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Molecules of 1,3-diamino-4-nitrobenzene, C6H7N3O2, are linked by N-H...O hydrogen bonds [N...O 2.964 (2) and 3.021 (2) Å; N-H...O 155 and 149°] into (4,4) nets. In 3,5-di­nitro­aniline, C6H5N3O4, where Z' = 2, the mol­ecules are linked by three N-H...O hydrogen bonds [N...O 3.344 (2)-3.433 (2) Å and N-H...O 150-167°] into deeply puckered nets, each of which is interwoven with its two immediate neighbours.

Supporting information

cif

Crystallographic Information File (CIF) https://doi.org/10.1107/S0108270101001809/sk1454sup1.cif
Contains datablocks global, I, II

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S0108270101001809/sk1454Isup2.hkl
Contains datablock I

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S0108270101001809/sk1454IIsup3.hkl
Contains datablock 2

CCDC references: 163928; 163929

Computing details top

For both compounds, data collection: XPREP (Bruker, 1997); cell refinement: XPREP; data reduction: XPREP; program(s) used to solve structure: SHELXS97 (Sheldrick, 1997); program(s) used to refine structure: SHELXL97 (Sheldrick, 1997); molecular graphics: PLATON (Spek, 2000); software used to prepare material for publication: SHELXL97 and WORDPERFECT macro PRPKAPPA (Ferguson, 1999).

