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The title Schiff base compound {systematic name: 2-[5-[(E)-(2-hy­droxy­benzyl­idene)amino]-4-(2-{5-[(E)-(2-hy­droxy­benzyl­idene)amino]-2-(2-hy­droxy­phen­yl)-1,3-thia­zol-4-yl}disulfan­yl)-1,3-thia­zol-2-yl]phenol}, C32H22N4O4S4, incorporating a disulfanediyl (di­thio) linkage, was obtained from the condensation reaction between two equivalents of salicyl­aldehyde and one equivalent of di­thio­oxamide in di­methyl­formamide, and was characterized by elemental analysis, IR spectroscopic analysis and single-crystal X-ray diffraction. A one-dimensional chain is formed along the b axis via double inter­molecular C—H...S hydrogen bonds. The HOMO (highest occupied mol­ecular orbital) and LUMO (lowest unoccupied mol­ecular orbital) energies and some related mol­ecular parameters were calculated at the B3LYP/6-311G(d,p) level of theory. The molecular hyperpolarizability was also calculated.

Supporting information

cif

Crystallographic Information File (CIF) https://doi.org/10.1107/S2053229617008257/uk3134sup1.cif
Contains datablock I

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S2053229617008257/uk3134Isup2.hkl
Contains datablock I

pdf

Portable Document Format (PDF) file https://doi.org/10.1107/S2053229617008257/uk3134sup3.pdf
Further information relating to the computations

cml

Chemical Markup Language (CML) file https://doi.org/10.1107/S2053229617008257/uk3134Isup4.cml
Supplementary material

CCDC references: 1553905; 1556981

Computing details top

Data collection: APEX2 (Bruker, 2007); cell refinement: SAINT (Bruker, 2007); data reduction: SAINT (Bruker, 2007); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL2016 (Sheldrick, 2015); molecular graphics: XPW (Siemens, 1996); software used to prepare material for publication: WinGX (Farrugia, 2012).

2-[5-[(E)-(2-Hydroxybenzylidene)amino]-4-(2-{5-[(E)-(2-hydroxybenzylidene)amino]-2-(2-hydroxyphenyl)-1,3-thiazol-4-yl}disulfanyl)-1,3-thiazol-2-yl]phenol top
Crystal data top
C32H22N4O4S4F(000) = 676
Mr = 654.77Dx = 1.463 Mg m3
Monoclinic, P2/cMo Kα radiation, λ = 0.71073 Å
a = 13.1813 (7) ÅCell parameters from 7100 reflections
b = 7.2661 (4) Åθ = 2.6–26.0°
c = 15.6283 (8) ŵ = 0.37 mm1
β = 96.933 (3)°T = 298 K
V = 1485.88 (14) Å3Irregular, brown
Z = 20.23 × 0.15 × 0.11 mm
Data collection top
Bruker APEXII CCD
diffractometer
2127 reflections with I > 2σ(I)
φ and ω scansRint = 0.052
Absorption correction: multi-scan
(SADABS; Bruker, 2008)
θmax = 26.0°, θmin = 2.6°
Tmin = 0.647, Tmax = 0.745h = 1616
46264 measured reflectionsk = 88
2918 independent reflectionsl = 1919
Refinement top
Refinement on F20 restraints
Least-squares matrix: fullHydrogen site location: mixed
R[F2 > 2σ(F2)] = 0.041H atoms treated by a mixture of independent and constrained refinement
wR(F2) = 0.130 w = 1/[σ2(Fo2) + (0.0712P)2 + 0.3626P]
where P = (Fo2 + 2Fc2)/3
S = 1.04(Δ/σ)max = 0.002
2918 reflectionsΔρmax = 0.37 e Å3
207 parametersΔρmin = 0.23 e Å3
Special details top

Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/Ueq
S10.51227 (4)0.27182 (8)0.40014 (4)0.0504 (2)
S20.45256 (5)0.26435 (9)0.29971 (5)0.0680 (3)
O10.20486 (15)0.0275 (3)0.18068 (13)0.0707 (5)
C10.60088 (16)0.1073 (3)0.44137 (14)0.0476 (5)
C20.68782 (17)0.1542 (3)0.50469 (14)0.0486 (5)
C30.71056 (19)0.3356 (4)0.52755 (15)0.0581 (6)
H30.6706280.4294450.5006670.070*
C40.7905 (2)0.3802 (4)0.58887 (17)0.0695 (7)
H40.8049610.5024340.6031680.083*
C50.8494 (2)0.2387 (5)0.62913 (18)0.0724 (8)
H50.9029450.2669130.6714410.087*
C60.82965 (19)0.0594 (4)0.60741 (16)0.0664 (7)
H60.8697250.0333440.6350780.080*
C70.75044 (18)0.0143 (4)0.54450 (15)0.0554 (6)
O20.73547 (15)0.1661 (3)0.52538 (14)0.0717 (6)
N10.58145 (14)0.0592 (3)0.41213 (12)0.0527 (5)
C80.49473 (18)0.0641 (3)0.35449 (15)0.0509 (6)
C90.44575 (16)0.1005 (3)0.33905 (14)0.0469 (5)
N20.35841 (14)0.1230 (3)0.28175 (12)0.0494 (5)
C100.31827 (17)0.2798 (3)0.26292 (15)0.0509 (6)
H100.3494470.3844480.2882460.061*
C110.22652 (17)0.3003 (3)0.20390 (15)0.0506 (6)
C120.17275 (18)0.1465 (4)0.16608 (15)0.0551 (6)
C130.0829 (2)0.1748 (5)0.11118 (17)0.0744 (8)
H130.0464000.0748150.0863680.089*
C140.0483 (2)0.3503 (6)0.09371 (19)0.0872 (10)
H140.0123740.3676580.0576220.105*
C150.1012 (2)0.5014 (5)0.1283 (2)0.0884 (10)
H150.0771110.6194590.1147000.106*
C160.1895 (2)0.4769 (4)0.18286 (17)0.0687 (7)
H160.2252940.5789720.2062310.082*
H10.266 (2)0.023 (4)0.2164 (19)0.096 (11)*
H20.688 (3)0.178 (5)0.481 (2)0.112 (13)*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
S10.0485 (3)0.0457 (4)0.0547 (4)0.0055 (3)0.0040 (3)0.0009 (3)
S20.0691 (5)0.0375 (4)0.0913 (5)0.0119 (3)0.0152 (4)0.0110 (3)
O10.0663 (12)0.0606 (13)0.0809 (13)0.0114 (9)0.0092 (10)0.0013 (10)
C10.0459 (12)0.0463 (13)0.0500 (12)0.0029 (10)0.0030 (10)0.0083 (10)
C20.0422 (12)0.0549 (14)0.0480 (12)0.0016 (10)0.0021 (10)0.0051 (11)
C30.0534 (14)0.0624 (16)0.0571 (14)0.0005 (12)0.0015 (11)0.0016 (12)
C40.0641 (17)0.076 (2)0.0673 (16)0.0113 (15)0.0021 (14)0.0085 (15)
C50.0548 (16)0.102 (3)0.0584 (16)0.0099 (16)0.0037 (12)0.0016 (16)
C60.0478 (14)0.089 (2)0.0604 (15)0.0054 (14)0.0022 (12)0.0152 (15)
C70.0465 (13)0.0662 (17)0.0529 (13)0.0019 (12)0.0032 (11)0.0107 (12)
O20.0712 (13)0.0596 (13)0.0789 (13)0.0112 (10)0.0131 (11)0.0110 (10)
N10.0509 (11)0.0460 (12)0.0583 (11)0.0002 (9)0.0052 (9)0.0132 (9)
C80.0522 (13)0.0406 (13)0.0577 (14)0.0050 (10)0.0024 (11)0.0105 (10)
C90.0433 (12)0.0463 (13)0.0502 (13)0.0014 (10)0.0022 (10)0.0083 (10)
