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In the title compound, C12H8ClN3O2, the dihedral angle between the least-squares planes of the pyridine and benzene rings is 20.8 (1)°. In the crystal structure, mol­ecules pack nearly parallel along the a axis, with some π stacking interactions.

Supporting information

cif

Crystallographic Information File (CIF) https://doi.org/10.1107/S1600536805005611/rz6053sup1.cif
Contains datablocks global, I

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S1600536805005611/rz6053Isup2.hkl
Contains datablock I

CCDC reference: 269860

Key indicators

  • Single-crystal X-ray study
  • T = 296 K
  • Mean [sigma](C-C) = 0.003 Å
  • R factor = 0.040
  • wR factor = 0.079
  • Data-to-parameter ratio = 14.0

checkCIF/PLATON results

No syntax errors found



Alert level C PLAT063_ALERT_3_C Crystal Probably too Large for Beam Size ....... 0.72 mm
Alert level G REFLT03_ALERT_4_G Please check that the estimate of the number of Friedel pairs is correct. If it is not, please give the correct count in the _publ_section_exptl_refinement section of the submitted CIF. From the CIF: _diffrn_reflns_theta_max 26.00 From the CIF: _reflns_number_total 2280 Count of symmetry unique reflns 1337 Completeness (_total/calc) 170.53% TEST3: Check Friedels for noncentro structure Estimate of Friedel pairs measured 943 Fraction of Friedel pairs measured 0.705 Are heavy atom types Z>Si present yes
0 ALERT level A = In general: serious problem 0 ALERT level B = Potentially serious problem 1 ALERT level C = Check and explain 1 ALERT level G = General alerts; check 0 ALERT type 1 CIF construction/syntax error, inconsistent or missing data 0 ALERT type 2 Indicator that the structure model may be wrong or deficient 1 ALERT type 3 Indicator that the structure quality may be low 1 ALERT type 4 Improvement, methodology, query or suggestion

Computing details top

Data collection: X-AREA (Stoe & Cie, 2002); cell refinement: X-AREA; data reduction: X-RED32 (Stoe & Cie, 2002); program(s) used to solve structure: SHELXS97 (Sheldrick, 1997); program(s) used to refine structure: SHELXL97 (Sheldrick, 1997); molecular graphics: ORTEP-3 (Farrugia, 1997); software used to prepare material for publication: WinGX (Farrugia, 1999).

(2-Chloropyridin-3-yl)(4-nitrobenzylidene)amine top
Crystal data top
C12H8ClN3O2F(000) = 536
Mr = 261.66Dx = 1.494 Mg m3
Orthorhombic, P212121Mo Kα radiation, λ = 0.71073 Å
Hall symbol: P 2ac 2abCell parameters from 1966 reflections
a = 7.1404 (6) Åθ = 2.3–29.0°
b = 11.9642 (11) ŵ = 0.33 mm1
c = 13.6188 (16) ÅT = 296 K
V = 1163.4 (2) Å3Stick, yellow
Z = 40.72 × 0.32 × 0.11 mm
Data collection top
Stoe IPDS-II
diffractometer
2280 independent reflections
Radiation source: sealed X-ray tube, 12 x 0.4 mm long-fine focus1887 reflections with I > 2σ(I)
Plane graphite monochromatorRint = 0.048
Detector resolution: 6.67 pixels mm-1θmax = 26.0°, θmin = 2.3°
ω scansh = 99
Absorption correction: integration
X-RED (Stoe & Cie, 2002)
k = 1616
Tmin = 0.800, Tmax = 0.965l = 1818
11387 measured reflections
Refinement top
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.040H-atom parameters not refined
wR(F2) = 0.079 w = 1/[σ2(Fo2) + (0.0274P)2 + 0.1715P]
where P = (Fo2 + 2Fc2)/3
S = 1.06(Δ/σ)max < 0.001
2280 reflectionsΔρmax = 0.10 e Å3
163 parametersΔρmin = 0.18 e Å3
0 restraintsAbsolute structure: Flack (1983), 943 Friedel pairs
Primary atom site location: structure-invariant direct methodsAbsolute structure parameter: 0.23 (8)
Special details top

Geometry. Bond distances, angles etc. have been calculated using the rounded fractional coordinates. All su's are estimated from the variances of the (full) variance-covariance matrix. The cell e.s.d.'s are taken into account in the estimation of distances, angles and torsion angles

