organic compounds
Redetermination of 6,6′-dimethoxy-2,2′-[hexane-1,6-diylbis(nitrilodimethylidyne)]diphenol
aDepartment of Chemistry, Yazd Branch, Islamic Azad University, Yazd, Iran, and bDepartment of Chemistry, University of Toronto, Toronto, Ontario, Canada M5S 3H6
*Correspondence e-mail: tabatabaee45m@yahoo.com
The title compound, C22H28N2O4, contains two independent centrosymmetric molecules (A and B). In the previous [Xia et al. (2007). Acta Cryst. E63, o259] both A and B were modelled as neutral molecules with the H atoms of the the O—H groups included in calculated positions. In this redetermination, the transferrable H atoms were located in difference maps and freely refined, indicating that one molecule (A) crystallizes in the neutral (nonzwitterionic) form and the other in the zwitterionic form, namely 6,6′-dimethoxy-2,2′-[hexane-1,6-diylbis(nitrilodimethylidyne)]diphenol–6,6′-dimethoxy-2,2′-[hexane-1,6-diylbis(nitriliodimethylidyne)]diphenolate (1/1). This finding is supported by significant differences in the C—O(H) (A) and C—O− (B) bond lengths. In the crystal, the zwitterionic molecules (B) are involved in intermolecular N—H⋯O hydrogen bonds forming one-dimensional chains along [001]. Each independent molecule forms an intramolecular O—H⋯N (A) or N—H⋯O (B) hydrogen bond. In molecule B, one of the –CH2– groups is disordered over two sets of sites with refined occupancies of 0.659 (8) and 0.341 (8).
Related literature
For background to et al. (2008); Tabatabaee et al. (2006). For the previous of the title compound, see: Xia et al. (2007).
as ligands, see: RayExperimental
Crystal data
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Refinement
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Data collection: COLLECT (Nonius, 2002); cell DENZO–SMN (Otwinowski & Minor, 1997); data reduction: DENZO–SMN; program(s) used to solve structure: SIR92 (Altomare et al., 1994); program(s) used to refine structure: SHELXTL (Sheldrick, 2008); molecular graphics: PLATON (Spek, 2009); software used to prepare material for publication: SHELXTL.
Supporting information
10.1107/S1600536811020599/hb5887sup1.cif
contains datablocks global, I. DOI:Structure factors: contains datablock I. DOI: 10.1107/S1600536811020599/hb5887Isup2.hkl
All purchased chemicals were of reagent grade and used without further purification. A solution of hexamethylenediamine (1.162 g, 10 mmol) in EtOH (30 ml) was treated with 2-hydroxy-3-methoxybezaldehyde (3.043 g, 20 mmol) and the resulting mixture was acidified with 37% hydrochloric acid (10 drops). The reaction mixture was refluxed for 6 h. The progress of the reaction was monitored by TLC using hexane/ethylacetate (1/2) as
