Literature DB >> 21201984

1-Acetyl-3-ferrocenyl-5-(2-nitro-phen-yl)-2-pyrazoline.

Günseli Turgut Cin, Seda Demirel, Nevzat Karadayı, Orhan Büyükgüngör.   

Abstract

In the title compound, [Fe(C(5)H(5))(C(16)H(14)N(3)O(3))], the pyrazoline ring and the substituted cyclo-penta-dienyl ring are nearly coplanar, with a dihedral angle of 8.17 (2)°, while the nitro-substituted benzene ring is twisted out of the pyrazoline ring plane by 70.76 (1)°. The mol-ecules in the crystal structure are held together by three inter-molecular C-H⋯O hydrogen bonds. There is also an intra-molecular C-H⋯N hydrogen bond. The H atoms of the methyl group are disordered equally over two positions.

Entities:  

Year:  2008        PMID: 21201984      PMCID: PMC2960933          DOI: 10.1107/S1600536808004236

Source DB:  PubMed          Journal:  Acta Crystallogr Sect E Struct Rep Online        ISSN: 1600-5368


Related literature

For related literature, see: Amr et al. (2006 ▶); Biot et al. (2004 ▶); Cremer & Pople (1975 ▶); Fang et al. (2003 ▶); Fouda et al. (2007 ▶); Guirado et al. (2004 ▶); Jaouen et al. (2004 ▶); Karthikeyan et al. (2007 ▶); Küçükgüzel et al. (2000 ▶); Kudar et al. (2005 ▶); Özdemir et al. (2007 ▶); Shi et al. (2006a ▶,b ▶); Shi et al. (2006 ▶); Zora et al. (2006 ▶, 2008 ▶).

Experimental

Crystal data

[Fe(C5H5)(C16H14N3O3)] M = 417.24 Orthorhombic, a = 8.6691 (6) Å b = 13.4779 (7) Å c = 31.4930 (15) Å V = 3679.7 (4) Å3 Z = 8 Mo Kα radiation μ = 0.85 mm−1 T = 296 K 0.50 × 0.31 × 0.06 mm

Data collection

Stoe IPDSII diffractometer Absorption correction: integration (X-RED32; Stoe & Cie, 2002 ▶) T min = 0.636, T max = 0.862 17799 measured reflections 3613 independent reflections 2409 reflections with I > 2σ(I) R int = 0.061