(I) 1,3-diamino-4 -nitrobenzene top
Crystal data top
C6H7N3O2F(000) = 320
Mr = 153.15Dx = 1.552 Mg m3
Monoclinic, P21/nMo Kα radiation, λ = 0.71073 Å
a = 4.4772 (3) ÅCell parameters from 2145 reflections
b = 11.1379 (7) Åθ = 2.4–33.5°
c = 13.1891 (9) ŵ = 0.12 mm1
β = 94.748 (1)°T = 293 K
V = 655.44 (8) Å3Block, brown
Z = 40.50 × 0.40 × 0.20 mm
Data collection top
Bruker SMART 1000 CCD
diffractometer
2480 independent reflections
Radiation source: fine-focus sealed tube1530 reflections with I > 2σ(I)
Graphite monochromatorRint = 0.042
φ scans and ω scans with κ offsetsθmax = 33.5°, θmin = 2.4°
Absorption correction: multi-scan
(SADABS; Bruker, 1997)
h = 66
Tmin = 0.940, Tmax = 0.976k = 816
6928 measured reflectionsl = 2018
Refinement top
Refinement on F2Primary atom site location: structure-invariant direct methods
Least-squares matrix: fullSecondary atom site location: difference Fourier map
R[F2 > 2σ(F2)] = 0.059Hydrogen site location: inferred from neighbouring sites
wR(F2) = 0.193H-atom parameters constrained
S = 1.04 w = 1/[σ2(Fo2) + (0.1104P)2]
where P = (Fo2 + 2Fc2)/3
2480 reflections(Δ/σ)max = 0.005
100 parametersΔρmax = 0.33 e Å3
0 restraintsΔρmin = 0.26 e Å3
Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/Ueq
C10.2039 (3)0.93040 (11)0.26603 (10)0.0354 (3)
C20.0065 (3)0.83905 (12)0.27917 (9)0.0340 (3)
C30.1184 (3)0.77840 (11)0.20173 (9)0.0319 (3)
C40.0054 (3)0.81338 (11)0.10629 (9)0.0357 (3)
C50.2021 (3)0.90755 (13)0.09345 (10)0.0426 (4)
C60.3065 (4)0.96587 (13)0.17012 (11)0.0426 (3)
N10.3070 (3)0.98801 (11)0.34336 (10)0.0469 (3)
N30.3192 (3)0.68807 (10)0.22111 (9)0.0399 (3)
N40.0990 (3)0.75681 (13)0.02295 (9)0.0463 (3)
O10.2722 (3)0.66839 (12)0.03080 (9)0.0649 (4)
O20.0053 (4)0.79532 (12)0.05838 (8)0.0719 (5)
H20.07500.81810.34530.041*
H50.26960.93000.02760.051*
H60.44351.02830.15940.051*
H110.43391.04550.33240.056*
H120.24740.96810.40470.056*
H310.37610.66900.28290.048*
H320.38930.65000.17160.048*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C10.0375 (7)0.0351 (6)0.0335 (6)0.0060 (5)0.0022 (5)0.0004 (4)
C20.0366 (7)0.0399 (7)0.0251 (5)0.0035 (5)0.0003 (5)0.0019 (4)
C30.0319 (6)0.0360 (6)0.0274 (5)0.0077 (5)0.0006 (4)0.0017 (4)
C40.0397 (7)0.0416 (7)0.0254 (5)0.0087 (5)0.0001 (5)0.0002 (4)
C50.0470 (8)0.0483 (8)0.0310 (6)0.0048 (6)0.0070 (6)0.0090 (5)
C60.0453 (8)0.0409 (7)0.0406 (7)0.0016 (6)0.0025 (6)0.0081 (5)
N10.0543 (8)0.0456 (7)0.0416 (6)0.0075 (6)0.0083 (6)0.0018 (5)
N30.0434 (7)0.0448 (7)0.0314 (5)0.0057 (5)0.0014 (5)0.0007 (4)
N40.0567 (8)0.0561 (8)0.0257 (5)0.0138 (6)0.0010 (5)0.0022 (5)
O10.0798 (10)0.0775 (9)0.0373 (6)0.0166 (7)0.0052 (6)0.0129 (5)
O20.1073 (12)0.0841 (10)0.0231 (5)0.0049 (8)0.0027 (6)0.0036 (5)