After completion of reaction, the solid residue was filtered and washed with cold ethanol (10 ml). The filtrate was dissolved in CH3OH and kept at 277 K. Orange blocks of (I) were obtained after a few days (yield 82%).Hydrogen atoms bonded to C atoms were placed in calculated positions with C—H distances ranging from 0.95 to 0.99 Å and included in the
in a riding-model approximation with Uiso(H) = 1.2Ueq(C) or Uiso(H) = 1.5Ueq(C) for methyl H atoms. H atoms bonded to O and N atoms were located in difference maps and refined independently with isotropic displacement parameters.Data collection: COLLECT (Nonius, 2002); cell
DENZO-SMN (Otwinowski & Minor, 1997); data reduction: DENZO-SMN (Otwinowski & Minor, 1997); program(s) used to solve structure: SIR92 (Altomare et al., 1994); program(s) used to refine structure: SHELXTL (Sheldrick, 2008); molecular graphics: PLATON (Spek, 2009); software used to prepare material for publication: SHELXTL (Sheldrick, 2008).C22H28N2O4 | F(000) = 824 |
Mr = 384.46 | Dx = 1.282 Mg m−3 |
Monoclinic, P21/c | Mo Kα radiation, λ = 0.71073 Å |
Hall symbol: -P 2ybc | Cell parameters from 8545 reflections |
a = 21.2660 (4) Å | θ = 2.6–27.5° |
b = 8.4296 (3) Å | µ = 0.09 mm−1 |
c = 11.1215 (9) Å | T = 150 K |
β = 92.3440 (17)° | Block, orange |
V = 1992.02 (18) Å3 | 0.32 × 0.24 × 0.18 mm |
Z = 4 |
Nonius KappaCCD diffractometer | 3462 independent reflections |
Radiation source: fine-focus sealed tube | 1976 reflections with I > 2σ(I) |
Graphite monochromator | Rint = 0.042 |
Detector resolution: 9 pixels mm-1 | θmax = 25.0°, θmin = 2.6° |
ϕ scans and ω scans with κ offsets | h = −20→25 |
Absorption correction: multi-scan (SORTAV; Blessing, 1995) | k = −9→9 |
Tmin = 0.871, Tmax = 0.990 | l = −13→13 |
9462 measured reflections |
Refinement on F2 | Primary atom site location: structure-invariant direct methods |
Least-squares matrix: full | Secondary atom site location: difference Fourier map |
R[F2 > 2σ(F2)] = 0.075 | Hydrogen site location: inferred from neighbouring sites |
wR(F2) = 0.247 | H atoms treated by a mixture of independent and constrained refinement |
S = 1.05 | w = 1/[σ2(Fo2) + (0.1195P)2 + 1.1215P] where P = (Fo2 + 2Fc2)/3 |
3462 reflections | (Δ/σ)max < 0.001 |
268 parameters | Δρmax = 0.35 e Å−3 |
6 restraints | Δρmin = −0.39 e Å−3 |
C22H28N2O4 | V = 1992.02 (18) Å3 |
Mr = 384.46 | Z = 4 |
Monoclinic, P21/c | Mo Kα radiation |
a = 21.2660 (4) Å | µ = 0.09 mm−1 |
b = 8.4296 (3) Å | T = 150 K |
c = 11.1215 (9) Å | 0.32 × 0.24 × 0.18 mm |
β = 92.3440 (17)° |
Nonius KappaCCD diffractometer | 3462 independent reflections |
Absorption correction: multi-scan (SORTAV; Blessing, 1995) | 1976 reflections with I > 2σ(I) |
Tmin = 0.871, Tmax = 0.990 | Rint = 0.042 |
