Home The crystal structure of 2,3-dimethyl-1,4-dinitrobenzene – a Z′ = 4 structure, C8H8N2O4
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The crystal structure of 2,3-dimethyl-1,4-dinitrobenzene – a Z′ = 4 structure, C8H8N2O4

  • Shen Fanfan EMAIL logo , Xue Shaomin and Wang Jianlong
Published/Copyright: October 4, 2018

Abstract

C8H8N2O4, triclinic, P1̄ (no. 2), a = 9.1093(5) Å, b = 13.2430(8) Å, c = 15.4334(10) Å, α = 106.544(2)°, β = 98.150(2)°, γ = 96.151(2)°, V = 1745.22(18) Å3, Z = 8, Rgt(F) = 0.0508, wRref(F2) = 0.1141, T = 173(2) K.

CCDC no.: 1866608

The four crystallographically independent title molecules, forming the asymmetric unit are shown in the figure. Tables 1 and 2 contain details on crystal structure and measurement conditions and a list of the atoms including atomic coordinates and displacement parameters.

Table 1:

Data collection and handling.

Crystal:Colorless block
Size:0.28 × 0.19 × 0.16 mm
Wavelength:Mo Kα radiation (0.71073 Å)
μ:0.12 mm−1
Diffractometer, scan mode:PHOTON 100 CMOS, ω
θmax, completeness:25.2°, 98%
N(hkl)measured, N(hkl)unique, Rint:14259, 6195, 0.056
Criterion for Iobs, N(hkl)gt:Iobs > 2 σ(Iobs), 3792
N(param)refined:513
Programs:Bruker [1, 2] , SHELX [3]
Table 2:

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

AtomxyzUiso*/Ueq
C1A0.2726(3)0.38606(18)0.40512(17)0.0227(6)
C2A0.3792(3)0.33848(18)0.44621(17)0.0238(6)
C3A0.4213(3)0.37687(19)0.54265(17)0.0243(6)
C4A0.3519(3)0.45921(19)0.58844(18)0.0264(6)
C5A0.2470(3)0.5067(2)0.54595(18)0.0289(6)
H5A0.20410.56360.58090.035*
C6A0.2068(3)0.46924(19)0.45206(18)0.0275(6)
H6A0.13570.49960.42020.033*
C7A0.4512(3)0.2501(2)0.39086(19)0.0343(7)
H7A10.41820.23920.32520.051*
H7A20.42150.18400.40500.051*
H7A30.56070.26960.40650.051*
C8A0.5412(3)0.3312(2)0.5908(2)0.0347(7)
H8A10.57970.38000.65280.052*
H8A20.62330.32190.55600.052*
H8A30.49820.26190.59490.052*
C1B0.0856(3)0.58481(19)−0.09746(17)0.0241(6)
C2B0.1807(3)0.54845(19)−0.03846(17)0.0236(6)
C3B0.2066(3)0.60570(19)0.05642(17)0.0237(6)
C4B0.1324(3)0.69329(19)0.08205(17)0.0248(6)
C5B0.0374(3)0.72635(19)0.02172(18)0.0293(6)
H5B−0.01180.78580.04360.035*
C6B0.0145(3)0.67240(19)−0.07052(18)0.0302(6)
H6B−0.04800.6946−0.11410.036*
C7B0.2591(3)0.4542(2)−0.0726(2)0.0362(7)
H7B10.21130.3928−0.05790.054*
H7B20.36490.4716−0.04290.054*
H7B30.25190.4368−0.13940.054*
C8B0.3062(3)0.5684(2)0.12355(19)0.0376(7)
H8B10.29680.49050.10170.056*
H8B20.27590.59040.18380.056*
H8B30.41070.59990.12900.056*
C1C0.7727(3)0.95188(18)0.49828(17)0.0230(6)
C2C0.8336(3)0.86820(18)0.44575(17)0.0229(6)
C3C0.9421(3)0.82443(18)0.49233(17)0.0225(6)
C4C0.9785(3)0.86907(18)0.58772(18)0.0231(6)
C5C0.9177(3)0.95348(19)0.63803(18)0.0255(6)
H5C0.94790.98120.70290.031*
C6C0.8130(3)0.99616(19)0.59243(18)0.0263(6)
H6C0.76951.05440.62460.032*
C7C0.7904(3)0.8283(2)0.34223(18)0.0373(7)
H7C10.72050.76110.32380.056*
H7C20.88060.81650.31520.056*
H7C30.74200.88140.32050.056*
C8C1.0153(3)0.7368(2)0.4373(2)0.0383(7)
H8C10.94620.66920.41810.057*
H8C21.10750.73020.47520.057*
H8C31.03980.75410.38280.057*
C1D0.2709(3)0.95801(18)0.03558(18)0.0234(6)
C2D0.3906(3)0.94318(18)0.09544(17)0.0242(6)
C3D0.4831(3)0.87017(19)0.05626(17)0.0244(6)
C4D0.4481(3)0.82063(19)−0.03786(18)0.0252(6)
C5D0.3307(3)0.83882(19)−0.09655(18)0.0265(6)
H5D0.31370.8037−0.16080.032*
C6D0.2404(3)0.90915(19)−0.05859(18)0.0258(6)
H6D0.15860.9241−0.09600.031*
C7D0.4273(3)1.0031(2)0.19690(18)0.0344(7)
H7D10.36161.05730.21120.052*
H7D20.53231.03780.21320.052*
H7D30.41170.95320.23220.052*
C8D0.6155(3)0.8499(2)0.1162(2)0.0402(7)
H8D10.57960.80810.15430.060*
H8D20.67340.91810.15580.060*
H8D30.67960.81030.07730.060*
N1A0.2235(2)0.34924(17)0.30451(15)0.0289(5)
N2A0.3846(3)0.5015(2)0.68959(16)0.0364(6)
N1B0.0567(3)0.52774(19)−0.19735(15)0.0334(6)
N2B0.1550(3)0.75968(17)0.17929(16)0.0368(6)
N1C0.6579(2)0.99891(19)0.45219(16)0.0324(6)
N2C1.0908(3)0.82835(19)0.64295(17)0.0343(6)
N1D0.1638(2)1.02742(17)0.07249(16)0.0316(6)
N2D0.5414(3)0.74398(19)−0.08129(17)0.0381(6)
O1A0.1643(2)0.25661(14)0.26728(13)0.0406(5)
O2A0.2420(2)0.41563(15)0.26431(13)0.0384(5)
O3A0.4046(2)0.59850(16)0.72426(14)0.0514(6)
O4A0.3860(3)0.43800(18)0.73352(14)0.0566(6)
O1B0.0858(2)0.57918(16)−0.24863(13)0.0447(5)
O2B0.0028(3)0.43345(16)−0.22335(14)0.0507(6)
O3B0.2804(3)0.77616(16)0.22711(14)0.0532(6)
O4B0.0470(3)0.79794(15)0.20603(14)0.0496(6)
O1C0.6817(2)1.09516(16)0.46559(16)0.0501(6)
O2C0.5439(2)0.94060(16)0.40555(15)0.0484(6)
O3C1.0935(2)0.73256(16)0.62167(16)0.0514(6)
O4C1.1739(2)0.89391(17)0.70888(15)0.0529(6)
O1D0.1284(2)1.09149(14)0.03276(14)0.0405(5)
O2D0.1111(2)1.01379(16)0.13786(14)0.0446(5)
O3D0.6042(2)0.76432(16)−0.14018(16)0.0528(6)
O4D0.5479(3)0.66504(18)−0.05650(16)0.0697(8)

Source of material

The title compound was prepared by nitration of o-xylene. A reaction mixture was comprised of fuming nitric acid, concentrated sulfuric acid, and o-xylene, was stirred with 1 h over a temperature at 283 K. The reaction mixture was separated to obtain an organic phase. The organic phase was washed, dried, distilled to give a concentrated solution. Several colorless single crystals were obtained by purifying the above solution with column chromatography on silica gel eluting with 1%, petroleum ether in ethyl acetate.