Refinement

R[F 2 > 2σ(F 2)] = 0.037 wR(F 2) = 0.086 S = 0.94 3613 reflections 253 parameters H-atom parameters constrained Δρmax = 0.19 e Å−3 Δρmin = −0.29 e Å−3 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, 2008 ▶); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008 ▶); molecular graphics: ORTEP-3 (Farrugia, 1997 ▶); software used to prepare material for publication: WinGX (Farrugia, 1999 ▶) and PLATON (Spek, 2003 ▶). Crystal structure: contains datablocks global, I. DOI: 10.1107/S1600536808004236/hy2116sup1.cif Structure factors: contains datablocks I. DOI: 10.1107/S1600536808004236/hy2116Isup2.hkl Additional supplementary materials: crystallographic information; 3D view; checkCIF report
[Fe(C5H5)(C16H14N3O3)]F000 = 1728
Mr = 417.24Dx = 1.506 Mg m3
Orthorhombic, PbcaMo Kα radiation λ = 0.71073 Å
Hall symbol: -P 2ac 2abCell parameters from 16565 reflections
a = 8.6691 (6) Åθ = 1.6–27.9º
b = 13.4779 (7) ŵ = 0.85 mm1
c = 31.4930 (15) ÅT = 296 K
V = 3679.7 (4) Å3Prism, red
Z = 80.50 × 0.31 × 0.06 mm
Stoe IPDSII diffractometer3613 independent reflections
Radiation source: fine-focus sealed tube2409 reflections with I > 2σ(I)
Monochromator: graphiteRint = 0.061
T = 296(2) Kθmax = 26.0º
ω scansθmin = 2.6º
Absorption correction: integration(X-RED32; Stoe & Cie, 2002)h = −10→10
Tmin = 0.636, Tmax = 0.862k = −16→13
17799 measured reflectionsl = −38→38
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.037H-atom parameters constrained
wR(F2) = 0.086  w = 1/[σ2(Fo2) + (0.044P)2] where P = (Fo2 + 2Fc2)/3
S = 0.94(Δ/σ)max = 0.001
3613 reflectionsΔρmax = 0.19 e Å3
253 parametersΔρmin = −0.29 e Å3
Primary atom site location: structure-invariant direct methodsExtinction correction: none
Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.
xyzUiso*/UeqOcc. (<1)
C10.4226 (3)0.55162 (19)0.68996 (7)0.0419 (6)
C20.3958 (3)0.5738 (2)0.73262 (8)0.0481 (7)
C30.4637 (4)0.5207 (2)0.76547 (9)0.0617 (8)
H30.44340.53760.79350.074*
C40.5601 (4)0.4437 (2)0.75645 (9)0.0674 (9)
H40.60580.40780.77830.081*
C50.5895 (4)0.4195 (2)0.71485 (10)0.0636 (8)
H50.65610.36750.70850.076*
C60.5201 (3)0.4723 (2)0.68231 (9)0.0518 (7)
H60.53980.45390.65440.062*
C70.3550 (3)0.61147 (18)0.65354 (7)0.0413 (6)
H70.24830.62990.66010.050*
C80.4494 (3)0.70502 (18)0.64348 (7)0.0434 (6)
H8A0.38600.76420.64520.052*
H8B0.53630.71180.66270.052*
C90.5024 (3)0.68659 (19)0.59887 (8)0.0409 (6)
C100.2617 (3)0.48364 (19)0.60260 (8)0.0461 (6)
C110.2627 (4)0.4488 (2)0.55716 (9)0.0591 (8)
H11A0.33490.48770.54110.089*0.50
H11B0.16140.45620.54530.089*0.50
H11C0.29250.38020.55620.089*0.50
H11D0.19100.39500.55390.089*0.50
H11E0.36440.42650.54980.089*0.50