9462 measured reflections |
R[F2 > 2σ(F2)] = 0.075 | 6 restraints |
wR(F2) = 0.247 | H atoms treated by a mixture of independent and constrained refinement |
S = 1.05 | Δρmax = 0.35 e Å−3 |
3462 reflections | Δρmin = −0.39 e Å−3 |
268 parameters |
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. |
Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) 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. |
x | y | z | Uiso*/Ueq | Occ. (<1) | |
O1A | 0.16093 (12) | 0.6165 (3) | 0.8801 (3) | 0.0706 (8) | |
O2A | 0.22393 (14) | 0.4763 (4) | 1.0569 (3) | 0.0894 (10) | |
N1A | 0.08999 (14) | 0.5965 (3) | 0.6874 (3) | 0.0660 (9) | |
C1A | 0.00468 (18) | 0.9101 (4) | 0.4966 (3) | 0.0648 (10) | |
H1A1 | −0.0371 | 0.8580 | 0.4966 | 0.078* | |
H1A2 | 0.0238 | 0.8842 | 0.4193 | 0.078* | |
C2A | 0.04555 (17) | 0.8419 (4) | 0.5979 (3) | 0.0655 (11) | |
H2AA | 0.0261 | 0.8645 | 0.6754 | 0.079* | |
H2AB | 0.0872 | 0.8943 | 0.5991 | 0.079* | |
C3A | 0.0543 (2) | 0.6646 (4) | 0.5851 (4) | 0.0741 (11) | |
H3AA | 0.0125 | 0.6131 | 0.5778 | 0.089* | |
H3AB | 0.0765 | 0.6426 | 0.5105 | 0.089* | |
C4A | 0.08887 (18) | 0.4456 (4) | 0.7018 (3) | 0.0650 (11) | |
H4AA | 0.0648 | 0.3830 | 0.6458 | 0.078* | |
C5A | 0.12288 (17) | 0.3671 (4) | 0.8002 (3) | 0.0624 (10) | |
C6A | 0.15779 (17) | 0.4555 (4) | 0.8857 (4) | 0.0653 (11) | |
C7A | 0.19146 (19) | 0.3778 (5) | 0.9810 (4) | 0.0726 (11) | |
C8A | 0.1903 (2) | 0.2153 (5) | 0.9877 (4) | 0.0789 (12) | |
H8AA | 0.2136 | 0.1628 | 1.0506 | 0.095* | |
C9A | 0.1552 (2) | 0.1265 (5) | 0.9028 (4) | 0.0817 (13) | |
H9AA | 0.1546 | 0.0141 | 0.9089 | 0.098* | |
C10A | 0.12156 (19) | 0.2003 (4) | 0.8105 (4) | 0.0738 (12) | |
H10A | 0.0974 | 0.1390 | 0.7538 | 0.089* | |
C11A | 0.2637 (2) | 0.4050 (6) | 1.1506 (4) | 0.1000 (15) | |
H11A | 0.2848 | 0.4887 | 1.1984 | 0.150* | |
H11B | 0.2954 | 0.3379 | 1.1142 | 0.150* | |
H11C | 0.2380 | 0.3403 | 1.2028 | 0.150* | |
O1B | 0.43692 (11) | 0.4470 (4) | 0.56095 (19) | 0.0886 (11) | |
O2B | 0.38305 (12) | 0.3658 (4) | 0.7646 (2) | 0.0954 (11) | |
N1B | 0.43025 (14) | 0.5949 (5) | 0.3500 (3) | 0.0882 (13) | |
C1B | 0.4797 (2) | 0.5579 (8) | 0.0265 (4) | 0.114 (2) | |
H1B1 | 0.4393 | 0.5657 | −0.0206 | 0.137* | 0.659 (8) |
H1B2 | 0.5001 | 0.6636 | 0.0282 | 0.137* | 0.659 (8) |
C2B | 0.4685 (3) | 0.5001 (9) | 0.1557 (4) | 0.099 (2) | 0.659 (8) |
H2B1 | 0.4326 | 0.4251 | 0.1547 | 0.119* | 0.659 (8) |
H2B2 | 0.5063 | 0.4440 | 0.1885 | 0.119* | 0.659 (8) |
C3B | 0.4545 (2) | 0.6411 (7) | 0.2340 (3) | 0.1071 (19) | |
H3B1 | 0.4935 | 0.7037 | 0.2480 | 0.128* | 0.659 (8) |
H3B2 | 0.4233 | 0.7099 | 0.1911 | 0.128* | 0.659 (8) |
H1C1 | 0.4538 | 0.6014 | −0.0417 | 0.137* | 0.341 (8) |
