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In the title mol­ecule, C8H7N3O3S, the triazole and thia­zine rings are nearly coplanar, with a dihedral angle of 2.27 (9)°. The methyl carboxyl­ate moiety is also planar and makes a dihedral angle of 7.31 (13)° with the thia­zine-triazole mean plane.

Supporting information

cif

Crystallographic Information File (CIF) https://doi.org/10.1107/S1600536802018056/cm6019sup1.cif
Contains datablocks global, I

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S1600536802018056/cm6019Isup2.hkl
Contains datablock I

CCDC reference: 200748

Key indicators

  • Single-crystal X-ray study
  • T = 295 K
  • Mean [sigma](C-C) = 0.004 Å
  • R factor = 0.043
  • wR factor = 0.125
  • Data-to-parameter ratio = 13.5

checkCIF results

No syntax errors found

ADDSYM reports no extra symmetry


Yellow Alert Alert Level C:
ABSTY_02 Alert C An _exptl_absorpt_correction_type has been given without a literature citation. This should be contained in the _exptl_absorpt_process_details field. Absorption correction given as \y scan
0 Alert Level A = Potentially serious problem
0 Alert Level B = Potential problem
1 Alert Level C = Please check

Computing details top

Data collection: CAD-4 EXPRESS (Enraf-Nonius, 1994); cell refinement: CAD-4 EXPRESS; data reduction: XCAD4 (Harms & Wocadlo, 1995); program(s) used to solve structure: SHELXS97 (Sheldrick, 1997); program(s) used to refine structure: SHELXL97 (Sheldrick, 1997); molecular graphics: ORTEP-3 for Windows (Farrugia, 1999); software used to prepare material for publication: PARST (Nardelli, 1995).

(I) top
Crystal data top
C8H7N3O3SZ = 2
Mr = 225.23F(000) = 232
Triclinic, P1Dx = 1.587 Mg m3
a = 4.0299 (3) ÅMo Kα radiation, λ = 0.71073 Å
b = 10.2866 (7) ÅCell parameters from 25 reflections
c = 11.9615 (9) Åθ = 9.4–18.4°
α = 104.870 (6)°µ = 0.33 mm1
β = 96.745 (6)°T = 295 K
γ = 95.831 (6)°Prism, colorless
V = 471.42 (6) Å30.4 × 0.32 × 0.12 mm
Data collection top
Enraf-Nonius TurboCAD-4
diffractometer
Rint = 0.011
non–profiled θ/2θ scansθmax = 26.3°, θmin = 3.1°
Absorption correction: ψ scanh = 50
Tmin = 0.880, Tmax = 0.961k = 1212
2173 measured reflectionsl = 1414
1893 independent reflections3 standard reflections every 120 min
1504 reflections with I > 2σ(I) intensity decay: 2%
Refinement top
Refinement on F20 restraints
Least-squares matrix: fullH atoms treated by a mixture of independent and constrained refinement
R[F2 > 2σ(F2)] = 0.043 w = 1/[σ2(Fo2) + (0.0713P)2 + 0.1626P]
where P = (Fo2 + 2Fc2)/3
wR(F2) = 0.125(Δ/σ)max < 0.001
S = 1.09Δρmax = 0.34 e Å3
1891 reflectionsΔρmin = 0.31 e Å3
140 parameters
Special details top