H11F0.23340.50250.53890.089*0.50
C120.6069 (3)0.7528 (2)0.57636 (8)0.0456 (6)
C130.6708 (3)0.84249 (19)0.59343 (9)0.0523 (7)
H130.64670.87050.61960.063*
C140.7769 (4)0.8809 (2)0.56346 (10)0.0593 (8)
H140.83460.93870.56650.071*
C150.7799 (4)0.8165 (3)0.52835 (9)0.0615 (8)
H150.83970.82470.50410.074*
C160.6772 (3)0.7373 (2)0.53603 (8)0.0558 (7)
H160.65860.68410.51790.067*
C171.0530 (4)0.7425 (2)0.60978 (10)0.0635 (8)
H171.11300.79840.61490.076*
C181.0552 (4)0.6843 (3)0.57284 (10)0.0665 (9)
H181.11660.69480.54910.080*
C190.9461 (4)0.6060 (2)0.57837 (10)0.0628 (8)
H190.92380.55600.55900.075*
C200.8795 (4)0.6185 (2)0.61815 (9)0.0560 (8)
H200.80390.57820.63000.067*
C210.9452 (4)0.7019 (2)0.63740 (9)0.0581 (8)
H210.92080.72620.66420.070*
N10.2950 (3)0.6566 (2)0.74518 (7)0.0580 (7)
N20.3604 (3)0.55775 (15)0.61266 (6)0.0421 (5)
N30.4499 (2)0.60674 (15)0.58194 (6)0.0446 (5)
O10.2640 (4)0.72062 (19)0.71980 (7)0.0857 (8)
O20.2464 (3)0.6580 (2)0.78155 (7)0.0818 (7)
O30.1803 (2)0.44698 (15)0.63000 (6)0.0583 (5)
Fe10.84006 (4)0.74057 (2)0.581679 (10)0.04091 (12)
U11U22U33U12U13U23
C10.0399 (16)0.0440 (15)0.0416 (13)−0.0072 (12)−0.0011 (11)0.0002 (10)
C20.0490 (17)0.0539 (16)0.0413 (13)−0.0120 (13)0.0013 (12)−0.0019 (12)
C30.074 (2)0.068 (2)0.0428 (14)−0.0177 (18)−0.0069 (15)0.0037 (14)
C40.082 (3)0.062 (2)0.0585 (19)−0.0102 (18)−0.0196 (17)0.0154 (15)
C50.066 (2)0.0507 (17)0.074 (2)0.0045 (15)−0.0186 (17)0.0042 (14)
C60.0549 (19)0.0486 (16)0.0519 (14)0.0029 (13)−0.0086 (13)−0.0040 (12)
C70.0393 (15)0.0431 (13)0.0415 (12)0.0030 (12)0.0012 (11)−0.0015 (10)
C80.0465 (17)0.0377 (14)0.0459 (13)−0.0015 (11)−0.0004 (12)−0.0004 (10)
C90.0366 (15)0.0453 (14)0.0410 (12)0.0036 (12)0.0000 (11)0.0027 (11)
C100.0453 (17)0.0407 (15)0.0523 (14)0.0038 (12)−0.0092 (14)−0.0006 (12)
C110.065 (2)0.0535 (17)0.0591 (17)−0.0014 (15)−0.0124 (15)−0.0099 (14)
C120.0397 (13)0.0507 (15)0.0463 (13)0.0012 (12)−0.0023 (10)0.0069 (12)
C130.0491 (17)0.0425 (14)0.0654 (17)0.0040 (13)0.0066 (14)0.0035 (12)
C140.0485 (18)0.0491 (17)0.080 (2)0.0027 (14)0.0036 (16)0.0182 (15)
C150.0476 (18)0.081 (2)0.0553 (16)−0.0004 (16)0.0005 (14)0.0281 (16)
C160.0494 (17)0.0726 (19)0.0453 (13)−0.0041 (15)−0.0064 (12)0.0084 (13)
C170.0484 (18)0.0617 (19)0.080 (2)−0.0082 (16)−0.0178 (15)0.0164 (17)
C180.051 (2)0.077 (2)0.072 (2)0.0194 (16)0.0159 (15)0.0255 (17)
C190.066 (2)0.0487 (17)0.0741 (19)0.0129 (14)0.0016 (18)−0.0015 (15)
C200.0488 (19)0.0531 (17)0.0661 (18)0.0028 (13)0.0005 (14)0.0162 (14)
C210.063 (2)0.0604 (19)0.0511 (15)0.0017 (15)−0.0096 (15)0.0077 (13)
N10.0575 (17)0.0695 (17)0.0470 (13)−0.0097 (13)0.0061 (12)−0.0141 (12)