H1C2 | 0.5080 | 0.6450 | 0.0539 | 0.137* | 0.341 (8) |
C2C | 0.4343 (5) | 0.5349 (17) | 0.1277 (7) | 0.099 (2) | 0.341 (8) |
H2C1 | 0.4345 | 0.4224 | 0.1534 | 0.119* | 0.341 (8) |
H2C2 | 0.3910 | 0.5628 | 0.0989 | 0.119* | 0.341 (8) |
H3C1 | 0.5011 | 0.6418 | 0.2414 | 0.128* | 0.341 (8) |
H3C2 | 0.4406 | 0.7509 | 0.2158 | 0.128* | 0.341 (8) |
C4B | 0.37526 (17) | 0.6398 (6) | 0.3855 (4) | 0.0861 (14) | |
H4BA | 0.3505 | 0.7030 | 0.3311 | 0.103* | |
C5B | 0.34914 (16) | 0.6039 (6) | 0.4962 (4) | 0.0798 (13) | |
C6B | 0.38292 (16) | 0.5038 (6) | 0.5797 (3) | 0.0772 (12) | |
C7B | 0.35069 (17) | 0.4685 (6) | 0.6899 (4) | 0.0813 (13) | |
C8B | 0.2942 (2) | 0.5351 (6) | 0.7126 (5) | 0.0921 (15) | |
H8BA | 0.2747 | 0.5107 | 0.7857 | 0.110* | |
C9B | 0.2641 (2) | 0.6386 (6) | 0.6309 (6) | 0.1033 (18) | |
H9BA | 0.2254 | 0.6868 | 0.6500 | 0.124* | |
C10B | 0.29012 (18) | 0.6703 (6) | 0.5244 (5) | 0.0971 (15) | |
H10B | 0.2687 | 0.7376 | 0.4679 | 0.116* | |
C11B | 0.3548 (2) | 0.3244 (8) | 0.8761 (3) | 0.1133 (19) | |
H11D | 0.3812 | 0.2460 | 0.9193 | 0.170* | |
H11E | 0.3129 | 0.2795 | 0.8589 | 0.170* | |
H11F | 0.3511 | 0.4196 | 0.9259 | 0.170* | |
H1O | 0.131 (2) | 0.652 (5) | 0.808 (4) | 0.103 (16)* | |
H2O | 0.455 (2) | 0.543 (5) | 0.415 (4) | 0.110 (15)* |
U11 | U22 | U33 | U12 | U13 | U23 | |
O1A | 0.0662 (16) | 0.0594 (16) | 0.0884 (19) | −0.0094 (12) | 0.0296 (15) | −0.0089 (13) |
O2A | 0.088 (2) | 0.092 (2) | 0.090 (2) | −0.0109 (17) | 0.0239 (17) | −0.0061 (17) |
N1A | 0.0681 (19) | 0.0525 (19) | 0.080 (2) | 0.0005 (15) | 0.0308 (17) | −0.0061 (15) |
C1A | 0.071 (2) | 0.0507 (19) | 0.075 (2) | −0.0066 (17) | 0.040 (2) | −0.0103 (17) |
C2A | 0.070 (2) | 0.046 (2) | 0.083 (3) | −0.0049 (17) | 0.036 (2) | −0.0073 (18) |
C3A | 0.087 (3) | 0.055 (2) | 0.081 (3) | 0.003 (2) | 0.025 (2) | −0.011 (2) |
C4A | 0.069 (2) | 0.053 (2) | 0.075 (3) | −0.0054 (18) | 0.042 (2) | −0.0106 (18) |
C5A | 0.066 (2) | 0.054 (2) | 0.069 (2) | −0.0058 (18) | 0.0380 (19) | −0.0024 (19) |
C6A | 0.063 (2) | 0.054 (2) | 0.082 (3) | −0.0068 (18) | 0.042 (2) | −0.005 (2) |
C7A | 0.069 (2) | 0.074 (3) | 0.078 (3) | −0.006 (2) | 0.041 (2) | 0.000 (2) |
C8A | 0.080 (3) | 0.074 (3) | 0.086 (3) | 0.003 (2) | 0.044 (2) | 0.009 (2) |
C9A | 0.101 (3) | 0.061 (2) | 0.087 (3) | −0.002 (2) | 0.052 (3) | 0.011 (2) |
C10A | 0.086 (3) | 0.056 (2) | 0.083 (3) | −0.010 (2) | 0.047 (2) | −0.008 (2) |
C11A | 0.099 (3) | 0.130 (4) | 0.073 (3) | 0.002 (3) | 0.025 (3) | 0.015 (3) |
O1B | 0.0384 (13) | 0.189 (3) | 0.0393 (13) | 0.0166 (16) | 0.0074 (10) | 0.0170 (16) |
O2B | 0.0551 (15) | 0.188 (3) | 0.0445 (14) | −0.0037 (18) | 0.0181 (12) | 0.0093 (17) |
N1B | 0.0439 (18) | 0.179 (4) | 0.0413 (17) | 0.000 (2) | −0.0026 (13) | 0.026 (2) |
