Literature DB >> 21583888

4-(4-Bromo-benzene-sulfonamido)benzoic acid.

Islam Ullah Khan1, Ghulam Mustafa, Muhammad Nadeem Arshad, Muhammad Shafiq, Shahzad Sharif.   

Abstract

The title compound, C(13)H(10)BrNO(4)S, belongs to the sulfonamide class of organic compounds. The two aromatic rings are inclined at 34.30 (15)° to one another, and the carboxyl substituent lies in the plane of the benzene ring to which it is bound (maximum deviation = 0.004 Å). In the crystal structure, charactersitic carboxylic acid dimers are formed through O-H⋯O hydrogen bonds. These dimers are linked into rows down a by N-H⋯O inter-actions. Additional C-H⋯O contacts further stabilize the structure, and a close Br⋯Br(x, -y + 1, -z + 1) contact of 3.5199 (9) Å is also observed.

Entities:  

Year:  2009        PMID: 21583888      PMCID: PMC2977752          DOI: 10.1107/S1600536809013798

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


Related literature

For details of the biological activity and pharmaceutical applications of sulfonamide derivatives, see: Pandya et al. (2003 ▶); Supuran & Scozzafava (2000 ▶); Arshad, Khan & Zia-ur-Rehman (2008 ▶). For thia­zine-related heterocycles, see: Arshad, Tahir et al. (2008 ▶). For a related structure, see: Nan & Xing (2006 ▶). For bond-length information, see: Allen et al. (1987 ▶). For the synthesis, see: Deng & Mani (2006 ▶).

Experimental

Crystal data

C13H10BrNO4S M = 356.19 Monoclinic, a = 5.1344 (5) Å b = 13.1713 (11) Å c = 20.0224 (19) Å β = 91.730 (5)° V = 1353.4 (2) Å3 Z = 4 Mo Kα radiation μ = 3.20 mm−1 T = 296 K 0.35 × 0.21 × 0.09 mm

Data collection

Bruker Kappa APEXII CCD diffractometer Absorption correction: multi-scan (SADABS; Bruker, 2007 ▶) T min = 0.448, T max = 0.754 14856 measured reflections 3352 independent reflections 1838 reflections with I > 2σ(I) R int = 0.061