N20.0446 (14)0.0448 (12)0.0370 (10)−0.0040 (10)−0.0023 (9)−0.0012 (8)
N30.0421 (13)0.0491 (12)0.0427 (10)−0.0009 (10)−0.0021 (11)0.0011 (10)
O10.118 (2)0.0697 (16)0.0695 (14)0.0264 (15)0.0219 (14)−0.0057 (12)
O20.0805 (18)0.114 (2)0.0514 (12)−0.0059 (15)0.0203 (12)−0.0183 (12)
O30.0565 (14)0.0540 (12)0.0644 (12)−0.0097 (10)−0.0030 (10)0.0044 (9)
Fe10.0390 (2)0.0419 (2)0.04183 (17)0.00169 (17)0.00009 (16)0.00513 (16)
C1—C61.384 (4)C12—Fe12.035 (3)
C1—C21.396 (3)C13—C141.416 (4)
C1—C71.519 (3)C13—Fe12.044 (3)
C2—C31.389 (4)C13—H130.9300
C2—N11.472 (4)C14—C151.407 (4)
C3—C41.362 (5)C14—Fe12.051 (3)
C3—H30.9300C14—H140.9300
C4—C51.374 (4)C15—C161.411 (4)
C4—H40.9300C15—Fe12.034 (3)
C5—C61.385 (4)C15—H150.9300
C5—H50.9300C16—Fe12.016 (3)
C6—H60.9300C16—H160.9300
C7—N21.478 (3)C17—C211.389 (4)
C7—C81.536 (3)C17—C181.403 (5)
C7—H70.9800C17—Fe12.047 (3)
C8—C91.499 (3)C17—H170.9300
C8—H8A0.9700C18—C191.428 (5)
C8—H8B0.9700C18—Fe12.033 (3)
C9—N31.284 (3)C18—H180.9300
C9—C121.456 (4)C19—C201.390 (4)
C10—O31.219 (3)C19—Fe12.036 (3)
C10—N21.353 (3)C19—H190.9300
C10—C111.506 (4)C20—C211.398 (4)
C11—H11A0.9600C20—Fe12.035 (3)
C11—H11B0.9600C20—H200.9300
C11—H11C0.9600C21—Fe12.045 (3)
C11—H11D0.9600C21—H210.9300
C11—H11E0.9600N1—O11.206 (3)
C11—H11F0.9600N1—O21.221 (3)
C12—C161.424 (4)N2—N31.405 (3)
C12—C131.434 (4)
C6—C1—C2115.7 (2)C12—C16—H16125.9
C6—C1—C7120.9 (2)Fe1—C16—H16125.2
C2—C1—C7123.3 (2)C21—C17—C18108.0 (3)
C3—C2—C1122.4 (3)C21—C17—Fe170.08 (17)
C3—C2—N1116.3 (3)C18—C17—Fe169.33 (18)
C1—C2—N1121.3 (2)C21—C17—H17126.0
C4—C3—C2119.8 (3)C18—C17—H17126.0
C4—C3—H3120.1Fe1—C17—H17126.1
C2—C3—H3120.1C17—C18—C19107.6 (3)
C3—C4—C5119.6 (3)C17—C18—Fe170.44 (18)
C3—C4—H4120.2C19—C18—Fe169.60 (18)
C5—C4—H4120.2C17—C18—H18126.2
C4—C5—C6120.2 (3)C19—C18—H18126.2
C4—C5—H5119.9Fe1—C18—H18125.4
C6—C5—H5119.9C20—C19—C18107.2 (3)
C1—C6—C5122.2 (3)C20—C19—Fe170.00 (17)
C1—C6—H6118.9C18—C19—Fe169.32 (17)
C5—C6—H6118.9C20—C19—H19126.4
N2—C7—C1112.7 (2)C18—C19—H19126.4
N2—C7—C8101.87 (19)Fe1—C19—H19125.8
C1—C7—C8112.7 (2)C19—C20—C21108.6 (3)
N2—C7—H7109.8C19—C20—Fe170.08 (16)
C1—C7—H7109.8C21—C20—Fe170.33 (16)
C8—C7—H7109.8C19—C20—H20125.7
C9—C8—C7102.7 (2)C21—C20—H20125.7
C9—C8—H8A111.2Fe1—C20—H20125.5
C7—C8—H8A111.2C17—C21—C20108.6 (3)
C9—C8—H8B111.2C17—C21—Fe170.24 (16)
C7—C8—H8B111.2C20—C21—Fe169.58 (16)
H8A—C8—H8B109.1C17—C21—H21125.7
N3—C9—C12122.1 (2)C20—C21—H21125.7
N3—C9—C8114.8 (2)Fe1—C21—H21126.1
C12—C9—C8123.1 (2)O1—N1—O2122.3 (3)
O3—C10—N2120.0 (2)O1—N1—C2119.8 (2)
O3—C10—C11123.3 (3)O2—N1—C2117.9 (3)
N2—C10—C11116.7 (3)C10—N2—N3122.3 (2)
C10—C11—H11A109.5C10—N2—C7123.1 (2)
C10—C11—H11B109.5N3—N2—C7112.77 (19)
H11A—C11—H11B109.5C9—N3—N2107.67 (19)