C1B | 0.060 (3) | 0.224 (6) | 0.060 (3) | 0.009 (3) | 0.021 (2) | 0.022 (3) |
C2B | 0.041 (4) | 0.201 (7) | 0.057 (3) | 0.025 (4) | 0.016 (3) | 0.030 (4) |
C3B | 0.067 (3) | 0.215 (6) | 0.038 (2) | −0.013 (3) | −0.0081 (18) | 0.040 (3) |
C1C | 0.060 (3) | 0.224 (6) | 0.060 (3) | 0.009 (3) | 0.021 (2) | 0.022 (3) |
C2C | 0.041 (4) | 0.201 (7) | 0.057 (3) | 0.025 (4) | 0.016 (3) | 0.030 (4) |
C3C | 0.067 (3) | 0.215 (6) | 0.038 (2) | −0.013 (3) | −0.0081 (18) | 0.040 (3) |
C4B | 0.041 (2) | 0.139 (4) | 0.077 (3) | −0.009 (2) | −0.0144 (19) | 0.023 (3) |
C5B | 0.0350 (18) | 0.129 (4) | 0.076 (3) | −0.004 (2) | 0.0069 (18) | 0.014 (2) |
C6B | 0.0396 (19) | 0.140 (4) | 0.053 (2) | 0.004 (2) | 0.0116 (16) | 0.001 (2) |
C7B | 0.045 (2) | 0.139 (4) | 0.060 (2) | −0.009 (2) | 0.0191 (18) | −0.005 (2) |
C8B | 0.065 (3) | 0.108 (3) | 0.107 (4) | −0.014 (3) | 0.046 (3) | −0.012 (3) |
C9B | 0.053 (2) | 0.097 (3) | 0.164 (5) | −0.011 (2) | 0.054 (3) | −0.005 (3) |
C10B | 0.047 (2) | 0.101 (3) | 0.143 (4) | −0.005 (2) | 0.018 (3) | 0.015 (3) |
C11B | 0.086 (3) | 0.205 (6) | 0.051 (2) | −0.024 (3) | 0.032 (2) | 0.007 (3) |
O1A—C6A | 1.360 (4) | O2B—C7B | 1.366 (5) |
O1A—H1O | 1.05 (5) | O2B—C11B | 1.443 (4) |
O2A—C7A | 1.353 (5) | N1B—C4B | 1.306 (5) |
O2A—C11A | 1.446 (5) | N1B—C3B | 1.462 (5) |
N1A—C4A | 1.283 (4) | N1B—H2O | 0.98 (5) |
N1A—C3A | 1.459 (5) | C1B—C1Bii | 1.443 (11) |
C1A—C2A | 1.508 (5) | C1B—C2B | 1.545 (6) |
C1A—C1Ai | 1.531 (7) | C1B—H1B1 | 0.9900 |
C1A—H1A1 | 0.9900 | C1B—H1B2 | 0.9900 |
C1A—H1A2 | 0.9900 | C2B—C3B | 1.510 (6) |
C2A—C3A | 1.513 (5) | C2B—H2B1 | 0.9900 |
C2A—H2AA | 0.9900 | C2B—H2B2 | 0.9900 |
C2A—H2AB | 0.9900 | C3B—H3B1 | 0.9900 |
C3A—H3AA | 0.9900 | C3B—H3B2 | 0.9900 |
C3A—H3AB | 0.9900 | C2C—H2C1 | 0.9900 |
C4A—C5A | 1.447 (5) | C2C—H2C2 | 0.9900 |
C4A—H4AA | 0.9500 | C4B—C5B | 1.404 (6) |
C5A—C6A | 1.398 (5) | C4B—H4BA | 0.9500 |
C5A—C10A | 1.411 (5) | C5B—C10B | 1.421 (6) |
C6A—C7A | 1.415 (6) | C5B—C6B | 1.427 (6) |
C7A—C8A | 1.372 (6) | C6B—C7B | 1.459 (5) |
C8A—C9A | 1.397 (6) | C7B—C8B | 1.359 (6) |
C8A—H8AA | 0.9500 | C8B—C9B | 1.396 (7) |
C9A—C10A | 1.376 (6) | C8B—H8BA | 0.9500 |
C9A—H9AA | 0.9500 | C9B—C10B | 1.354 (7) |
C10A—H10A | 0.9500 | C9B—H9BA | 0.9500 |
C11A—H11A | 0.9800 | C10B—H10B | 0.9500 |
C11A—H11B | 0.9800 | C11B—H11D | 0.9800 |
C11A—H11C | 0.9800 | C11B—H11E | 0.9800 |
O1B—C6B | 1.269 (4) | C11B—H11F | 0.9800 |
C6A—O1A—H1O | 107 (3) | C4B—N1B—C3B | 122.9 (4) |
C7A—O2A—C11A | 117.6 (4) | C4B—N1B—H2O | 111 (3) |
C4A—N1A—C3A | 118.4 (3) | C3B—N1B—H2O | 125 (3) |
C2A—C1A—C1Ai | 114.3 (4) | C1Bii—C1B—C2B | 106.5 (6) |
C2A—C1A—H1A1 | 108.7 | C1Bii—C1B—H1B1 | 110.4 |
C1Ai—C1A—H1A1 | 108.7 | C2B—C1B—H1B1 | 110.4 |