Refinement

R[F 2 > 2σ(F 2)] = 0.048 wR(F 2) = 0.128 S = 1.01 3352 reflections 182 parameters H-atom parameters constrained Δρmax = 1.43 e Å−3 Δρmin = −1.09 e Å−3 Data collection: APEX2 (Bruker, 2007 ▶); cell refinement: SAINT (Bruker, 2007 ▶); data reduction: SAINT; program(s) used to solve structure: SHELXS97 (Sheldrick, 2008 ▶); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008 ▶); molecular graphics: ORTEP-3 for Windows (Farrugia, 1997 ▶) and PLATON (Spek, 2009 ▶); software used to prepare material for publication: WinGX (Farrugia, 1999 ▶) and PLATON. Crystal structure: contains datablocks I, global. DOI: 10.1107/S1600536809013798/sj2609sup1.cif Structure factors: contains datablocks I. DOI: 10.1107/S1600536809013798/sj2609Isup2.hkl Additional supplementary materials: crystallographic information; 3D view; checkCIF report
C13H10BrNO4SF(000) = 712
Mr = 356.19Dx = 1.748 Mg m3
Monoclinic, P21/cMo Kα radiation, λ = 0.71073 Å
Hall symbol: -P 2ybc 1Cell parameters from 2704 reflections
a = 5.1344 (5) Åθ = 2.6–22.0°
b = 13.1713 (11) ŵ = 3.20 mm1
c = 20.0224 (19) ÅT = 296 K
β = 91.730 (5)°Irregular fragment, white
V = 1353.4 (2) Å30.35 × 0.21 × 0.09 mm
Z = 4
Bruker Kappa APEXII CCD diffractometer3352 independent reflections
Radiation source: fine-focus sealed tube1838 reflections with I > 2σ(I)
graphiteRint = 0.061
φ and ω scansθmax = 28.3°, θmin = 2.6°
Absorption correction: multi-scan (SADABS; Bruker, 2007)h = −6→6
Tmin = 0.448, Tmax = 0.754k = −17→10
14856 measured reflectionsl = −26→23
Refinement on F2Primary atom site location: structure-invariant direct methods
Least-squares matrix: fullSecondary atom site location: difference Fourier map
R[F2 > 2σ(F2)] = 0.048Hydrogen site location: inferred from neighbouring sites
wR(F2) = 0.128H-atom parameters constrained
S = 1.01w = 1/[σ2(Fo2) + (0.0594P)2 + 0.1787P] where P = (Fo2 + 2Fc2)/3
3352 reflections(Δ/σ)max < 0.001
182 parametersΔρmax = 1.43 e Å3
0 restraintsΔρmin = −1.09 e Å3
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.
xyzUiso*/Ueq
Br10.06086 (10)0.39989 (3)0.44439 (2)0.0693 (2)
S10.41495 (17)0.01866 (7)0.27290 (5)0.0348 (2)
O10.6125 (5)0.38278 (19)0.01376 (14)0.0509 (8)
O20.2589 (5)0.4559 (2)0.05304 (15)0.0528 (8)
H2A0.30840.50240.02930.079*
O30.3343 (5)−0.07285 (18)0.30378 (14)0.0459 (7)
O40.6772 (4)0.0308 (2)0.25256 (13)0.0458 (7)
N10.2274 (5)0.0325 (2)0.20612 (15)0.0353 (7)
H10.1085−0.01160.19650.042*
C10.1820 (8)0.2852 (3)0.3973 (2)0.0448 (10)
C20.0653 (8)0.1929 (3)0.4067 (2)0.0498 (11)
H2−0.06660.18620.43720.060*
C30.1449 (7)0.1108 (3)0.3707 (2)0.0434 (10)
H30.06780.04780.37700.052*
C40.3401 (6)0.1213 (3)0.32476 (18)0.0339 (9)
C50.4571 (8)0.2152 (3)0.3160 (2)0.0472 (10)
H50.58860.22220.28540.057*
C60.3796 (8)0.2975 (3)0.3523 (2)0.0548 (12)
H60.45820.36040.34680.066*
C70.2632 (6)0.1189 (2)0.16378 (18)0.0310 (8)
C80.4623 (7)0.1184 (3)0.1193 (2)0.0399 (9)
H80.56520.06080.11480.048*
C90.5087 (7)0.2035 (3)0.08134 (19)0.0398 (9)
H90.64590.20370.05210.048*
C100.3537 (7)0.2881 (3)0.08650 (18)0.0324 (8)
C110.1471 (7)0.2863 (3)0.1297 (2)0.0412 (10)
H110.03780.34240.13260.049*
C120.1038 (7)0.2019 (3)0.16820 (19)0.0411 (9)
H12−0.03400.20110.19730.049*
C130.4143 (7)0.3801 (3)0.04823 (18)0.0372 (9)
U11U22U33U12U13U23
Br10.0983 (4)0.0484 (3)0.0624 (4)0.0061 (2)0.0194 (3)−0.0097 (2)
S10.0293 (5)0.0328 (5)0.0428 (6)0.0016 (4)0.0084 (4)0.0072 (4)
O10.0523 (17)0.0412 (16)0.061 (2)0.0101 (12)0.0304 (15)0.0144 (13)
O20.0589 (17)0.0363 (16)0.065 (2)0.0145 (14)0.0293 (15)0.0186 (14)