Refinement. Refinement on F2 for ALL reflections except those flagged by the user for potential systematic errors. Weighted R-factors wR and all goodnesses of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The observed criterion of F2 > σ(F2) is used only for calculating -R-factor-obs etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R-factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/Ueq
Cl10.58661 (12)0.45386 (6)0.60392 (5)0.0690 (2)
O10.6915 (4)0.8353 (2)0.07377 (14)0.0995 (10)
O20.6614 (3)1.00800 (19)0.11340 (15)0.0844 (9)
N10.6282 (3)0.51615 (18)0.78487 (14)0.0584 (8)
N20.6532 (3)0.69074 (16)0.56495 (13)0.0431 (6)
N30.6678 (3)0.9083 (2)0.13390 (15)0.0619 (9)
C10.6246 (3)0.5538 (2)0.69398 (16)0.0465 (7)
C20.6460 (3)0.66462 (19)0.66643 (15)0.0411 (7)
C30.6729 (4)0.7407 (2)0.74115 (18)0.0550 (9)
C40.6782 (4)0.7035 (3)0.83719 (18)0.0629 (10)
C50.6570 (4)0.5917 (2)0.85480 (18)0.0615 (10)
C60.5993 (3)0.78602 (18)0.53504 (15)0.0433 (7)
C70.6145 (3)0.81630 (18)0.43090 (15)0.0413 (7)
C80.6552 (3)0.7358 (2)0.36038 (17)0.0475 (8)
C90.6718 (4)0.7654 (2)0.26308 (18)0.0525 (8)
C100.6475 (3)0.8760 (2)0.23766 (16)0.0466 (8)
C110.6070 (4)0.9571 (2)0.30514 (16)0.0506 (7)
C120.5909 (3)0.92652 (17)0.40257 (16)0.0469 (7)
H30.687300.816300.727100.0660*
H40.695800.753500.888700.0750*
H50.663100.567100.919500.0740*
H60.549800.837100.579500.0520*
H80.671200.661600.379000.0570*
H90.698800.712000.215500.0630*
H110.590701.031100.285900.0610*
H120.563800.980500.449600.0560*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
Cl10.1000 (5)0.0500 (3)0.0569 (3)0.0085 (4)0.0079 (4)0.0025 (3)
O10.151 (2)0.1074 (18)0.0401 (11)0.0288 (16)0.0018 (13)0.0024 (12)
O20.1146 (18)0.0857 (15)0.0529 (11)0.0151 (13)0.0014 (12)0.0266 (11)
N10.0652 (15)0.0670 (14)0.0431 (11)0.0003 (11)0.0005 (11)0.0153 (10)
N20.0452 (11)0.0460 (10)0.0381 (9)0.0015 (9)0.0011 (8)0.0045 (8)
N30.0625 (15)0.0830 (17)0.0402 (12)0.0017 (13)0.0045 (10)0.0057 (12)
C10.0460 (14)0.0515 (13)0.0419 (11)0.0014 (12)0.0003 (10)0.0060 (11)
C20.0369 (12)0.0518 (13)0.0345 (11)0.0025 (10)0.0032 (9)0.0055 (9)
C30.0651 (17)0.0550 (14)0.0449 (13)0.0034 (13)0.0008 (13)0.0010 (12)
C40.0700 (19)0.0778 (19)0.0408 (14)0.0028 (16)0.0012 (13)0.0078 (13)
C50.0636 (18)0.084 (2)0.0368 (12)0.0029 (15)0.0036 (12)0.0157 (14)
C60.0434 (12)0.0475 (12)0.0390 (11)0.0013 (11)0.0015 (12)0.0033 (9)
C70.0363 (11)0.0485 (12)0.0392 (11)0.0007 (10)0.0023 (10)0.0058 (10)
C80.0548 (16)0.0423 (12)0.0454 (12)0.0027 (11)0.0048 (11)0.0038 (10)
C90.0564 (16)0.0575 (15)0.0435 (13)0.0061 (12)0.0021 (12)0.0063 (12)
C100.0456 (14)0.0575 (14)0.0366 (11)0.0030 (11)0.0019 (10)0.0076 (10)
C110.0547 (14)0.0488 (12)0.0483 (12)0.0035 (13)0.0029 (12)0.0124 (12)
C120.0535 (14)0.0444 (11)0.0429 (11)0.0019 (11)0.0040 (12)0.0007 (9)
Geometric parameters (Å, º) top
Cl1—C11.734 (2)C7—C121.384 (3)
O1—N31.209 (3)C8—C91.377 (3)
O2—N31.226 (3)C9—C101.379 (3)