C2A—C1A—H1A2 | 108.7 | C1Bii—C1B—H1B2 | 110.4 |
C1Ai—C1A—H1A2 | 108.7 | C2B—C1B—H1B2 | 110.4 |
H1A1—C1A—H1A2 | 107.6 | H1B1—C1B—H1B2 | 108.6 |
C1A—C2A—C3A | 112.1 (3) | C3B—C2B—C1B | 109.3 (5) |
C1A—C2A—H2AA | 109.2 | C3B—C2B—H2B1 | 109.8 |
C3A—C2A—H2AA | 109.2 | C1B—C2B—H2B1 | 109.8 |
C1A—C2A—H2AB | 109.2 | C3B—C2B—H2B2 | 109.8 |
C3A—C2A—H2AB | 109.2 | C1B—C2B—H2B2 | 109.8 |
H2AA—C2A—H2AB | 107.9 | H2B1—C2B—H2B2 | 108.3 |
N1A—C3A—C2A | 112.2 (3) | N1B—C3B—C2B | 112.6 (5) |
N1A—C3A—H3AA | 109.2 | N1B—C3B—H3B1 | 109.1 |
C2A—C3A—H3AA | 109.2 | C2B—C3B—H3B1 | 109.1 |
N1A—C3A—H3AB | 109.2 | N1B—C3B—H3B2 | 109.1 |
C2A—C3A—H3AB | 109.2 | C2B—C3B—H3B2 | 109.1 |
H3AA—C3A—H3AB | 107.9 | H3B1—C3B—H3B2 | 107.8 |
N1A—C4A—C5A | 122.5 (4) | H2C1—C2C—H2C2 | 108.3 |
N1A—C4A—H4AA | 118.8 | N1B—C4B—C5B | 126.5 (4) |
C5A—C4A—H4AA | 118.8 | N1B—C4B—H4BA | 116.8 |
C6A—C5A—C10A | 119.2 (4) | C5B—C4B—H4BA | 116.8 |
C6A—C5A—C4A | 120.4 (3) | C4B—C5B—C10B | 119.6 (4) |
C10A—C5A—C4A | 120.4 (4) | C4B—C5B—C6B | 119.4 (3) |
O1A—C6A—C5A | 121.8 (4) | C10B—C5B—C6B | 121.0 (4) |
O1A—C6A—C7A | 118.2 (4) | O1B—C6B—C5B | 123.4 (3) |
C5A—C6A—C7A | 120.1 (3) | O1B—C6B—C7B | 121.4 (4) |
O2A—C7A—C8A | 126.0 (5) | C5B—C6B—C7B | 115.2 (3) |
O2A—C7A—C6A | 114.4 (4) | C8B—C7B—O2B | 125.2 (4) |
C8A—C7A—C6A | 119.6 (4) | C8B—C7B—C6B | 121.4 (4) |
C7A—C8A—C9A | 120.5 (4) | O2B—C7B—C6B | 113.4 (3) |
C7A—C8A—H8AA | 119.7 | C7B—C8B—C9B | 121.5 (4) |
C9A—C8A—H8AA | 119.7 | C7B—C8B—H8BA | 119.2 |
C10A—C9A—C8A | 120.6 (4) | C9B—C8B—H8BA | 119.2 |
C10A—C9A—H9AA | 119.7 | C10B—C9B—C8B | 120.0 (4) |
C8A—C9A—H9AA | 119.7 | C10B—C9B—H9BA | 120.0 |
C9A—C10A—C5A | 120.0 (4) | C8B—C9B—H9BA | 120.0 |
C9A—C10A—H10A | 120.0 | C9B—C10B—C5B | 120.8 (5) |
C5A—C10A—H10A | 120.0 | C9B—C10B—H10B | 119.6 |
O2A—C11A—H11A | 109.5 | C5B—C10B—H10B | 119.6 |
O2A—C11A—H11B | 109.5 | O2B—C11B—H11D | 109.5 |
H11A—C11A—H11B | 109.5 | O2B—C11B—H11E | 109.5 |
O2A—C11A—H11C | 109.5 | H11D—C11B—H11E | 109.5 |
H11A—C11A—H11C | 109.5 | O2B—C11B—H11F | 109.5 |
H11B—C11A—H11C | 109.5 | H11D—C11B—H11F | 109.5 |
C7B—O2B—C11B | 117.3 (3) | H11E—C11B—H11F | 109.5 |
Symmetry codes: (i) −x, −y+2, −z+1; (ii) −x+1, −y+1, −z. |
D—H···A | D—H | H···A | D···A | D—H···A |
O1A—H1O···N1A | 1.05 (5) | 1.64 (5) | 2.575 (4) | 146 (4) |
N1B—H2O···O1B | 0.98 (5) | 1.87 (5) | 2.655 (4) | 136 (4) |
N1B—H2O···O1Biii | 0.98 (5) | 2.31 (5) | 2.976 (4) | 125 (4) |
Symmetry code: (iii) −x+1, −y+1, −z+1. |
Experimental details
Crystal data | |
Chemical formula | C22H28N2O4 |
Mr | 384.46 |
Crystal system, space group | Monoclinic, P21/c |
Temperature (K) | 150 |
a, b, c (Å) | 21.2660 (4), 8.4296 (3), 11.1215 (9) |
β (°) | 92.3440 (17) |
V (Å3) | 1992.02 (18) |
Z | 4 |