N20.0445 (10)0.0500 (12)0.0522 (11)0.0007 (9)0.0006 (8)0.0051 (9)
C100.0479 (13)0.0477 (14)0.0549 (13)0.0016 (10)0.0021 (10)0.0019 (11)
C110.0452 (13)0.0565 (15)0.0488 (12)0.0065 (11)0.0004 (10)0.0039 (11)
C120.0447 (13)0.0657 (17)0.0545 (13)0.0013 (12)0.0040 (11)0.0015 (12)
C130.0485 (15)0.106 (2)0.0659 (16)0.0086 (16)0.0055 (13)0.0053 (17)
C140.0565 (17)0.126 (3)0.0732 (19)0.0256 (19)0.0144 (14)0.004 (2)
C150.082 (2)0.091 (2)0.087 (2)0.0381 (19)0.0138 (17)0.0023 (18)
C160.0686 (17)0.0658 (18)0.0677 (16)0.0206 (14)0.0088 (13)0.0037 (14)
Geometric parameters (Å, º) top
N2—C101.275 (3)C4—H40.9300
C1—N11.307 (3)C5—C61.364 (4)
C8—C91.366 (3)C5—H50.9300
C10—C111.437 (3)C6—C71.384 (3)
S1—C11.740 (2)C6—H60.9300
S2—S2i2.1089 (16)C7—O21.354 (3)
C9—N21.380 (3)O2—H20.88 (4)
N1—C81.368 (3)C10—H100.9300
C1—C21.461 (3)C11—C161.398 (4)
S1—C91.740 (2)C11—C121.414 (3)
S2—C81.745 (2)C12—C131.391 (3)
O1—C121.344 (3)C13—C141.371 (5)
O1—H10.92 (3)C13—H130.9300
C2—C31.389 (4)C14—C151.376 (5)
C2—C71.406 (3)C14—H140.9300
C3—C41.375 (3)C15—C161.369 (4)
C3—H30.9300C15—H150.9300
C4—C51.392 (4)C16—H160.9300
N2—C10—C11122.3 (2)O2—C7—C6117.6 (2)
C9—C8—S2121.82 (18)O2—C7—C2122.7 (2)
N2—C9—S1126.64 (17)C6—C7—C2119.7 (3)
N1—C1—S1114.32 (17)C7—O2—H2110 (3)
N1—C1—C2123.9 (2)C9—C8—N1115.7 (2)
C8—S2—S2i100.33 (8)C8—C9—N2123.9 (2)
C10—N2—C9123.1 (2)C8—C9—S1109.45 (17)
N1—C8—S2122.42 (18)N2—C10—H10118.9
C9—S1—C189.02 (11)C11—C10—H10118.9
C1—N1—C8111.53 (19)C16—C11—C12118.9 (2)
C2—C1—S1121.81 (18)C16—C11—C10119.3 (2)
C12—O1—H1108 (2)C12—C11—C10121.8 (2)
C3—C2—C7118.4 (2)O1—C12—C13118.1 (3)
C3—C2—C1121.5 (2)O1—C12—C11122.7 (2)
C7—C2—C1120.1 (2)C13—C12—C11119.2 (3)
C4—C3—C2121.8 (3)C14—C13—C12119.9 (3)
C4—C3—H3119.1C14—C13—H13120.1
C2—C3—H3119.1C12—C13—H13120.1
C3—C4—C5118.7 (3)C13—C14—C15121.6 (3)
C3—C4—H4120.7C13—C14—H14119.2
C5—C4—H4120.7C15—C14—H14119.2
C6—C5—C4120.9 (3)C16—C15—C14119.5 (3)
C6—C5—H5119.5C16—C15—H15120.2
C4—C5—H5119.5C14—C15—H15120.2
C5—C6—C7120.5 (3)C15—C16—C11120.8 (3)
C5—C6—H6119.7C15—C16—H16119.6
C7—C6—H6119.7C11—C16—H16119.6
S2i—S2—C8—C995.8 (2)S2i—S2—C8—N180.7 (2)
C1—C2—C7—O21.6 (3)C8—N1—C1—C2179.2 (2)
C8—N1—C1—S10.4 (2)C10—N2—C9—C8174.2 (2)
C9—N2—C10—C11179.2 (2)
Symmetry code: (i) x+1, y, z+1/2.
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
O1—H1···N20.92 (3)1.83 (3)2.649 (3)146 (3)
O2—H2···N10.88 (4)1.87 (4)2.644 (3)145 (4)
C10—H10···S2ii0.932.893.767 (3)158
Symmetry code: (ii) x, y+1, z.
 

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