Experimental
Crystal data
C9H8O2 Mr = 148.15 Monoclinic, P 21 /c a = 7.5538 (4) Å b = 8.0896 (4) Å c = 13.0410 (6) Å β = 115.364 (3)° V = 720.08 (6) Å3 Z = 4 Mo Kα radiation μ = 0.10 mm−1 T = 200 K 0.48 × 0.41 × 0.29 mm
|
Data collection
Bruker APEXII CCD diffractometer 6367 measured reflections 1774 independent reflections 1578 reflections with I > 2σ(I) Rint = 0.041
|
D—H⋯A | D—H | H⋯A | D⋯A | D—H⋯A | C1—H11⋯O2i | 0.99 | 2.53 | 3.4674 (13) | 157 | C1—H12⋯O2ii | 0.99 | 2.56 | 3.3934 (15) | 141 | Symmetry codes: (i) ; (ii) . | |
Data collection: APEX2 (Bruker, 2010
); cell refinement: SAINT (Bruker, 2010
); 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 (Farrugia, 1997
) and Mercury (Macrae,et al., 2006
); software used to prepare material for publication: SHELXL97 and PLATON (Spek, 2009
).
Supporting information
The compound was obtained commercially (Aldrich). Crystals suitable for the X-ray diffraction study were taken directly from the provided product.
Carbon-bound H-atoms were placed in calculated positions (C—H 0.95 Å for aromatic C atoms and C—H 0.99 Å for aliphatic C atoms) and were included in the refinement in the riding model approximation, with U(H) set to 1.2Ueq(C).
Data collection: APEX2 (Bruker, 2010); cell refinement: SAINT (Bruker, 2010); data reduction: SAINT (Bruker, 2010); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: ORTEP-3 (Farrugia, 1997) and Mercury (Macrae, et al., 2006); software used to prepare material for publication: SHELXL97 (Sheldrick, 2008) and PLATON (Spek, 2009).
Crystal data top C9H8O2 | F(000) = 312 |
Mr = 148.15 | Dx = 1.367 Mg m−3 |
Monoclinic, P21/c | Melting point = 308–311 K |
Hall symbol: -P 2ybc | Mo Kα radiation, λ = 0.71073 Å |
a = 7.5538 (4) Å | Cell parameters from 4401 reflections |
b = 8.0896 (4) Å | θ = 3.0–28.3° |
c = 13.0410 (6) Å | µ = 0.10 mm−1 |
β = 115.364 (3)° | T = 200 K |
V = 720.08 (6) Å3 | Block, colourless |
Z = 4 | 0.48 × 0.41 × 0.29 mm |
Data collection top Bruker APEXII CCD diffractometer | 1578 reflections with I > 2σ(I) |
Radiation source: fine-focus sealed tube | Rint = 0.041 |
Graphite monochromator | θmax = 28.3°, θmin = 3.5° |
ϕ and ω scans | h = −9→10 |
6367 measured reflections | k = −10→10 |
1774 independent reflections | l = −17→14 |
Refinement top 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)] = 0.037 | Hydrogen site location: inferred from neighbouring sites |
wR(F2) = 0.107 | H-atom parameters constrained |
S = 1.05 | w = 1/[σ2(Fo2) + (0.0588P)2 + 0.1339P] where P = (Fo2 + 2Fc2)/3 |
1774 reflections | (Δ/σ)max < 0.001 |