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.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/Ueq
C80.2340 (10)0.9164 (3)0.5996 (3)0.0781 (10)
H8A0.1120.92430.52830.117*
H8B0.46890.91670.59240.117*
H8C0.20750.99150.66320.117*
H30.206 (7)0.562 (3)0.584 (2)0.045 (7)*
C10.1252 (6)0.4384 (2)0.83787 (19)0.0366 (5)
C20.1100 (6)0.6283 (2)0.72732 (19)0.0390 (5)
C30.1236 (6)0.5413 (3)0.6464 (2)0.0427 (6)
C40.2641 (6)0.4073 (2)0.6507 (2)0.0436 (6)
C50.0011 (6)0.2438 (2)0.8576 (2)0.0432 (6)
C60.0099 (8)0.1272 (3)0.9099 (3)0.0591 (7)
H6A0.16680.15360.98120.089*
H6B0.07940.05220.85590.089*
H6C0.21080.10080.92610.089*
C70.2438 (7)0.7655 (3)0.7171 (2)0.0448 (6)
N10.1906 (6)0.2374 (2)0.75994 (19)0.0468 (5)
N20.1111 (5)0.36492 (19)0.74501 (17)0.0395 (5)
N30.2004 (5)0.36592 (19)0.90980 (17)0.0427 (5)
O10.4942 (5)0.3354 (2)0.58140 (17)0.0627 (6)
O20.4580 (6)0.8389 (2)0.7893 (2)0.0752 (7)
O30.1037 (5)0.7906 (2)0.62205 (18)0.0625 (6)
S10.30459 (16)0.60316 (6)0.85551 (5)0.0407 (2)
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C80.104 (3)0.066 (2)0.082 (2)0.0145 (19)0.013 (2)0.0509 (19)
C10.0394 (12)0.0322 (11)0.0351 (11)0.0000 (9)0.0012 (9)0.0075 (9)
C20.0414 (13)0.0413 (12)0.0347 (11)0.0057 (10)0.0024 (9)0.0124 (9)
C30.0438 (13)0.0502 (14)0.0337 (11)0.0063 (11)0.0011 (10)0.0137 (10)
C40.0439 (14)0.0459 (13)0.0359 (12)0.0024 (11)0.0001 (10)0.0061 (10)
C50.0469 (14)0.0321 (11)0.0491 (14)0.0020 (10)0.0057 (11)0.0106 (10)
C60.0713 (19)0.0362 (13)0.0714 (19)0.0035 (12)0.0032 (15)0.0224 (13)
C70.0504 (15)0.0423 (13)0.0449 (13)0.0082 (11)0.0031 (11)0.0185 (11)
N10.0504 (12)0.0327 (10)0.0523 (12)0.0026 (9)0.0037 (10)0.0079 (9)
N20.0414 (11)0.0333 (10)0.0386 (10)0.0023 (8)0.0008 (8)0.0063 (8)
N30.0515 (12)0.0343 (10)0.0408 (11)0.0016 (9)0.0008 (9)0.0125 (8)
O10.0598 (12)0.0580 (12)0.0553 (11)0.0104 (10)0.0196 (9)0.0081 (9)
O20.0961 (17)0.0452 (11)0.0741 (14)0.0178 (11)0.0261 (12)0.0263 (10)
O30.0712 (13)0.0638 (13)0.0574 (12)0.0020 (10)0.0058 (10)0.0366 (10)
S10.0492 (4)0.0338 (3)0.0351 (3)0.0032 (2)0.0060 (2)0.0112 (2)
Geometric parameters (Å, º) top
C8—O31.447 (3)C4—O11.208 (3)
C8—H8A0.96C4—N21.409 (3)
C8—H8B0.96C5—N11.305 (3)
C8—H8C0.96C5—N31.374 (3)
C1—N31.305 (3)C5—C61.489 (3)
C1—N21.373 (3)C6—H6A0.96
C1—S11.723 (2)C6—H6B0.96
C2—C31.339 (4)C6—H6C0.96
C2—C71.498 (3)C7—O21.191 (3)
C2—S11.731 (2)C7—O31.307 (3)
C3—C41.452 (3)N1—N21.380 (3)
C3—H30.87 (3)
O3—C8—H8A109.5N1—C5—C6123.0 (2)
O3—C8—H8B109.5N3—C5—C6121.4 (2)
H8A—C8—H8B109.5C5—C6—H6A109.5
O3—C8—H8C109.5C5—C6—H6B109.5
H8A—C8—H8C109.5H6A—C6—H6B109.5
H8B—C8—H8C109.5C5—C6—H6C109.5
N3—C1—N2110.9 (2)H6A—C6—H6C109.5
N3—C1—S1124.53 (18)H6B—C6—H6C109.5
N2—C1—S1124.57 (17)O2—C7—O3126.1 (2)
C3—C2—C7123.2 (2)O2—C7—C2121.4 (2)
C3—C2—S1127.09 (19)O3—C7—C2112.5 (2)
C7—C2—S1109.74 (17)C5—N1—N2102.76 (19)
C2—C3—C4126.0 (2)C1—N2—N1108.02 (19)
C2—C3—H3120.6 (18)C1—N2—C4128.5 (2)
C4—C3—H3113.4 (18)N1—N2—C4123.5 (2)
O1—C4—N2120.9 (2)C1—N3—C5102.8 (2)
O1—C4—C3124.6 (2)C7—O3—C8116.8 (2)
N2—C4—C3114.5 (2)C1—S1—C298.98 (11)
N1—C5—N3115.6 (2)
C7—C2—C3—C4180.0 (2)C5—N1—N2—C4178.5 (2)
S1—C2—C3—C40.6 (4)O1—C4—N2—C1172.3 (2)
C2—C3—C4—O1173.6 (3)C3—C4—N2—C17.2 (4)
C2—C3—C4—N25.9 (4)O1—C4—N2—N15.4 (4)
C3—C2—C7—O2178.0 (3)C3—C4—N2—N1175.1 (2)
S1—C2—C7—O21.5 (3)N2—C1—N3—C50.1 (3)
C3—C2—C7—O31.0 (4)S1—C1—N3—C5178.67 (18)
S1—C2—C7—O3179.53 (18)N1—C5—N3—C10.4 (3)
N3—C5—N1—N20.5 (3)C6—C5—N3—C1178.9 (2)
C6—C5—N1—N2178.8 (2)O2—C7—O3—C83.5 (5)
N3—C1—N2—N10.2 (3)C2—C7—O3—C8175.5 (2)
S1—C1—N2—N1178.98 (16)N3—C1—S1—C2176.5 (2)
N3—C1—N2—C4178.2 (2)N2—C1—S1—C22.1 (2)
S1—C1—N2—C43.1 (4)C3—C2—S1—C13.2 (3)
C5—N1—N2—C10.4 (3)C7—C2—S1—C1176.26 (17)
 

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