metal-organic compounds
Diaqua[(E)-2-(2-oxidobenzylideneamino)-2-phenylacetato]zinc(II) dimethyl sulfoxide monosolvate
aSchool of Chemistry and Environment Engineering, Harbin University of Science and Technology, Harbin 150040, People's Republic of China
*Correspondence e-mail: liubo200400@vip.sina.com
In the title compound, [Zn(C15H11NO3)(H2O)2]·C2H6OS, the Zn(II) ion is coordinated by two O atoms and one N atom of the deprotonated chelate ligand and two water molecules in a distorted trigonal bipyramidal coordination environment. A linear supramolecular structure built from O—H⋯O hydrogen bonds runs parallel to [100].
Related literature
For the synthesis of (E)-2-(2-hydroxybenzylideneamino)-2-phenylacetic acid, see Audriceth et al. (1954). For a related zinc complex, see: You et al. (2008).
Experimental
Crystal data
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Refinement
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Data collection: RAPID-AUTO (Rigaku, 1998); cell RAPID-AUTO; data reduction: CrystalStructure (Rigaku/MSC, 2002); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: SHELXTL (Sheldrick, 2008); software used to prepare material for publication: SHELXL97.
Supporting information
10.1107/S1600536809020741/ng2591sup1.cif
contains datablocks global, I. DOI:Structure factors: contains datablock I. DOI: 10.1107/S1600536809020741/ng2591Isup2.hkl
(E)-2-(2-hydroxybenzylideneamino)-2-phenylacetic acid was prepared of 2-amino-2-phenylacetic acid and 2-hydroxybenzaldehyde in aqueous solution (Audriceth et al., 1954). (E)-2-(2-hydroxybenzylideneamino)-2-phenylacetic acid (0.255 g, 1 mmol) and Zn(OAc)2 (0.190 g, 1 mmol) dissolved in hot aqueous solution (20 ml) then refluxed for 1 huor. After cooling to room temperature the solution was filtered, the residue was recrystaled in DMSO and methanol (10/1, V/V) solution, several days latter, a suitable for X-ray diffraction yellow crystal was obtained.
H atoms bound to C atoms were placed in calculated positions and treated as riding on their parent atoms, with C—H = 0.93 Å (aromatic C), C—H = 0.98 Å (methylene C), C—H = 0.96 Å (methyl C) and with Uiso(H) = 1.2Ueq(C). Water H atoms were initially located in a difference Fourier map, but they were treated as riding on their parent atoms with O—H = 0.85 Å and with with Uiso(H) = 1.5Ueq(O).
Data collection: RAPID-AUTO (Rigaku, 1998); cell