Geometric parameters (Å, º) top
C1—C21.3875 (19)N4—O11.2524 (19)
C2—C31.3548 (18)N4—O21.1983 (16)
C3—C41.3738 (17)N1—H110.860
C4—C51.402 (2)N1—H120.860
C5—C61.320 (2)N3—H310.860
C6—C11.3679 (19)N3—H320.860
C1—N11.3204 (17)C2—H20.930
C3—N31.3592 (17)C5—H50.930
C4—N41.3628 (18)C6—H60.930
N1—C1—C6117.50 (14)O1—N4—C4121.77 (12)
N1—C1—C2122.49 (13)C1—N1—H11120.01
C6—C1—C2119.99 (13)C1—N1—H12120.03
C3—C2—C1124.13 (12)H11—N1—H12119.95
C2—C3—N3120.50 (11)C3—N3—H31120.02
C2—C3—C4114.72 (12)C3—N3—H32119.98
N3—C3—C4124.75 (12)H31—N3—H32119.99
N4—C4—C3119.56 (13)C1—C2—H2117.96
N4—C4—C5119.56 (12)C3—C2—H2117.91
C3—C4—C5120.87 (12)C4—C5—H5118.35
C6—C5—C4123.28 (12)C6—C5—H5118.36
C5—C6—C1116.96 (14)C1—C6—H6121.55
O2—N4—O1121.59 (14)C5—C6—H6121.49
O2—N4—C4116.63 (15)
C3—C4—N4—O14.5 (2)C5—C4—N4—O1176.32 (14)
C3—C4—N4—O2176.09 (14)C5—C4—N4—O23.1 (2)
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
N1—H12···O1i0.862.253.021 (2)149
N3—H31···O2ii0.862.162.964 (2)155
C2—H2···O2ii0.932.553.321 (2)140
Symmetry codes: (i) x1/2, y+3/2, z+1/2; (ii) x+1/2, y+3/2, z+1/2.
(II) 3,5-dinitroaniline top
Crystal data top
C6H5N3O4F(000) = 752
Mr = 183.13Dx = 1.601 Mg m3
Monoclinic, P21/nMo Kα radiation, λ = 0.71073 Å
a = 8.5377 (6) ÅCell parameters from 2507 reflections
b = 14.0119 (9) Åθ = 2.9–26.2°
c = 12.7071 (8) ŵ = 0.14 mm1
β = 90.899 (2)°T = 293 K
V = 1519.96 (17) Å3Prism, yellow
Z = 80.60 × 0.30 × 0.10 mm
Data collection top
Bruker SMART 1000 CCD
diffractometer
5510 independent reflections
Radiation source: fine-focus sealed tube2160 reflections with I > 2σ(I)
Graphite monochromatorRint = 0.051
φ scans and ω scans with κ offsetsθmax = 32.6°, θmin = 2.2°
Absorption correction: multi-scan
(SADABS; Bruker, 1997)
h = 129
Tmin = 0.921, Tmax = 0.986k = 2120
15462 measured reflectionsl = 1819
Refinement top
Refinement on F2Primary atom site location: structure-invariant direct methods
Least-squares matrix: fullSecondary atom site location: difference Fourier map
R[F2 > 2σ(F2)] = 0.046Hydrogen site location: inferred from neighbouring sites
wR(F2) = 0.133H-atom parameters constrained
S = 0.83 w = 1/[σ2(Fo2) + (0.0622P)2]
where P = (Fo2 + 2Fc2)/3
5510 reflections(Δ/σ)max < 0.001
235 parametersΔρmax = 0.27 e Å3
0 restraintsΔρmin = 0.24 e Å3
Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/Ueq
C110.09505 (19)0.13604 (11)0.47681 (11)0.0452 (4)
C120.1625 (2)0.04790 (10)0.45248 (11)0.0465 (4)
C130.26199 (19)0.00621 (10)0.52300 (10)0.0432 (4)
C140.30029 (19)0.04585 (10)0.61777 (11)0.0447 (4)
C150.23384 (18)0.13373 (10)0.63817 (10)0.0416 (4)
C160.1337 (2)0.17880 (10)0.57155 (11)0.0453 (4)
N110.00886 (19)0.17716 (11)0.41055 (11)0.0673 (4)
N130.3320 (2)0.08635 (10)0.49576 (11)0.0574 (4)
