反应或偏合成反应,高产制备了基于 4-基-3,5-二硝基吡唑酸阴离子和特定富氮阳离子的高能盐。对所制备的高能盐的关键特性,如熔点、热稳定性(169â303 °C)、密度(1.54â1.84 g cmâ3)、冲击灵敏度(>60 J)、形成热、引爆压力(20.99â32.55 GPa)和速度(7712â8751 m sâ1)进行了测量或计算。作为高度不敏感的高能材料,盐 9(32.55 GPa,8743 m sâ1)和盐 11(28.85 GPa,8751 m sâ1)与 1,3,5-三氨基-2,4,6-三硝基苯(TATB,31.15 GPa 和 8114 m sâ1)相当。
  • Nitrogen-Rich 5,5′-Bistetrazolates and their Potential Use in Propellant Systems: A Comprehensive Study
    作者:Niko Fischer、Dániel Izsák、Thomas M. Klapötke、Sebastian Rappenglück、Jörg Stierstorfer
    DOI:10.1002/chem.201103737
    日期:2012.3.26
    A large variety of twice‐deprotonated nitrogen‐rich 5,5′‐bistetrazolates, that is, the ammonium (1), hydrazinium (2), hydroxylammonium (3), guanidinium (4), aminoguanidinium (5), diaminoguanidinium (6), triaminoguanidinium (7), and diaminouronium (8) salts, have been synthesized. Energetic compounds 1–8 were fully characterized by single‐crystal X‐ray diffraction (except 8), NMR spectroscopy, IR and
    各种各样的两次去质子化的富氮5,5'-双四唑酸盐,即(1),(2),羟基(3),(4),(5),二氨基胍(6)合成了三胍盐(7)和二基尿鎓(8)盐。高能化合物1 – 8通过单晶X射线衍射得到了充分表征(除了8),NMR光谱,IR和拉曼光谱以及差示扫描量热法(DSC)测量。关于其在推进剂应用中的潜在用途,确定了对冲击,摩擦和放电的敏感性。通过使用EXPLO5计算机代码,基于计算出的(CBS-4M)地层热和X射线密度,计算了几个推进和爆炸参数(例如,爆炸热,爆炸速度)。此外,还通过计算化合物在等压条件下的比能和比冲量,研究了1 – 8在各种配方中的性能。
  • Oxy-bridged bis(1H-tetrazol-5-yl)furazan and its energetic salts paired with nitrogen-rich cations: highly thermally stable energetic materials with low sensitivity
    作者:Lixuan Liang、Haifeng Huang、Kai Wang、Chengming Bian、Jinhong Song、Liming Ling、Fengqi Zhao、Zhiming Zhou
    DOI:10.1039/c2jm33873d
    日期:——
    Energetic salts based on 4,4′-oxybis[3,3′-(1H-5-tetrazol)]furazan were readily synthesized and fully characterized by NMR (1H, 13C), IR spectroscopy, elemental analysis, and differential scanning calorimetry (DSC). Bis(guanidinium) (6), bis(aminoguanidinium) (7), bis(diaminoguanidinium) (8) salts and carbonic dihydrazidinium(HBTFOF)2 (13) were further confirmed by single-crystal X-ray diffraction. All the salts exhibit excellent thermal stabilities with decomposition temperatures over the range 212–289 °C. The densities of the energetic salts ranged between 1.64 and 1.86 g cm−3. The detonation pressures and velocities were calculated to be between 19.7 and 30.8 GPa and 7266–8624 m s−1, respectively. Impact sensitivities were found to be in the range 5–36 J. The relationship between salt structure and thermal stability was studied by NBO analysis for compounds 6, 7, and 8.
    基于 4,4′-氧双[3,3′-(1H-5-四唑)]呋喃的高能盐很容易合成,并通过核磁共振(1H、13C)、红外光谱、元素分析和差示扫描量热法(DSC)进行了全面表征。通过单晶 X 射线衍射进一步证实了双胍盐 (6)、双胍盐 (7)、双胍盐 (8) 和碳酸鎓盐 (HBTFOF)2 (13)。所有盐类都具有极佳的热稳定性,分解温度在 212-289 ℃ 之间。高能盐的密度介于 1.64 和 1.86 g cm-3 之间。计算得出的爆炸压力和速度分别为 19.7 至 30.8 GPa 和 7266-8624 m s-1。通过对化合物 6、7 和 8 进行 NBO 分析,研究了盐结构与热稳定性之间的关系。
  • Energetic Salts Based on Monoanions of<i>N</i>,<i>N</i>-Bis(1<i>H</i>-tetrazol-5-yl)amine and 5,5′-Bis(tetrazole)
    作者:Yong Guo、Guo-Hong Tao、Zhuo Zeng、Haixiang Gao、Damon A. Parrish、Jean'ne M. Shreeve
    DOI:10.1002/chem.200902951
    日期:2010.3.22
    High‐density energetic salts that contain nitrogen‐rich cations and the 5‐(tetrazol‐5‐ylamino)tetrazolate (HBTA−) or the 5‐(tetrazol‐5‐yl)tetrazolate (HBT−) anion were readily synthesized by the metathesis reactions of sulfate salts with barium compounds, such as bis[5‐(tetrazol‐5‐ylamino)tetrazolate] (Ba(HBTA)2), barium iminobis(5‐tetrazolate) (BaBTA), or barium 5,5′‐bis(tetrazolate) (BaBT) in aqueous
    高密度包含富氮阳离子和5-(四唑-5-基基)四氮唑(HBTA高能盐- )或5-(四唑-5-基)四氮唑(HBT - )阴离子易于被复分解合成硫酸盐与化合物的反应,例如双[5-(四唑-5-基)四唑酸盐](Ba(HBTA)2),亚基双(5-四唑酸盐)(BaBTA)或5,5'-bis (四唑酸盐)(BaBT)在溶液中。所有盐均通过IR光谱,多核(1 H,13 C,15 N)NMR光谱,元素分析,密度,差示扫描量热法(DSC)和冲击敏感性进行了全面表征。的Ba(HBTA)2 ⋅ 4小时2O通过单晶X射线衍射确定在三斜晶系空间群P中的结晶度,密度为2.177 g cm -3。通过气体比重瓶测量,其他有机高能盐的密度在1.55-1.75g cm -3的范围内。爆轰压力(P为这些盐计算)值的范围从19.4至33.6 GPA和爆速(ν d)范围从7677至9487米小号-1,这使得它们竞争性的高能材料。固态1313
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