C10—C11—H11C109.5C16—Fe1—C18122.47 (13)
H11A—C11—H11C109.5C16—Fe1—C1540.78 (12)
H11B—C11—H11C109.5C18—Fe1—C15108.04 (13)
C10—C11—H11D109.5C16—Fe1—C1241.17 (11)
H11A—C11—H11D141.1C18—Fe1—C12158.50 (14)
H11B—C11—H11D56.3C15—Fe1—C1268.71 (11)
H11C—C11—H11D56.3C16—Fe1—C20120.16 (13)
C10—C11—H11E109.5C18—Fe1—C2067.76 (12)
H11A—C11—H11E56.3C15—Fe1—C20156.25 (14)
H11B—C11—H11E141.1C12—Fe1—C20106.19 (11)
H11C—C11—H11E56.3C16—Fe1—C19105.08 (13)
H11D—C11—H11E109.5C18—Fe1—C1941.08 (13)
C10—C11—H11F109.5C15—Fe1—C19121.42 (14)
H11A—C11—H11F56.3C12—Fe1—C19121.10 (13)
H11B—C11—H11F56.3C20—Fe1—C1939.92 (12)
H11C—C11—H11F141.1C16—Fe1—C1368.97 (12)
H11D—C11—H11F109.5C18—Fe1—C13159.13 (14)
H11E—C11—H11F109.5C15—Fe1—C1368.14 (12)
C16—C12—C13107.0 (2)C12—Fe1—C1341.18 (11)
C16—C12—C9127.6 (3)C20—Fe1—C13124.17 (12)
C13—C12—C9125.1 (2)C19—Fe1—C13158.78 (13)
C16—C12—Fe168.67 (15)C16—Fe1—C21156.74 (12)
C13—C12—Fe169.73 (16)C18—Fe1—C2167.26 (13)
C9—C12—Fe1121.89 (18)C15—Fe1—C21161.94 (14)
C14—C13—C12108.0 (3)C12—Fe1—C21122.28 (12)
C14—C13—Fe170.04 (17)C20—Fe1—C2140.08 (12)
C12—C13—Fe169.09 (15)C19—Fe1—C2167.40 (13)
C14—C13—H13126.0C13—Fe1—C21109.62 (12)
C12—C13—H13126.0C16—Fe1—C17160.09 (13)
Fe1—C13—H13126.5C18—Fe1—C1740.24 (13)
C15—C14—C13108.1 (3)C15—Fe1—C17125.55 (13)
C15—C14—Fe169.23 (17)C12—Fe1—C17158.46 (12)
C13—C14—Fe169.50 (16)C20—Fe1—C1767.35 (12)
C15—C14—H14126.0C19—Fe1—C1768.06 (14)
C13—C14—H14126.0C13—Fe1—C17124.09 (13)
Fe1—C14—H14126.9C21—Fe1—C1739.68 (12)
C14—C15—C16108.7 (3)C16—Fe1—C1468.53 (13)
C14—C15—Fe170.50 (16)C18—Fe1—C14123.41 (13)
C16—C15—Fe168.89 (15)C15—Fe1—C1440.27 (13)
C14—C15—H15125.6C12—Fe1—C1468.73 (12)
C16—C15—H15125.6C20—Fe1—C14161.46 (12)
Fe1—C15—H15126.5C19—Fe1—C14158.08 (13)
C15—C16—C12108.2 (3)C13—Fe1—C1440.47 (11)
C15—C16—Fe170.33 (16)C21—Fe1—C14126.43 (13)
C12—C16—Fe170.16 (15)C17—Fe1—C14110.47 (13)
C15—C16—H16125.9
C6—C1—C2—C30.7 (4)C16—C15—Fe1—C14−120.1 (3)
C7—C1—C2—C3−177.3 (3)C13—C12—Fe1—C16−118.6 (2)
C6—C1—C2—N1179.6 (3)C9—C12—Fe1—C16121.9 (3)
C7—C1—C2—N11.7 (4)C16—C12—Fe1—C18−47.3 (4)
C1—C2—C3—C4−0.1 (5)C13—C12—Fe1—C18−166.0 (3)
N1—C2—C3—C4−179.1 (3)C9—C12—Fe1—C1874.6 (4)
C2—C3—C4—C50.1 (5)C16—C12—Fe1—C1537.92 (18)
C3—C4—C5—C6−0.7 (5)C13—C12—Fe1—C15−80.71 (18)
C2—C1—C6—C5−1.3 (4)C9—C12—Fe1—C15159.9 (3)
C7—C1—C6—C5176.7 (3)C16—C12—Fe1—C20−117.56 (18)
C4—C5—C6—C11.3 (5)C13—C12—Fe1—C20123.81 (17)
C6—C1—C7—N219.3 (3)C9—C12—Fe1—C204.4 (2)
C2—C1—C7—N2−162.9 (2)C16—C12—Fe1—C19−76.8 (2)
C6—C1—C7—C8−95.4 (3)C13—C12—Fe1—C19164.57 (17)
C2—C1—C7—C882.5 (3)C9—C12—Fe1—C1945.1 (3)
N2—C7—C8—C9−3.4 (3)C16—C12—Fe1—C13118.6 (2)
C1—C7—C8—C9117.6 (2)C9—C12—Fe1—C13−119.4 (3)
C7—C8—C9—N33.9 (3)C16—C12—Fe1—C21−158.19 (18)