O110.2935 (2)0.12460 (9)0.41392 (10)0.0873 (5)
O120.42577 (18)0.12016 (9)0.55607 (11)0.0783 (4)
N150.27376 (19)0.18180 (10)0.73685 (11)0.0582 (4)
O140.35455 (19)0.13944 (9)0.79966 (10)0.0837 (5)
O130.2283 (2)0.26350 (10)0.74954 (12)0.0910 (5)
C210.3283 (2)0.66764 (11)0.63478 (12)0.0496 (4)
C220.4020 (2)0.66837 (11)0.53746 (12)0.0502 (4)
C230.37386 (19)0.59562 (11)0.46827 (10)0.0454 (4)
C240.27794 (19)0.51921 (10)0.48800 (11)0.0455 (4)
C250.20854 (19)0.52036 (10)0.58532 (11)0.0434 (4)
C260.2305 (2)0.59156 (11)0.65818 (12)0.0495 (4)
N210.3533 (2)0.73912 (11)0.70591 (12)0.0781 (5)
N230.45294 (18)0.59746 (12)0.36608 (11)0.0590 (4)
O210.42878 (18)0.53376 (10)0.30377 (9)0.0792 (4)
O220.5414 (2)0.66359 (11)0.34857 (11)0.0919 (5)
N250.10897 (18)0.43916 (10)0.61347 (12)0.0583 (4)
O230.0862 (2)0.37794 (10)0.54882 (12)0.0972 (6)
O240.05576 (19)0.43639 (9)0.70161 (11)0.0878 (5)
H120.14050.01770.38930.056*
H140.36630.01570.66490.054*
H160.09150.23790.58960.054*
H1A0.05210.23070.42700.081*
H1B0.03130.14960.35220.081*
H220.46940.71780.52000.060*
H240.26110.47040.43950.055*
H260.18040.58890.72260.059*
H2A0.30840.73740.76600.094*
H2B0.41410.78590.69070.094*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C110.0496 (10)0.0465 (8)0.0399 (7)0.0014 (7)0.0091 (7)0.0066 (6)
C120.0567 (11)0.0502 (8)0.0329 (7)0.0018 (8)0.0075 (7)0.0016 (6)
C130.0484 (10)0.0423 (8)0.0388 (7)0.0031 (7)0.0005 (7)0.0036 (6)
C140.0435 (10)0.0510 (8)0.0398 (7)0.0013 (7)0.0081 (6)0.0085 (6)
C150.0437 (10)0.0463 (8)0.0350 (7)0.0068 (7)0.0070 (6)0.0004 (6)
C160.0497 (10)0.0404 (7)0.0458 (8)0.0003 (7)0.0068 (7)0.0005 (6)
N110.0814 (12)0.0688 (9)0.0524 (8)0.0248 (8)0.0278 (8)0.0007 (7)
N130.0694 (11)0.0509 (8)0.0518 (8)0.0096 (7)0.0050 (7)0.0033 (7)
O110.1328 (15)0.0689 (8)0.0602 (8)0.0251 (9)0.0061 (8)0.0195 (7)
O120.0860 (11)0.0681 (8)0.0809 (9)0.0324 (7)0.0093 (8)0.0081 (6)
N150.0617 (11)0.0626 (9)0.0509 (8)0.0092 (8)0.0176 (7)0.0074 (7)
O140.1172 (13)0.0802 (9)0.0549 (7)0.0112 (8)0.0425 (8)0.0017 (6)
O130.0964 (13)0.0851 (10)0.0926 (10)0.0213 (9)0.0366 (9)0.0450 (8)
C210.0536 (12)0.0470 (8)0.0482 (8)0.0015 (8)0.0009 (7)0.0002 (7)
C220.0532 (11)0.0445 (8)0.0528 (9)0.0076 (7)0.0046 (8)0.0062 (7)
C230.0455 (10)0.0524 (9)0.0383 (7)0.0023 (7)0.0056 (7)0.0088 (6)
C240.0487 (11)0.0453 (8)0.0424 (8)0.0006 (7)0.0034 (7)0.0000 (6)
C250.0428 (10)0.0421 (8)0.0454 (8)0.0029 (7)0.0038 (7)0.0064 (6)
C260.0527 (11)0.0543 (9)0.0417 (8)0.0010 (8)0.0077 (7)0.0039 (7)
N210.0980 (15)0.0693 (10)0.0673 (10)0.0254 (9)0.0136 (9)0.0211 (8)
N230.0575 (11)0.0718 (9)0.0480 (8)0.0008 (8)0.0103 (7)0.0116 (7)
O210.0920 (12)0.0963 (10)0.0498 (7)0.0053 (8)0.0191 (7)0.0115 (7)
O220.1038 (13)0.0999 (11)0.0730 (9)0.0322 (10)0.0329 (8)0.0166 (8)