RAPID-AUTO (Rigaku, 1998); data reduction: CrystalStructure (Rigaku/MSC, 2002); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: SHELXTL (Sheldrick, 2008); software used to prepare material for publication: SHELXL97 (Sheldrick, 2008).[Zn(C15H11NO3)(H2O)2]·C2H6OS | Z = 2 |
Mr = 432.78 | F(000) = 448 |
Triclinic, P1 | Dx = 1.492 Mg m−3 |
Hall symbol: -P 1 | Mo Kα radiation, λ = 0.71073 Å |
a = 7.331 (4) Å | Cell parameters from 8052 reflections |
b = 9.318 (5) Å | θ = 3.0–27.5° |
c = 14.578 (9) Å | µ = 1.42 mm−1 |
α = 81.91 (2)° | T = 291 K |
β = 81.37 (2)° | Block, colorless |
γ = 80.18 (2)° | 0.19 × 0.15 × 0.13 mm |
V = 963.4 (9) Å3 |
Rigaku R-AXIS RAPID diffractometer | 4331 independent reflections |
Radiation source: fine-focus sealed tube | 3751 reflections with I > 2σ(I) |
Graphite monochromator | Rint = 0.024 |
ω scan | θmax = 27.5°, θmin = 3.0° |
Absorption correction: multi-scan (ABSCOR; Higashi, 1995) | h = −9→8 |
Tmin = 0.777, Tmax = 0.837 | k = −12→12 |
9415 measured reflections | l = −18→18 |
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)] = 0.033 | Hydrogen site location: inferred from neighbouring sites |
wR(F2) = 0.098 | H-atom parameters constrained |
S = 1.15 | w = 1/[σ2(Fo2) + (0.0512P)2 + 0.2263P] where P = (Fo2 + 2Fc2)/3 |
4331 reflections | (Δ/σ)max = 0.001 |
237 parameters | Δρmax = 0.48 e Å−3 |
0 restraints | Δρmin = −0.28 e Å−3 |
[Zn(C15H11NO3)(H2O)2]·C2H6OS | γ = 80.18 (2)° |
Mr = 432.78 | V = 963.4 (9) Å3 |
Triclinic, P1 | Z = 2 |
a = 7.331 (4) Å | Mo Kα radiation |
b = 9.318 (5) Å | µ = 1.42 mm−1 |
c = 14.578 (9) Å | T = 291 K |
α = 81.91 (2)° | 0.19 × 0.15 × 0.13 mm |
β = 81.37 (2)° |
Rigaku R-AXIS RAPID diffractometer | 4331 independent reflections |
Absorption correction: multi-scan (ABSCOR; Higashi, 1995) | 3751 reflections with I > 2σ(I) |
Tmin = 0.777, Tmax = 0.837 | Rint = 0.024 |
9415 measured reflections |
R[F2 > 2σ(F2)] = 0.033 | 0 restraints |
wR(F2) = 0.098 | H-atom parameters constrained |
S = 1.15 | Δρmax = 0.48 e Å−3 |
4331 reflections | Δρmin = −0.28 e Å−3 |
237 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 | ||
C1 | 0.9379 (3) | 0.7675 (2) | 0.26445 (14) | 0.0316 (4) | |
C2 | 0.7789 (4) | 0.8689 (3) | 0.24967 (18) | 0.0451 (5) | |
H2 | 0.6891 | 0.8462 | 0.2176 | 0.054* | |
C3 | 0.7553 (5) | 1.0041 (3) | 0.2831 (2) | 0.0589 (7) | |
H3 | 0.6491 | 1.0719 | 0.2736 | 0.071* | |
C4 | 0.8891 (5) | 1.0382 (3) | 0.3305 (2) | 0.0671 (9) | |
H4 | 0.8718 | 1.1284 | 0.3535 | 0.080* | |
C5 | 1.0461 (5) | 0.9402 (3) | 0.3436 (2) | 0.0612 (8) | |
H5 | 1.1362 | 0.9643 | 0.3749 | 0.073* | |
C6 | 1.0726 (4) | 0.8041 (3) | 0.31051 (17) | 0.0457 (6) | |