C7—C8—C9—C12−175.3 (2)C13—C12—Fe1—C2183.18 (18)
N3—C9—C12—C16−6.5 (4)C9—C12—Fe1—C21−36.3 (3)
C8—C9—C12—C16172.7 (3)C16—C12—Fe1—C17173.3 (3)
N3—C9—C12—C13−179.4 (3)C13—C12—Fe1—C1754.7 (4)
C8—C9—C12—C13−0.3 (4)C9—C12—Fe1—C17−64.7 (4)
N3—C9—C12—Fe1−93.0 (3)C16—C12—Fe1—C1481.28 (19)
C8—C9—C12—Fe186.2 (3)C13—C12—Fe1—C14−37.35 (16)
C16—C12—C13—C140.7 (3)C9—C12—Fe1—C14−156.8 (2)
C9—C12—C13—C14174.8 (3)C19—C20—Fe1—C1677.0 (2)
Fe1—C12—C13—C1459.4 (2)C21—C20—Fe1—C16−163.69 (18)
C16—C12—C13—Fe1−58.77 (19)C19—C20—Fe1—C18−38.7 (2)
C9—C12—C13—Fe1115.4 (3)C21—C20—Fe1—C1880.6 (2)
C12—C13—C14—C15−0.2 (3)C19—C20—Fe1—C1545.6 (4)
Fe1—C13—C14—C1558.6 (2)C21—C20—Fe1—C15165.0 (3)
C12—C13—C14—Fe1−58.83 (19)C19—C20—Fe1—C12119.41 (19)
C13—C14—C15—C16−0.4 (3)C21—C20—Fe1—C12−121.23 (19)
Fe1—C14—C15—C1658.4 (2)C21—C20—Fe1—C19119.4 (3)
C13—C14—C15—Fe1−58.8 (2)C19—C20—Fe1—C13160.80 (19)
C14—C15—C16—C120.8 (3)C21—C20—Fe1—C13−79.8 (2)
Fe1—C15—C16—C1260.21 (19)C19—C20—Fe1—C21−119.4 (3)
C14—C15—C16—Fe1−59.4 (2)C19—C20—Fe1—C17−82.4 (2)
C13—C12—C16—C15−0.9 (3)C21—C20—Fe1—C1736.95 (19)
C9—C12—C16—C15−174.8 (3)C19—C20—Fe1—C14−169.4 (4)
Fe1—C12—C16—C15−60.3 (2)C21—C20—Fe1—C14−50.0 (5)
C13—C12—C16—Fe159.44 (19)C20—C19—Fe1—C16−119.27 (19)
C9—C12—C16—Fe1−114.5 (3)C18—C19—Fe1—C16122.48 (19)
C21—C17—C18—C19−0.3 (4)C20—C19—Fe1—C18118.2 (3)
Fe1—C17—C18—C19−59.9 (2)C20—C19—Fe1—C15−160.29 (19)
C21—C17—C18—Fe159.7 (2)C18—C19—Fe1—C1581.5 (2)
C17—C18—C19—C200.4 (3)C20—C19—Fe1—C12−77.7 (2)
Fe1—C18—C19—C20−60.0 (2)C18—C19—Fe1—C12164.07 (18)
C17—C18—C19—Fe160.4 (2)C18—C19—Fe1—C20−118.2 (3)
C18—C19—C20—C21−0.4 (3)C20—C19—Fe1—C13−48.7 (4)
Fe1—C19—C20—C21−60.0 (2)C18—C19—Fe1—C13−167.0 (3)
C18—C19—C20—Fe159.6 (2)C20—C19—Fe1—C2137.44 (19)
C18—C17—C21—C200.0 (4)C18—C19—Fe1—C21−80.8 (2)
Fe1—C17—C21—C2059.2 (2)C20—C19—Fe1—C1780.5 (2)
C18—C17—C21—Fe1−59.2 (2)C18—C19—Fe1—C17−37.78 (19)
C19—C20—C21—C170.2 (3)C20—C19—Fe1—C14171.0 (3)
Fe1—C20—C21—C17−59.6 (2)C18—C19—Fe1—C1452.7 (4)
C19—C20—C21—Fe159.9 (2)C14—C13—Fe1—C16−81.2 (2)
C3—C2—N1—O1161.2 (3)C12—C13—Fe1—C1638.25 (15)
C1—C2—N1—O1−17.8 (4)C14—C13—Fe1—C1846.1 (4)
C3—C2—N1—O2−18.3 (4)C12—C13—Fe1—C18165.5 (3)
C1—C2—N1—O2162.7 (3)C14—C13—Fe1—C15−37.22 (19)
O3—C10—N2—N3−176.0 (2)C12—C13—Fe1—C1582.21 (17)
C11—C10—N2—N35.6 (4)C14—C13—Fe1—C12−119.4 (2)
O3—C10—N2—C7−12.4 (4)C14—C13—Fe1—C20165.90 (19)
C11—C10—N2—C7169.3 (2)C12—C13—Fe1—C20−74.68 (19)
C1—C7—N2—C1076.4 (3)C14—C13—Fe1—C19−158.4 (3)
C8—C7—N2—C10−162.6 (2)C12—C13—Fe1—C19−39.0 (4)
C1—C7—N2—N3−118.6 (2)C14—C13—Fe1—C21123.6 (2)
C8—C7—N2—N32.4 (3)C12—C13—Fe1—C21−116.97 (16)
C12—C9—N3—N2176.7 (2)C14—C13—Fe1—C1781.8 (2)
C8—C9—N3—N2−2.5 (3)C12—C13—Fe1—C17−158.78 (15)