N250.0569 (11)0.0526 (8)0.0658 (9)0.0051 (7)0.0115 (8)0.0081 (7)
O230.1236 (15)0.0801 (9)0.0886 (10)0.0532 (9)0.0239 (9)0.0203 (8)
O240.1111 (14)0.0680 (8)0.0858 (9)0.0119 (8)0.0483 (9)0.0139 (7)
Geometric parameters (Å, º) top
C11—C121.395 (2)C21—C221.396 (2)
C12—C131.374 (2)C22—C231.365 (2)
C13—C141.3704 (19)C23—C241.373 (2)
C14—C151.379 (2)C24—C251.380 (2)
C15—C161.367 (2)C25—C261.372 (2)
C16—C111.389 (2)C26—C211.389 (2)
C11—N111.3607 (19)C21—N211.364 (2)
C13—N131.467 (2)C23—N231.4732 (19)
N13—O111.2196 (18)N23—O211.2088 (18)
N13—O121.2132 (18)N23—O221.2181 (19)
C15—N151.4683 (19)C25—N251.468 (2)
N15—O131.2188 (19)N25—O231.2013 (18)
N15—O141.2174 (18)N25—O241.2159 (18)
N11—H1A0.86N21—H2A0.86
N11—H1B0.86N21—H2B0.86
C12—H120.93C22—H220.93
C14—H140.93C24—H240.93
C16—H160.93C26—H260.93
N11—C11—C16121.30 (14)N21—C21—C26120.68 (15)
N11—C11—C12120.57 (13)N21—C21—C22120.89 (15)
C16—C11—C12118.10 (13)C26—C21—C22118.42 (14)
C13—C12—C11119.27 (13)C23—C22—C21119.19 (14)
C14—C13—C12123.99 (14)C22—C23—C24124.34 (13)
C14—C13—N13117.62 (13)C22—C23—N23118.43 (14)
C12—C13—N13118.39 (13)C24—C23—N23117.22 (14)
C13—C14—C15115.09 (13)C23—C24—C25114.85 (13)
C16—C15—C14123.76 (13)C26—C25—C24123.87 (14)
C16—C15—N15118.21 (13)C26—C25—N25118.21 (13)
C14—C15—N15118.03 (13)C24—C25—N25117.90 (13)
C15—C16—C11119.78 (13)C25—C26—C21119.32 (14)
O12—N13—O11123.82 (15)O21—N23—O22122.82 (15)
O12—N13—C13117.81 (14)O21—N23—C23119.24 (15)
O11—N13—C13118.37 (14)O22—N23—C23117.93 (15)
O14—N15—O13123.63 (14)O23—N25—O24123.26 (15)
O14—N15—C15118.54 (14)O23—N25—C25118.35 (14)
O13—N15—C15117.78 (13)O24—N25—C25118.38 (15)
C11—N11—H1A120.02C21—N21—H2A120.04
C11—N11—H1B119.96C21—N21—H2B119.97
H1A—N11—H1B120.02H2A—N21—H2B119.99
C11—C12—H12120.41C21—C22—H22120.40
C13—C12—H12120.33C23—C22—H22120.40
C13—C14—H14122.48C23—C24—H24122.59
C15—C14—H14122.43C25—C24—H24122.57
C11—C16—H16120.08C21—C26—H26120.35
C15—C16—H16120.13C25—C26—H26120.32
C12—C13—N13—O113.3 (2)C22—C23—N23—O21179.71 (16)
C12—C13—N13—O12176.31 (15)C22—C23—N23—O220.8 (2)
C14—C13—N13—O11176.69 (16)C24—C23—N23—O211.3 (2)
C14—C13—N13—O123.7 (2)C24—C23—N23—O22178.21 (16)
C14—C15—N15—O13172.40 (16)C24—C25—N25—O233.6 (2)
C14—C15—N15—O145.1 (2)C24—C25—N25—O24175.17 (15)
C16—C15—N15—O137.3 (2)C26—C25—N25—O23178.08 (16)
C16—C15—N15—O14175.24 (16)C26—C25—N25—O243.1 (2)
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
N11—H1A···O230.862.593.377 (2)152
N11—H1B···O21i0.862.593.433 (2)167
N21—H2B···O12ii0.862.573.344 (2)150
C22—H22···O12ii0.932.483.315 (2)149
C26—H26···O11iii0.932.493.292 (2)145
Symmetry codes: (i) x+1/2, y1/2, z+1/2; (ii) x+1, y+1, z; (iii) x+1/2, y+1/2, z+1/2.
 

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