H6 | 1.1806 | 0.7379 | 0.3193 | 0.055* | |
C7 | 0.9648 (3) | 0.6175 (2) | 0.23069 (14) | 0.0286 (4) | |
H7 | 1.0767 | 0.5582 | 0.2531 | 0.034* | |
C8 | 0.9913 (3) | 0.6342 (2) | 0.12286 (14) | 0.0287 (4) | |
C9 | 0.7835 (3) | 0.4801 (2) | 0.34886 (15) | 0.0339 (4) | |
H9 | 0.8721 | 0.4896 | 0.3862 | 0.041* | |
C10 | 0.6363 (3) | 0.3983 (2) | 0.39195 (15) | 0.0356 (5) | |
C11 | 0.6505 (4) | 0.3309 (3) | 0.48364 (17) | 0.0521 (6) | |
H11 | 0.7511 | 0.3425 | 0.5124 | 0.063* | |
C12 | 0.5219 (5) | 0.2490 (4) | 0.5320 (2) | 0.0635 (8) | |
H12 | 0.5353 | 0.2044 | 0.5923 | 0.076* | |
C13 | 0.3711 (5) | 0.2339 (4) | 0.4894 (2) | 0.0655 (8) | |
H13 | 0.2828 | 0.1781 | 0.5217 | 0.079* | |
C14 | 0.3488 (4) | 0.2995 (3) | 0.4004 (2) | 0.0559 (7) | |
H14 | 0.2444 | 0.2886 | 0.3743 | 0.067* | |
C15 | 0.4808 (3) | 0.3834 (3) | 0.34729 (15) | 0.0392 (5) | |
C16 | 0.1636 (4) | 0.2801 (3) | 0.1543 (2) | 0.0527 (6) | |
H16A | 0.2255 | 0.3352 | 0.1877 | 0.079* | |
H16B | 0.0506 | 0.2573 | 0.1919 | 0.079* | |
H16C | 0.1341 | 0.3372 | 0.0969 | 0.079* | |
C17 | 0.1686 (4) | 0.0495 (3) | 0.0617 (2) | 0.0495 (6) | |
H17A | 0.1290 | 0.1261 | 0.0143 | 0.074* | |
H17B | 0.0612 | 0.0201 | 0.1014 | 0.074* | |
H17C | 0.2381 | −0.0330 | 0.0327 | 0.074* | |
N1 | 0.8040 (2) | 0.54080 (19) | 0.26458 (12) | 0.0301 (4) | |
O1 | 0.8636 (2) | 0.60996 (18) | 0.08213 (10) | 0.0366 (3) | |
O2 | 1.1404 (2) | 0.67381 (19) | 0.08264 (11) | 0.0400 (4) | |
O3 | 0.4514 (2) | 0.4435 (2) | 0.26298 (12) | 0.0505 (4) | |
O4 | 0.6986 (3) | 0.3510 (2) | 0.09429 (13) | 0.0581 (5) | |
H23 | 0.6190 | 0.2942 | 0.0951 | 0.087* | |
H24 | 0.7571 | 0.3634 | 0.0395 | 0.087* | |
O5 | 0.4726 (2) | 0.7027 (2) | 0.11810 (12) | 0.0471 (4) | |
H21 | 0.3578 | 0.6969 | 0.1193 | 0.071* | |
H22 | 0.5174 | 0.7309 | 0.0626 | 0.071* | |
O6 | 0.4740 (2) | 0.16387 (19) | 0.06180 (12) | 0.0447 (4) | |
S1 | 0.31254 (8) | 0.11488 (6) | 0.12970 (4) | 0.03825 (14) | |
Zn1 | 0.63958 (3) | 0.52441 (3) | 0.167315 (16) | 0.03534 (10) |
U11 | U22 | U33 | U12 | U13 | U23 | |
C1 | 0.0338 (10) | 0.0317 (10) | 0.0280 (9) | −0.0083 (8) | 0.0023 (8) | −0.0019 (8) |
C2 | 0.0419 (13) | 0.0445 (13) | 0.0463 (13) | −0.0040 (11) | −0.0015 (10) | −0.0040 (11) |
C3 | 0.0648 (18) | 0.0380 (13) | 0.0642 (18) | 0.0045 (13) | 0.0099 (14) | −0.0074 (13) |
C4 | 0.104 (3) | 0.0411 (15) | 0.0562 (17) | −0.0236 (17) | 0.0161 (17) | −0.0183 (13) |
C5 | 0.080 (2) | 0.0554 (17) | 0.0589 (17) | −0.0311 (16) | −0.0067 (15) | −0.0191 (14) |
C6 | 0.0504 (14) | 0.0492 (14) | 0.0420 (13) | −0.0155 (12) | −0.0069 (11) | −0.0102 (11) |