N1—C11.318 (3)C10—C111.367 (3)
N1—C51.329 (3)C11—C121.381 (3)
N2—C21.418 (3)C3—H30.9300
N2—C61.270 (3)C4—H40.9300
N3—C101.472 (3)C5—H50.9300
C1—C21.386 (3)C6—H60.9300
C2—C31.379 (3)C8—H80.9300
C3—C41.382 (4)C9—H90.9300
C4—C51.367 (4)C11—H110.9300
C6—C71.468 (3)C12—H120.9300
C7—C81.391 (3)
Cl1···N22.922 (2)C9···C3viii3.579 (4)
Cl1···C4i3.632 (3)C9···C3ix3.564 (4)
Cl1···O1ii3.437 (2)C11···C1ix3.447 (4)
Cl1···H9iii2.9300C12···C2ix3.488 (3)
Cl1···H5iv3.0900C12···C1ix3.588 (3)
Cl1···H4i3.1300C3···H62.6400
O1···Cl1v3.437 (2)C6···H32.7100
O2···C6vi3.183 (3)C8···H6viii3.0600
O1···H4vii2.7000H3···C62.7100
O1···H92.4300H3···H62.2500
O2···H112.4200H3···O2xi2.8300
O2···H3vi2.8300H3···H11xi2.5500
O2···H6vi2.8100H4···O1xii2.7000
N2···C7viii3.295 (3)H4···Cl1x3.1300
N2···Cl12.922 (2)H5···Cl1iii3.0900
N1···H8iii2.8700H6···C32.6400
N2···H82.5600H6···H32.2500
C1···C11viii3.447 (4)H6···H122.4700
C1···C12viii3.588 (3)H6···O2xi2.8100
C2···C12viii3.488 (3)H6···C8ix3.0600
C3···C9ix3.579 (4)H8···N22.5600
C3···C9viii3.564 (4)H8···N1iv2.8700
C4···Cl1x3.632 (3)H9···O12.4300
C6···C8ix3.486 (3)H9···Cl1iv2.9300
C6···O2xi3.183 (3)H11···O22.4200
C7···N2ix3.295 (3)H11···H3vi2.5500
C8···C6viii3.486 (3)H12···H62.4700
C1—N1—C5116.3 (2)N3—C10—C11118.7 (2)
C2—N2—C6119.96 (19)C9—C10—C11122.6 (2)
O1—N3—O2123.6 (2)C10—C11—C12118.4 (2)
O1—N3—C10118.3 (2)C7—C12—C11120.7 (2)
O2—N3—C10118.1 (2)C2—C3—H3120.00
Cl1—C1—N1115.58 (18)C4—C3—H3120.00
Cl1—C1—C2119.03 (17)C3—C4—H4121.00
N1—C1—C2125.4 (2)C5—C4—H4121.00
N2—C2—C1118.59 (19)N1—C5—H5118.00
N2—C2—C3124.7 (2)C4—C5—H5118.00
C1—C2—C3116.6 (2)N2—C6—H6120.00
C2—C3—C4119.3 (2)C7—C6—H6120.00
C3—C4—C5118.6 (3)C7—C8—H8120.00
N1—C5—C4123.8 (2)C9—C8—H8120.00
N2—C6—C7120.59 (19)C8—C9—H9121.00
C6—C7—C8120.8 (2)C10—C9—H9121.00
C6—C7—C12119.70 (19)C10—C11—H11121.00
C8—C7—C12119.5 (2)C12—C11—H11121.00
C7—C8—C9120.3 (2)C7—C12—H12120.00
C8—C9—C10118.5 (2)C11—C12—H12120.00
N3—C10—C9118.7 (2)
C5—N1—C1—Cl1179.94 (19)C1—C2—C3—C40.4 (4)
C5—N1—C1—C20.8 (4)C2—C3—C4—C50.2 (4)
C1—N1—C5—C41.5 (4)C3—C4—C5—N11.2 (4)
C6—N2—C2—C1152.2 (2)N2—C6—C7—C811.9 (3)
C6—N2—C2—C333.0 (4)N2—C6—C7—C12167.2 (2)
C2—N2—C6—C7177.0 (2)C6—C7—C8—C9179.1 (2)
O2—N3—C10—C9174.0 (2)C8—C7—C12—C110.1 (3)
O1—N3—C10—C11175.3 (3)C12—C7—C8—C90.1 (3)
O1—N3—C10—C95.3 (3)C6—C7—C12—C11179.2 (2)
O2—N3—C10—C115.4 (3)C7—C8—C9—C100.1 (4)
N1—C1—C2—N2175.2 (2)C8—C9—C10—N3179.1 (2)
N1—C1—C2—C30.1 (3)C8—C9—C10—C110.2 (4)
Cl1—C1—C2—C3179.01 (19)N3—C10—C11—C12179.1 (2)
Cl1—C1—C2—N25.7 (3)C9—C10—C11—C120.3 (4)
N2—C2—C3—C4174.6 (2)C10—C11—C12—C70.3 (4)
Symmetry codes: (i) x+1, y1/2, z+3/2; (ii) x+1, y1/2, z+1/2; (iii) x+3/2, y+1, z+1/2; (iv) x+3/2, y+1, z1/2; (v) x+1, y+1/2, z+1/2; (vi) x+3/2, y+2, z1/2; (vii) x, y, z1; (viii) x+1/2, y+3/2, z+1; (ix) x1/2, y+3/2, z+1; (x) x+1, y+1/2, z+3/2; (xi) x+3/2, y+2, z+1/2; (xii) x, y, z+1.
 

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