O30.0485 (16)0.0331 (15)0.0567 (19)0.0037 (12)0.0135 (13)0.0141 (13)
O40.0271 (13)0.0532 (18)0.0579 (19)0.0035 (11)0.0117 (12)0.0064 (13)
N10.0321 (16)0.0332 (17)0.041 (2)−0.0093 (12)0.0037 (14)0.0058 (14)
C10.056 (3)0.040 (2)0.039 (2)0.0045 (19)0.0048 (19)−0.0047 (18)
C20.053 (3)0.051 (3)0.047 (3)−0.003 (2)0.021 (2)0.001 (2)
C30.047 (2)0.037 (2)0.047 (3)−0.0076 (17)0.014 (2)0.0067 (18)
C40.0300 (19)0.034 (2)0.038 (2)−0.0021 (15)0.0045 (16)0.0050 (16)
C50.048 (2)0.044 (2)0.051 (3)−0.0081 (18)0.019 (2)0.001 (2)
C60.064 (3)0.037 (2)0.064 (3)−0.014 (2)0.017 (2)0.000 (2)
C70.0308 (18)0.0265 (19)0.036 (2)−0.0010 (14)0.0040 (16)0.0025 (15)
C80.044 (2)0.031 (2)0.046 (2)0.0101 (16)0.0135 (18)0.0014 (17)
C90.043 (2)0.035 (2)0.042 (2)0.0037 (17)0.0171 (18)0.0011 (18)
C100.0332 (19)0.030 (2)0.034 (2)−0.0001 (15)0.0058 (16)0.0006 (16)
C110.035 (2)0.034 (2)0.056 (3)0.0119 (15)0.0147 (18)0.0088 (19)
C120.034 (2)0.042 (2)0.048 (3)0.0069 (16)0.0162 (18)0.0083 (19)
C130.036 (2)0.035 (2)0.040 (2)−0.0002 (17)0.0072 (18)0.0029 (17)
Br1—C11.896 (4)C4—C51.388 (5)
S1—O31.422 (2)C5—C61.370 (5)
S1—O41.427 (2)C5—H50.9300
S1—N11.634 (3)C6—H60.9300
S1—C41.754 (4)C7—C121.370 (5)
O1—C131.247 (4)C7—C81.376 (5)
O2—C131.284 (4)C8—C91.379 (5)
O2—H2A0.8200C8—H80.9300
N1—C71.434 (4)C9—C101.374 (5)
N1—H10.8600C9—H90.9300
C1—C21.371 (5)C10—C111.389 (5)
C1—C61.387 (5)C10—C131.472 (5)
C2—C31.370 (5)C11—C121.375 (5)
C2—H20.9300C11—H110.9300
C3—C41.388 (5)C12—H120.9300
C3—H30.9300
O3—S1—O4120.55 (15)C5—C6—C1118.8 (4)
O3—S1—N1106.15 (15)C5—C6—H6120.6
O4—S1—N1106.97 (15)C1—C6—H6120.6
O3—S1—C4108.90 (16)C12—C7—C8120.2 (3)
O4—S1—C4107.95 (16)C12—C7—N1120.5 (3)
N1—S1—C4105.33 (16)C8—C7—N1119.3 (3)
C13—O2—H2A109.5C7—C8—C9119.8 (3)
C7—N1—S1119.3 (2)C7—C8—H8120.1
C7—N1—H1120.4C9—C8—H8120.1
S1—N1—H1120.4C10—C9—C8120.5 (3)
C2—C1—C6121.6 (4)C10—C9—H9119.8
C2—C1—Br1119.1 (3)C8—C9—H9119.8
C6—C1—Br1119.2 (3)C9—C10—C11119.2 (3)
C3—C2—C1119.3 (4)C9—C10—C13119.7 (3)
C3—C2—H2120.3C11—C10—C13121.0 (3)
C1—C2—H2120.3C12—C11—C10120.1 (3)
C2—C3—C4120.2 (3)C12—C11—H11119.9
C2—C3—H3119.9C10—C11—H11119.9
C4—C3—H3119.9C7—C12—C11120.1 (3)
C5—C4—C3119.8 (3)C7—C12—H12119.9
C5—C4—S1120.6 (3)C11—C12—H12119.9
C3—C4—S1119.4 (3)O1—C13—O2122.6 (3)
C6—C5—C4120.3 (4)O1—C13—C10120.0 (3)
C6—C5—H5119.8O2—C13—C10117.4 (3)
C4—C5—H5119.8
O3—S1—N1—C7−179.7 (2)Br1—C1—C6—C5−176.8 (3)
O4—S1—N1—C7−49.8 (3)S1—N1—C7—C12−99.7 (4)
C4—S1—N1—C764.9 (3)S1—N1—C7—C879.3 (4)
C6—C1—C2—C3−0.2 (7)C12—C7—C8—C93.0 (6)
Br1—C1—C2—C3177.3 (3)N1—C7—C8—C9−175.9 (3)
C1—C2—C3—C4−0.5 (6)C7—C8—C9—C10−1.5 (6)
C2—C3—C4—C50.8 (6)C8—C9—C10—C11−0.9 (6)
C2—C3—C4—S1−173.2 (3)C8—C9—C10—C13176.9 (4)
O3—S1—C4—C5162.7 (3)C9—C10—C11—C121.9 (6)
O4—S1—C4—C530.2 (4)C13—C10—C11—C12−175.8 (4)
N1—S1—C4—C5−83.8 (3)C8—C7—C12—C11−2.0 (6)
O3—S1—C4—C3−23.2 (3)N1—C7—C12—C11176.9 (3)
O4—S1—C4—C3−155.7 (3)C10—C11—C12—C7−0.5 (6)
N1—S1—C4—C390.3 (3)C9—C10—C13—O1−3.4 (6)
C3—C4—C5—C6−0.3 (6)C11—C10—C13—O1174.4 (3)
S1—C4—C5—C6173.7 (3)C9—C10—C13—O2177.8 (4)
C4—C5—C6—C1−0.4 (6)C11—C10—C13—O2−4.5 (5)
C2—C1—C6—C50.7 (7)
D—H···AD—HH···AD···AD—H···A
O2—H2A···O1i0.821.802.606 (4)171
N1—H1···O4ii0.862.573.001 (3)112
C2—H2···O1iii0.932.463.361 (5)164
C3—H3···O2iv0.932.533.314 (5)143
C11—H11···O3v0.932.583.395 (5)146
Table 1

Hydrogen-bond geometry (Å, °)

D—H⋯AD—HH⋯ADAD—H⋯A
O2—H2A⋯O1i0.821.802.606 (4)171
N1—H1⋯O4ii0.862.573.001 (3)112
C2—H2⋯O1iii0.932.463.361 (5)164
C3—H3⋯O2iv0.932.533.314 (5)143
C11—H11⋯O3v0.932.583.395 (5)146

Symmetry codes: (i) ; (ii) ; (iii) ; (iv) ; (v) .

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