Home The crystal structure of propan-2-one O-(2,4,6-trinitrophenyl) oxime, C9H8N4O7
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The crystal structure of propan-2-one O-(2,4,6-trinitrophenyl) oxime, C9H8N4O7

  • Chen Lizhen , Liu Yunzhang , Wang Jianlong EMAIL logo , Chen Jun and Pan Hongxia
Published/Copyright: August 2, 2019

Abstract

C9H8N4O7, orthorhombic, Aea2 (no. 41; old symbol Aba2), a = 21.0595(11) Å, b = 14.8565(8) Å, c = 7.6437(4) Å, V = 2391.5(2) Å3, Z = 8, Rgt(F) = 0.0397, wRref(F2) = 0.0825, T = 173(2) K.

CCDC no.: 1940129

The molecular structure is shown in the figure. Table 1 contains crystallographic data and Table 2 contains the list of the atoms including atomic coordinates and displacement parameters.

Table 1:

Data collection and handling.

Crystal:Yellow column
Size:0.26 × 0.13 × 0.06 mm
Wavelength:Mo Kα radiation (0.71073 Å)
μ:0.14 mm−1
Diffractometer, scan mode:PHOTON 100 CMOS, ω
θmax, completeness:26.5°, >99%
N(hkl)measured, N(hkl)unique, Rint:22229, 2358, 0.080
Criterion for Iobs, N(hkl)gt:Iobs > 2 σ(Iobs), 1881
N(param)refined:183
Programs:Bruker [1], SHELX [2], [3]
Table 2:

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2).

AtomxyzUiso*/Ueq
C10.72042(15)0.03319(19)0.6271(4)0.0194(7)
C20.71704(13)−0.05561(18)0.6892(4)0.0181(6)
C30.77024(14)−0.10623(19)0.7243(4)0.0203(6)
H30.7667−0.16620.76610.024*
C40.82871(14)−0.0673(2)0.6970(4)0.0218(7)
C50.83530(15)0.0201(2)0.6385(4)0.0214(7)
H50.87610.04620.62300.026*
C60.78106(15)0.06829(19)0.6034(4)0.0214(7)
C70.57142(15)0.11391(19)0.6906(5)0.0261(7)
C80.5560(2)0.1464(3)0.5117(6)0.0462(11)
H8A0.59030.18530.46960.069*
H8B0.51620.18040.51460.069*
H8C0.55140.09480.43290.069*
C90.52183(16)0.1205(3)0.8297(6)0.0416(10)
H9A0.53750.09230.93730.062*
H9B0.48320.08950.79090.062*
H9C0.51220.18400.85230.062*
N10.62352(12)0.07988(16)0.7390(4)0.0233(6)
N20.65497(11)−0.10040(16)0.7082(4)0.0224(6)
N30.88636(13)−0.12163(19)0.7215(4)0.0306(7)
N40.78921(14)0.16144(17)0.5423(4)0.0263(6)
O10.66920(10)0.08483(14)0.5932(3)0.0257(5)
O20.61783(10)−0.09371(15)0.5866(3)0.0297(5)
O30.64571(10)−0.14297(15)0.8419(3)0.0298(5)
O40.87968(12)−0.20115(16)0.7571(4)0.0418(7)
O50.93755(10)−0.08382(17)0.7043(4)0.0448(7)
O60.83271(12)0.20450(16)0.6059(4)0.0416(6)
O70.75232(13)0.18958(14)0.4311(4)0.0374(6)

Source of material

Using N,N-dimethylformamide as solvent, triethylamine as deacidification agent, ethyl acetohydroxanoate and 2,4,6-trinitrochlorobenzene reacted at 10 °C for 2 h to give 2,4,6-trinitrobenzenesulfonyl acetyl hydroxamate (EPAH), recrystallized from ethanol to obtain EPAH. Then, using 1,4-dioxane as a solvent, EPAH was reacted with perchloric acid at room temperature for 1.5 h, and filtered to obtain a yellow solid. The title compound was isolated from the yellow solid by column chromatography, and then recrystallized from chloroform at room temperature to obtain a yellow crystal suitable for single crystal X-ray diffraction.

Experimental details

All H atoms were positioned geometrically and treated as riding, with C—H bond lengths constrained to 0.95 Å and Uiso(H) = 1.2Ueq(C) for the hydrogen atoms of benzene ring, C—H bond 0.98 Å and Uiso(H) = 1.5Ueq(C) for methyl group.

Comment

3,4,5-trinitro-1H-pyrazole (TNP) is widely studied because it is the only pyrazole compound with full carbon nitrification. TNP and its derivatives can be widely used in pesticide, medicine, dye, energy-containing materials and other fields, which has far-reaching research significance and broad development prospects [4], [5], [6]. The title compounds obtained in the synthesis of amination reagents derived from ATNP have great effect on the improvement of amination reagents [7], [8]. Here we report the structure of the title compound (the figure).

In the crystal structure of the title compound, 2,4,6-trinitrophenyl substituted for the hydrogen atom on the hydroxyl group of acetone oxime, similar to the structure of EPAH [9]. The dihedral angle formed by the plane of the two nitro groups adjacent to the acetone oxime group and the plane of the benzene ring is larger. However, the dihedral angle formed by the plane of the nitro group that forms the para position with the acetone oxime group and the plane of the benzene ring is smaller. This may be due to the presence of acetone oxime group caused [10], [11]. Bond lengths and angles are all in the expected ranges [12].

Acknowledgements

We thank the Center of Testing and Analysis, Beijing University of Chemical Technoly, for support.

References

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Received: 2019-05-18
Accepted: 2019-07-12
Published Online: 2019-08-02
Published in Print: 2019-11-26

©2019 Chen Lizhen et al., published by De Gruyter, Berlin/Boston

This work is licensed under the Creative Commons Attribution 4.0 Public License.

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