Radiation type | Mo Kα |
µ (mm−1) | 0.09 |
Crystal size (mm) | 0.32 × 0.24 × 0.18 |
Data collection | |
Diffractometer | Nonius KappaCCD diffractometer |
Absorption correction | Multi-scan (SORTAV; Blessing, 1995) |
Tmin, Tmax | 0.871, 0.990 |
No. of measured, independent and observed [I > 2σ(I)] reflections | 9462, 3462, 1976 |
Rint | 0.042 |
(sin θ/λ)max (Å−1) | 0.594 |
Refinement | |
R[F2 > 2σ(F2)], wR(F2), S | 0.075, 0.247, 1.05 |
No. of reflections | 3462 |
No. of parameters | 268 |
No. of restraints | 6 |
H-atom treatment | H atoms treated by a mixture of independent and constrained refinement |
Δρmax, Δρmin (e Å−3) | 0.35, −0.39 |
Computer programs: COLLECT (Nonius, 2002), DENZO-SMN (Otwinowski & Minor, 1997), SIR92 (Altomare et al., 1994), SHELXTL (Sheldrick, 2008), PLATON (Spek, 2009).
D—H···A | D—H | H···A | D···A | D—H···A |
O1A—H1O···N1A | 1.05 (5) | 1.64 (5) | 2.575 (4) | 146 (4) |
N1B—H2O···O1B | 0.98 (5) | 1.87 (5) | 2.655 (4) | 136 (4) |
N1B—H2O···O1Bi | 0.98 (5) | 2.31 (5) | 2.976 (4) | 125 (4) |
Symmetry code: (i) −x+1, −y+1, −z+1. |
Acknowledgements
This research was supported by the Yazd Branch, Islamic Azad University, Yazd, Iran. AJL thanks NSERC Canada for funding.
References
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Schiff base ligands of salicylaldehyde and diamine can act as tetradentate ligands and provide suitable coordination modes for transition metal ions (Ray et al. 2008). As part of our studies on Schiff bases and their complexes (Tabatabaee et al., 2006) we have re-determined the crystal structure of the title compound, (I).
The title compound contains two centrosymmetric independent molecules [A and B] (see Figs. 1 and 2). In the original crystal structure determination (Xia et al., 2007) the H atoms of the the N—H groups were included in calculated positions. In the current determination we refined the positional and isotropic displacement parameters of these H atoms which shows that one independent molecule [B], crystallizes in the zwitterionic form. This finding is supported by the significant differnces in the distances of the C6A—O1A and C6B—O1B bonds. The zwitterionic molecules [B] are involved in intermolecular N—H···O hydrogen bonds forming one-dimensional chains along [001] (see Fig. 3). Each independent molecule forms an intramolecular O—H···N (A) or N—H···O (B) hydrogen bond. In molecule B one of the –CH2– groups is disordeered over two sets of sites (Fig. 2) with refined occupancies 0.659 (8) and 0.341 (8). In one of the independent molecules in the original determination (Xia et al., 2007) the anisotropic displacement ellipsoids of the C atoms in the hexyl chain are significantly larger than in the other.