C7 | 0.0240 (9) | 0.0327 (10) | 0.0301 (10) | −0.0082 (8) | −0.0031 (7) | −0.0031 (8) |
C8 | 0.0257 (9) | 0.0303 (10) | 0.0296 (9) | −0.0069 (8) | 0.0021 (7) | −0.0040 (8) |
C9 | 0.0360 (11) | 0.0367 (11) | 0.0287 (10) | −0.0072 (9) | −0.0026 (8) | −0.0023 (8) |
C10 | 0.0412 (12) | 0.0338 (11) | 0.0285 (10) | −0.0080 (9) | 0.0059 (9) | −0.0009 (8) |
C11 | 0.0544 (15) | 0.0632 (16) | 0.0338 (12) | −0.0107 (13) | 0.0012 (11) | 0.0063 (11) |
C12 | 0.070 (2) | 0.071 (2) | 0.0398 (14) | −0.0145 (16) | 0.0081 (13) | 0.0177 (13) |
C13 | 0.073 (2) | 0.0637 (18) | 0.0534 (16) | −0.0298 (16) | 0.0221 (15) | 0.0079 (14) |
C14 | 0.0502 (15) | 0.0702 (18) | 0.0470 (14) | −0.0287 (14) | 0.0107 (12) | −0.0001 (13) |
C15 | 0.0409 (12) | 0.0429 (12) | 0.0321 (11) | −0.0141 (10) | 0.0088 (9) | −0.0035 (9) |
C16 | 0.0515 (15) | 0.0485 (14) | 0.0578 (16) | −0.0065 (12) | 0.0028 (12) | −0.0166 (12) |
C17 | 0.0400 (13) | 0.0417 (13) | 0.0701 (17) | −0.0152 (11) | −0.0069 (12) | −0.0076 (12) |
N1 | 0.0288 (8) | 0.0341 (9) | 0.0271 (8) | −0.0091 (7) | −0.0001 (7) | −0.0014 (7) |
O1 | 0.0290 (7) | 0.0560 (10) | 0.0274 (7) | −0.0179 (7) | −0.0024 (6) | −0.0014 (7) |
O2 | 0.0281 (7) | 0.0587 (10) | 0.0355 (8) | −0.0200 (7) | 0.0042 (6) | −0.0064 (7) |
O3 | 0.0414 (9) | 0.0763 (12) | 0.0367 (9) | −0.0303 (9) | −0.0009 (7) | 0.0050 (8) |
O4 | 0.0618 (12) | 0.0754 (13) | 0.0467 (10) | −0.0448 (10) | 0.0172 (9) | −0.0239 (9) |
O5 | 0.0268 (8) | 0.0655 (11) | 0.0470 (9) | −0.0145 (8) | −0.0050 (7) | 0.0094 (8) |
O6 | 0.0350 (8) | 0.0511 (10) | 0.0497 (10) | −0.0179 (7) | 0.0021 (7) | −0.0060 (8) |
S1 | 0.0338 (3) | 0.0366 (3) | 0.0427 (3) | −0.0104 (2) | −0.0032 (2) | 0.0048 (2) |
Zn1 | 0.02999 (15) | 0.05017 (18) | 0.02839 (14) | −0.01813 (11) | −0.00285 (9) | 0.00044 (10) |
C1—C6 | 1.386 (3) | C12—H12 | 0.9300 |
C1—C2 | 1.393 (3) | C13—C14 | 1.376 (4) |
C1—C7 | 1.519 (3) | C13—H13 | 0.9300 |
C2—C3 | 1.388 (4) | C14—C15 | 1.418 (3) |
C2—H2 | 0.9300 | C14—H14 | 0.9300 |
C3—C4 | 1.383 (5) | C15—O3 | 1.310 (3) |
C3—H3 | 0.9300 | C16—S1 | 1.777 (3) |
C4—C5 | 1.361 (5) | C16—H16A | 0.9600 |
C4—H4 | 0.9300 | C16—H16B | 0.9600 |
C5—C6 | 1.393 (4) | C16—H16C | 0.9600 |
C5—H5 | 0.9300 | C17—S1 | 1.780 (3) |
C6—H6 | 0.9300 | C17—H17A | 0.9600 |
C7—N1 | 1.469 (3) | C17—H17B | 0.9600 |
C7—C8 | 1.544 (3) | C17—H17C | 0.9600 |
C7—H7 | 0.9800 | N1—Zn1 | 2.0305 (19) |
C8—O1 | 1.248 (2) | O1—Zn1 | 2.1047 (17) |
C8—O2 | 1.248 (2) | O3—Zn1 | 1.9742 (18) |
C9—N1 | 1.276 (3) | O4—Zn1 | 2.009 (2) |