C10—N2—N3—C9165.0 (2)C12—C13—Fe1—C14119.4 (2)
C7—N2—N3—C9−0.1 (3)C17—C21—Fe1—C16157.6 (3)
C15—C16—Fe1—C18−79.9 (2)C20—C21—Fe1—C1637.9 (4)
C12—C16—Fe1—C18161.37 (17)C17—C21—Fe1—C1837.7 (2)
C12—C16—Fe1—C15−118.8 (3)C20—C21—Fe1—C18−82.0 (2)
C15—C16—Fe1—C12118.8 (3)C17—C21—Fe1—C15−40.6 (5)
C15—C16—Fe1—C20−161.29 (19)C20—C21—Fe1—C15−160.3 (4)
C12—C16—Fe1—C2080.0 (2)C17—C21—Fe1—C12−164.09 (19)
C15—C16—Fe1—C19−120.9 (2)C20—C21—Fe1—C1276.2 (2)
C12—C16—Fe1—C19120.30 (18)C17—C21—Fe1—C20119.7 (3)
C15—C16—Fe1—C1380.5 (2)C17—C21—Fe1—C1982.4 (2)
C12—C16—Fe1—C13−38.25 (16)C20—C21—Fe1—C19−37.29 (18)
C15—C16—Fe1—C21171.5 (3)C17—C21—Fe1—C13−120.1 (2)
C12—C16—Fe1—C2152.7 (4)C20—C21—Fe1—C13120.17 (19)
C15—C16—Fe1—C17−54.1 (5)C20—C21—Fe1—C17−119.7 (3)
C12—C16—Fe1—C17−172.8 (3)C17—C21—Fe1—C14−77.9 (2)
C15—C16—Fe1—C1436.94 (19)C20—C21—Fe1—C14162.37 (18)
C12—C16—Fe1—C14−81.82 (18)C21—C17—Fe1—C16−153.8 (3)
C17—C18—Fe1—C16166.73 (17)C18—C17—Fe1—C16−34.7 (5)
C19—C18—Fe1—C16−74.9 (2)C21—C17—Fe1—C18−119.2 (3)
C17—C18—Fe1—C15124.18 (19)C21—C17—Fe1—C15165.6 (2)
C19—C18—Fe1—C15−117.4 (2)C18—C17—Fe1—C15−75.2 (2)
C17—C18—Fe1—C12−158.3 (3)C21—C17—Fe1—C1239.1 (4)
C19—C18—Fe1—C12−39.9 (4)C18—C17—Fe1—C12158.3 (3)
C17—C18—Fe1—C20−80.74 (19)C21—C17—Fe1—C20−37.31 (18)
C19—C18—Fe1—C2037.64 (18)C18—C17—Fe1—C2081.9 (2)
C17—C18—Fe1—C19−118.4 (3)C21—C17—Fe1—C19−80.6 (2)
C17—C18—Fe1—C1348.4 (4)C18—C17—Fe1—C1938.56 (18)
C19—C18—Fe1—C13166.8 (3)C21—C17—Fe1—C1379.6 (2)
C17—C18—Fe1—C21−37.20 (18)C18—C17—Fe1—C13−161.24 (18)
C19—C18—Fe1—C2181.2 (2)C18—C17—Fe1—C21119.2 (3)
C19—C18—Fe1—C17118.4 (3)C21—C17—Fe1—C14122.9 (2)
C17—C18—Fe1—C1482.5 (2)C18—C17—Fe1—C14−118.0 (2)
C19—C18—Fe1—C14−159.15 (19)C15—C14—Fe1—C16−37.39 (18)
C14—C15—Fe1—C16120.1 (3)C13—C14—Fe1—C1682.35 (19)
C14—C15—Fe1—C18−120.8 (2)C15—C14—Fe1—C1878.2 (2)
C16—C15—Fe1—C18119.1 (2)C13—C14—Fe1—C18−162.08 (19)
C14—C15—Fe1—C1281.82 (19)C13—C14—Fe1—C15119.7 (3)
C16—C15—Fe1—C12−38.28 (18)C15—C14—Fe1—C12−81.75 (19)
C14—C15—Fe1—C20163.6 (3)C13—C14—Fe1—C1237.98 (17)
C16—C15—Fe1—C2043.5 (4)C15—C14—Fe1—C20−159.1 (4)
C14—C15—Fe1—C19−163.88 (18)C13—C14—Fe1—C20−39.3 (5)
C16—C15—Fe1—C1976.0 (2)C15—C14—Fe1—C1939.4 (4)
C14—C15—Fe1—C1337.39 (18)C13—C14—Fe1—C19159.1 (3)
C16—C15—Fe1—C13−82.7 (2)C15—C14—Fe1—C13−119.7 (3)
C14—C15—Fe1—C21−49.0 (5)C15—C14—Fe1—C21163.10 (19)
C16—C15—Fe1—C21−169.1 (4)C13—C14—Fe1—C21−77.2 (2)
C14—C15—Fe1—C17−79.7 (2)C15—C14—Fe1—C17121.3 (2)
C16—C15—Fe1—C17160.19 (19)C13—C14—Fe1—C17−118.96 (19)
D—H···AD—HH···AD···AD—H···A
C11—H11A···N30.962.292.788 (4)112
C8—H8A···O3i0.972.573.476 (3)154
C8—H8B···O2ii0.972.633.551 (4)158
C21—H21···O2ii0.932.463.136 (4)130
Table 1