Experimental details

The coordinates of H-atoms at the benzene ring and methyl group were refined with the C—H distance fixed to 0.95 and 0.98 Å, respectively, and constrained to ride on their parent atoms, with Uiso(H) = 1.2 times Ueq(C).

Comment

Nitration of aromatic compounds is a widely used reaction to realize organic intermediates required in large tonnages for the fine chemical industry [4, 5] . The conventional nitration process, employing a nitrating mixture of nitric acid and sulfuric acid leads to overnitration or to oxidized by-products. Here we report the crystal structure of a significant by-product 2,3-dimethyl-1,4-dinitrobenzene which was prepared by nitrifying o-xylene [6], [7], [8].

As shown in the figure four crystallographically independent, 2,3-dimethyl-1,4-dinitrobenzene molecules are present in the asymmetric unit. The four rings are approximately planar. Owing to steric effects, the dihedral angles of the nitro groups and their parent rings are 59.3° (N1A/O1A,O2A), 45.7° (N2A/O3A,O4A), 58.1° (N1B/O1B,O2B) and 36.6° (N2B/O3B,O4B), 55.7° (N1C/O1C,O2C) and 37.1° (N2C/O3C,O4C), 48.5° (N1D/O1D,O2D), 60.15° (N2D/O3D,O4D) respectively. Bond lengths and angles are in accord with those in the isomer 1,2-dimethyl-3,5-dinitrobenzene [9] and a related trimethyl compound [10].

Acknowledgements

We thank the Center of Testing and Analysis, Huaiyin Normal University, for support.

References

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Received: 2018-07-18
Accepted: 2018-09-09
Published Online: 2018-10-04
Published in Print: 2018-12-19

©2018 Shen Fanfan et al., published by De Gruyter, Berlin/Boston

This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.

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  57. The crystal structure of 2,3-dimethyl-1,4-dinitrobenzene – a Z′ = 4 structure, C8H8N2O4
  58. Crystal structure of [(1,2-η)-1,2,3,4,5-pentamethyl-cyclopenta-2,4-dien-1-yl] (1,4,10,13-tetraoxa-7,16-diazacyclooctadecane-κ6N2,O4) rubidium (I), [Rb(diaza-18-crown-6)]Cp*, C22H41N2O4Rb
  59. Crystal structure of 2-(4-fluorophenyl)-N-phenyl-2-(phenylamino)ethanesulfonamide – toluene (1/0.5), C23.5H23FN2O2S
  60. Crystal structure of pyrene-4-aldehyde, C17H10O
  61. Crystal structure of 2-(furan-2-yl)-5-methyl-1,3-dioxane-5-carboxylic acid, C10H12O5
  62. Crystal structure of 2-(4-chlorophenyl)-3-phenyl-1,8-naphthyridine, C20H13N2Cl
  63. Crystal structure and photochromism of 1-(2-ethyl-5-formylthiophen-3yl)-2-(2-cyano-1,5-dimethyl-4-pyrrl)-3,3,4,4,5,5-hexafluorocyclopent-1-ene, C19H14F6N2OS
  64. Crystal structure of 2-(4-bromophenyl)-1,3-dimethyl-1H-perimidin-3-ium iodide, C19H16BrIN2
  65. Crystal structure of 2-(4-(dimethylamino)phenyl)-10-methylacridin-9(10H)-one, C22H20N2O
  66. Crystal structure of 4-(acetoxymethyl)-6-(3-acetyl-3-(4-fluorophenyl)thioureido)cyclohex-4-ene-1,2,3-triyl triacetate, C24H26FN2O9S
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