C9—C10 | 1.443 (3) | O4—H23 | 0.8500 |
C9—H9 | 0.9300 | O4—H24 | 0.8500 |
C10—C11 | 1.405 (3) | O5—Zn1 | 2.0015 (19) |
C10—C15 | 1.430 (3) | O5—H21 | 0.8500 |
C11—C12 | 1.365 (4) | O5—H22 | 0.8499 |
C11—H11 | 0.9300 | O6—S1 | 1.5147 (18) |
C12—C13 | 1.382 (5) | ||
C6—C1—C2 | 119.6 (2) | C13—C14—C15 | 121.7 (3) |
C6—C1—C7 | 119.8 (2) | C13—C14—H14 | 119.2 |
C2—C1—C7 | 120.64 (19) | C15—C14—H14 | 119.2 |
C3—C2—C1 | 119.6 (3) | O3—C15—C14 | 118.8 (2) |
C3—C2—H2 | 120.2 | O3—C15—C10 | 124.8 (2) |
C1—C2—H2 | 120.2 | C14—C15—C10 | 116.4 (2) |
C4—C3—C2 | 120.3 (3) | S1—C16—H16A | 109.5 |
C4—C3—H3 | 119.9 | S1—C16—H16B | 109.5 |
C2—C3—H3 | 119.9 | H16A—C16—H16B | 109.5 |
C5—C4—C3 | 120.2 (2) | S1—C16—H16C | 109.5 |
C5—C4—H4 | 119.9 | H16A—C16—H16C | 109.5 |
C3—C4—H4 | 119.9 | H16B—C16—H16C | 109.5 |
C4—C5—C6 | 120.4 (3) | S1—C17—H17A | 109.5 |
C4—C5—H5 | 119.8 | S1—C17—H17B | 109.5 |
C6—C5—H5 | 119.8 | H17A—C17—H17B | 109.5 |
C1—C6—C5 | 119.9 (3) | S1—C17—H17C | 109.5 |
C1—C6—H6 | 120.1 | H17A—C17—H17C | 109.5 |
C5—C6—H6 | 120.1 | H17B—C17—H17C | 109.5 |
N1—C7—C1 | 111.97 (16) | C9—N1—C7 | 119.69 (18) |
N1—C7—C8 | 108.26 (15) | C9—N1—Zn1 | 124.24 (15) |
C1—C7—C8 | 109.72 (17) | C7—N1—Zn1 | 115.85 (13) |
N1—C7—H7 | 108.9 | C8—O1—Zn1 | 116.45 (13) |
C1—C7—H7 | 108.9 | C15—O3—Zn1 | 125.28 (15) |
C8—C7—H7 | 108.9 | Zn1—O4—H23 | 121.1 |
O1—C8—O2 | 124.70 (19) | Zn1—O4—H24 | 117.3 |
O1—C8—C7 | 118.68 (17) | H23—O4—H24 | 109.4 |
O2—C8—C7 | 116.62 (18) | Zn1—O5—H21 | 118.0 |
N1—C9—C10 | 126.4 (2) | Zn1—O5—H22 | 108.9 |
N1—C9—H9 | 116.8 | H21—O5—H22 | 109.0 |
C10—C9—H9 | 116.8 | O6—S1—C16 | 104.74 (13) |
C11—C10—C15 | 119.5 (2) | O6—S1—C17 | 106.13 (13) |
C11—C10—C9 | 116.5 (2) | C16—S1—C17 | 98.10 (13) |
C15—C10—C9 | 124.1 (2) | O3—Zn1—O5 | 97.31 (8) |
C12—C11—C10 | 122.4 (3) | O3—Zn1—O4 | 96.26 (9) |
C12—C11—H11 | 118.8 | O5—Zn1—O4 | 118.61 (9) |
C10—C11—H11 | 118.8 | O3—Zn1—N1 | 92.18 (8) |
C11—C12—C13 | 118.6 (3) | O5—Zn1—N1 | 119.53 (8) |
C11—C12—H12 | 120.7 | O4—Zn1—N1 | 119.38 (9) |
C13—C12—H12 | 120.7 | O3—Zn1—O1 | 171.33 (6) |
C14—C13—C12 | 121.5 (3) | O5—Zn1—O1 | 87.49 (8) |
C14—C13—H13 | 119.3 | O4—Zn1—O1 | 87.69 (7) |
C12—C13—H13 | 119.3 | N1—Zn1—O1 | 79.16 (7) |
C6—C1—C2—C3 | −1.5 (4) | C11—C10—C15—C14 | 0.0 (3) |
C7—C1—C2—C3 | 178.5 (2) | C9—C10—C15—C14 | −179.7 (2) |
C1—C2—C3—C4 | 0.2 (4) | C10—C9—N1—C7 | −178.51 (19) |
C2—C3—C4—C5 | 0.9 (5) | C10—C9—N1—Zn1 | −4.2 (3) |
C3—C4—C5—C6 | −0.8 (5) | C1—C7—N1—C9 | −77.4 (2) |
C2—C1—C6—C5 | 1.6 (4) | C8—C7—N1—C9 | 161.56 (19) |