Selected bond lengths (Å)

C12—Fe12.035 (3)
C13—Fe12.044 (3)
C14—Fe12.051 (3)
C15—Fe12.034 (3)
C16—Fe12.016 (3)
C17—Fe12.047 (3)
C18—Fe12.033 (3)
C19—Fe12.036 (3)
C20—Fe12.035 (3)
C21—Fe12.045 (3)
Table 2

Hydrogen-bond geometry (Å, °)

D—H⋯AD—HH⋯ADAD—H⋯A
C11—H11A⋯N30.962.292.788 (4)112
C8—H8A⋯O3i0.972.573.476 (3)154
C8—H8B⋯O2ii0.972.633.551 (4)158
C21—H21⋯O2ii0.932.463.136 (4)130

Symmetry codes: (i) ; (ii) .

  8 in total

1.  Propynylferrocene and (phenylethynyl)ferrocene.

Authors:  Metin Zora; Canet Açikgöz; Tülay Asli Tumay; Mustafa Odabaşoğlu; Orhan Büyükgüngör
Journal:  Acta Crystallogr C       Date:  2006-07-14       Impact factor: 1.172

2.  A short history of SHELX.

Authors:  George M Sheldrick
Journal:  Acta Crystallogr A       Date:  2007-12-21       Impact factor: 2.290

3.  Synthesis and antiandrogenic activity of some new 3-substituted androstano[17,16-c]-5'-aryl-pyrazoline and their derivatives.

Authors:  Abd El-Galil E Amr; Nehad A Abdel-Latif; Mohamed M Abdalla
Journal:  Bioorg Med Chem       Date:  2005-09-22       Impact factor: 3.641

4.  Synthesis and studies on antidepressant and anticonvulsant activities of some 3-(2-furyl)-pyrazoline derivatives.

Authors:  Zuhal Ozdemir; H Burak Kandilci; Bülent Gümüşel; Unsal Caliş; A Altan Bilgin
Journal:  Eur J Med Chem       Date:  2006-10-25       Impact factor: 6.514

5.  1-Acetyl-3-ferrocenyl-5-methyl-1H-pyrazole and 1-acetyl-5-ferrocenyl-3-(2-pyridyl)-1H-pyrazole.

Authors:  Yao Cheng Shi; Bei Bei Zhu; Chun Xia Sui
Journal:  Acta Crystallogr C       Date:  2006-11-10       Impact factor: 1.172

6.  Synthesis, characterization and pharmacological properties of some 4-arylhydrazono-2-pyrazoline-5-one derivatives obtained from heterocyclic amines.

Authors:  S Güniz Küçükgüzel; S Rollas; H Erdeniz; M Kiraz; A Cevdet Ekinci; A Vidin
Journal:  Eur J Med Chem       Date:  2000 Jul-Aug       Impact factor: 6.514

7.  Synthesis and antimicrobial studies on novel chloro-fluorine containing hydroxy pyrazolines.

Authors:  Mari Sithambaram Karthikeyan; Bantwal Shivarama Holla; Nalilu Suchetha Kumari
Journal:  Eur J Med Chem       Date:  2006-09-26       Impact factor: 6.514

Review 8.  The first organometallic selective estrogen receptor modulators (SERMs) and their relevance to breast cancer.

Authors:  Gérard Jaouen; Siden Top; Anne Vessières; G Leclercq; Michael J McGlinchey
Journal:  Curr Med Chem       Date:  2004-09       Impact factor: 4.530

  8 in total
  1 in total

1.  1-Acetyl-5-ferrocenyl-3-phenyl-2-pyrazoline.

Authors:  Nevzat Karadayı; Günseli Turgut Cin; Seda Demirel; Abban Cakıcı; Orhan Büyükgüngör
Journal:  Acta Crystallogr Sect E Struct Rep Online       Date:  2009-01-08
  1 in total

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