C7—C1—C6—C5 | −178.4 (2) | C1—C7—N1—Zn1 | 107.87 (16) |
C4—C5—C6—C1 | −0.5 (4) | C8—C7—N1—Zn1 | −13.2 (2) |
C6—C1—C7—N1 | 126.6 (2) | O2—C8—O1—Zn1 | 174.12 (17) |
C2—C1—C7—N1 | −53.4 (3) | C7—C8—O1—Zn1 | −7.0 (2) |
C6—C1—C7—C8 | −113.2 (2) | C14—C15—O3—Zn1 | −165.10 (19) |
C2—C1—C7—C8 | 66.9 (3) | C10—C15—O3—Zn1 | 16.3 (3) |
N1—C7—C8—O1 | 13.2 (3) | C15—O3—Zn1—O5 | −139.4 (2) |
C1—C7—C8—O1 | −109.3 (2) | C15—O3—Zn1—O4 | 100.7 (2) |
N1—C7—C8—O2 | −167.87 (18) | C15—O3—Zn1—N1 | −19.2 (2) |
C1—C7—C8—O2 | 69.7 (2) | C9—N1—Zn1—O3 | 13.31 (19) |
N1—C9—C10—C11 | 174.9 (2) | C7—N1—Zn1—O3 | −172.18 (14) |
N1—C9—C10—C15 | −5.4 (4) | C9—N1—Zn1—O5 | 112.98 (18) |
C15—C10—C11—C12 | 1.0 (4) | C7—N1—Zn1—O5 | −72.52 (15) |
C9—C10—C11—C12 | −179.3 (3) | C9—N1—Zn1—O4 | −85.13 (19) |
C10—C11—C12—C13 | −0.9 (5) | C7—N1—Zn1—O4 | 89.38 (15) |
C11—C12—C13—C14 | −0.2 (5) | C9—N1—Zn1—O1 | −166.21 (19) |
C12—C13—C14—C15 | 1.2 (5) | C7—N1—Zn1—O1 | 8.29 (13) |
C13—C14—C15—O3 | −179.8 (3) | C8—O1—Zn1—O5 | 120.12 (16) |
C13—C14—C15—C10 | −1.1 (4) | C8—O1—Zn1—O4 | −121.10 (16) |
C11—C10—C15—O3 | 178.6 (2) | C8—O1—Zn1—N1 | −0.59 (15) |
C9—C10—C15—O3 | −1.1 (4) |
D—H···A | D—H | H···A | D···A | D—H···A |
O4—H23···O6 | 0.85 | 1.90 | 2.725 (3) | 164 |
O4—H24···O2i | 0.85 | 1.88 | 2.695 (3) | 160 |
O5—H21···O2ii | 0.85 | 1.81 | 2.629 (2) | 161 |
O5—H22···O6iii | 0.85 | 1.93 | 2.742 (3) | 159 |
Symmetry codes: (i) −x+2, −y+1, −z; (ii) x−1, y, z; (iii) −x+1, −y+1, −z. |
Experimental details
Crystal data | |
Chemical formula | [Zn(C15H11NO3)(H2O)2]·C2H6OS |
Mr | 432.78 |
Crystal system, space group | Triclinic, P1 |
Temperature (K) | 291 |
a, b, c (Å) | 7.331 (4), 9.318 (5), 14.578 (9) |
α, β, γ (°) | 81.91 (2), 81.37 (2), 80.18 (2) |
V (Å3) | 963.4 (9) |
Z | 2 |
Radiation type | Mo Kα |
µ (mm−1) | 1.42 |
Crystal size (mm) | 0.19 × 0.15 × 0.13 |
Data collection | |
Diffractometer | Rigaku R-AXIS RAPID diffractometer |
Absorption correction | Multi-scan (ABSCOR; Higashi, 1995) |
Tmin, Tmax | 0.777, 0.837 |
No. of measured, independent and observed [I > 2σ(I)] reflections | 9415, 4331, 3751 |
Rint | 0.024 |
(sin θ/λ)max (Å−1) | 0.649 |
Refinement | |
R[F2 > 2σ(F2)], wR(F2), S | 0.033, 0.098, 1.15 |
No. of reflections | 4331 |
No. of parameters | 237 |
H-atom treatment | H-atom parameters constrained |
Δρmax, Δρmin (e Å−3) | 0.48, −0.28 |
Computer programs: RAPID-AUTO (Rigaku, 1998), CrystalStructure (Rigaku/MSC, 2002), SHELXS97 (Sheldrick, 2008), SHELXL97 (Sheldrick, 2008), SHELXTL (Sheldrick, 2008).
N1—Zn1 | 2.0305 (19) | O4—Zn1 | 2.009 (2) |
O1—Zn1 | 2.1047 (17) | O5—Zn1 | 2.0015 (19) |
O3—Zn1 | 1.9742 (18) | ||
C16—S1—C17 | 98.10 (13) | O4—Zn1—N1 | 119.38 (9) |
O3—Zn1—O5 | 97.31 (8) | O3—Zn1—O1 | 171.33 (6) |
O3—Zn1—O4 | 96.26 (9) | O5—Zn1—O1 | 87.49 (8) |
O5—Zn1—O4 | 118.61 (9) | O4—Zn1—O1 | 87.69 (7) |
O3—Zn1—N1 | 92.18 (8) | N1—Zn1—O1 | 79.16 (7) |
O5—Zn1—N1 | 119.53 (8) |
D—H···A | D—H | H···A | D···A | D—H···A |
O4—H23···O6 | 0.85 | 1.90 | 2.725 (3) | 163.8 |
O4—H24···O2i | 0.85 | 1.88 | 2.695 (3) | 159.5 |
O5—H21···O2ii | 0.85 | 1.81 | 2.629 (2) | 161.2 |
O5—H22···O6iii | 0.85 | 1.93 | 2.742 (3) | 158.5 |
Symmetry codes: (i) −x+2, −y+1, −z; (ii) x−1, y, z; (iii) −x+1, −y+1, −z. |
Acknowledgements
This work was supported by the National Natural Science Foundation of China (grant No. 20272011) and Harbin University of Science and Technology.
References
Audriceth, L. F., Scott, E. S. & Kipper, P. S. (1954). J. Org. Chem. 19, 733–741. Google Scholar
Higashi, T. (1995). ABSCOR. Rigaku Corporation, Tokyo, Japan. Google Scholar
Rigaku (1998). RAPID-AUTO. Rigaku Corporation, Tokyo, Japan. Google Scholar
Rigaku/MSC (2002). CrystalStructure. Rigaku/MSC Inc., The Woodlands, Texas, USA. Google Scholar
Sheldrick, G. M. (2008). Acta Cryst. A64, 112–122. Web of Science CrossRef CAS IUCr Journals Google Scholar
You, J., Liu, B., Chen, Y.-Q., Xiao, C. & Zhai, D.-Q. (2008). Acta Cryst. E64, m1338. Web of Science CrossRef IUCr Journals Google Scholar
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The continuous interest in designing and making novel Schiff base ligand and transition-metal complexes have persisted because of their impressive catalytic property. Recently, our group have reported a Schiff base and Zn(II) complex (You et al., 2008). As the continually working, we report a new title Schiff base complex, herein, synthesized by the reaction of (E)-2-(2-hydroxybenzylideneamino)-2-phenylacetic acid and Zn(OAc)2.
As shown in Fig. 1, ZnII ion is five-coordinate in a slightly distorted trigonal-bipyramidal coordination environment, two water molecules and one N formed the equatorial plane and two deprotonated O atoms take up the apices positions.
The cocrystalized dimethylsulfoxide molecules link the discrete coordinate compound to a one-dimensional tubal supramolecular structure, via the O—H···O hydrogen bonds parallel to [100] (Fig. 2).