100 parameters | Δρmax = 0.29 e Å−3 |
0 restraints | Δρmin = −0.19 e Å−3 |
Crystal data top C9H8O2 | V = 720.08 (6) Å3 |
Mr = 148.15 | Z = 4 |
Monoclinic, P21/c | Mo Kα radiation |
a = 7.5538 (4) Å | µ = 0.10 mm−1 |
b = 8.0896 (4) Å | T = 200 K |
c = 13.0410 (6) Å | 0.48 × 0.41 × 0.29 mm |
β = 115.364 (3)° | |
Data collection top Bruker APEXII CCD diffractometer | 1578 reflections with I > 2σ(I) |
6367 measured reflections | Rint = 0.041 |
1774 independent reflections | |
Refinement top R[F2 > 2σ(F2)] = 0.037 | 0 restraints |
wR(F2) = 0.107 | H-atom parameters constrained |
S = 1.05 | Δρmax = 0.29 e Å−3 |
1774 reflections | Δρmin = −0.19 e Å−3 |
100 parameters | |
Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top | x | y | z | Uiso*/Ueq | |
O1 | 0.32152 (11) | 0.53935 (9) | 0.22765 (6) | 0.0337 (2) | |
O2 | 0.15764 (13) | 0.19047 (10) | 0.39707 (7) | 0.0434 (2) | |
C1 | 0.20014 (15) | 0.40212 (13) | 0.16627 (8) | 0.0327 (2) | |
H11 | 0.2296 | 0.3735 | 0.1014 | 0.039* | |
H12 | 0.0606 | 0.4348 | 0.1357 | 0.039* | |
C2 | 0.23447 (15) | 0.25263 (12) | 0.24191 (8) | 0.0307 (2) | |
H21 | 0.1432 | 0.1632 | 0.1991 | 0.037* | |
H22 | 0.3699 | 0.2120 | 0.2654 | 0.037* | |
C3 | 0.20392 (13) | 0.29406 (11) | 0.34541 (8) | 0.0262 (2) | |
C4 | 0.23848 (12) | 0.46883 (11) | 0.38176 (7) | 0.0232 (2) | |
C5 | 0.29805 (12) | 0.58227 (11) | 0.32203 (8) | 0.0255 (2) | |
C6 | 0.33856 (14) | 0.74544 (12) | 0.35963 (9) | 0.0349 (2) | |
H6 | 0.3802 | 0.8228 | 0.3197 | 0.042* | |
C7 | 0.31759 (15) | 0.79357 (13) | 0.45538 (10) | 0.0400 (3) | |
H7 | 0.3450 | 0.9047 | 0.4807 | 0.048* | |
C8 | 0.25740 (16) | 0.68291 (14) | 0.51532 (9) | 0.0389 (3) | |
H8 | 0.2424 | 0.7180 | 0.5807 | 0.047* | |
C9 | 0.21953 (14) | 0.52099 (13) | 0.47876 (8) | 0.0310 (2) | |
H9 | 0.1801 | 0.4441 | 0.5200 | 0.037* | |
Atomic displacement parameters (Å2) top | U11 | U22 | U33 | U12 | U13 | U23 |
O1 | 0.0403 (4) | 0.0338 (4) | 0.0332 (4) | −0.0066 (3) | 0.0217 (3) | 0.0014 (3) |
O2 | 0.0608 (5) | 0.0309 (4) | 0.0420 (4) | −0.0108 (3) | 0.0254 (4) | 0.0046 (3) |
C1 | 0.0385 (5) | 0.0353 (5) | 0.0253 (4) | −0.0009 (4) | 0.0146 (4) | −0.0024 (4) |
C2 | 0.0348 (5) | 0.0262 (4) | 0.0318 (5) | −0.0008 (4) | 0.0147 (4) | −0.0051 (4) |
C3 | 0.0263 (4) | 0.0239 (4) | 0.0267 (4) | −0.0010 (3) | 0.0098 (3) | 0.0018 (3) |
C4 | 0.0221 (4) | 0.0233 (4) | 0.0231 (4) | 0.0013 (3) | 0.0086 (3) | 0.0007 (3) |
C5 | 0.0234 (4) | 0.0240 (4) | 0.0279 (4) | −0.0001 (3) | 0.0098 (3) | 0.0012 (3) |
C6 | 0.0318 (5) | 0.0236 (5) | 0.0446 (6) | −0.0032 (4) | 0.0117 (4) | 0.0013 (4) |
C7 | 0.0329 (5) | 0.0275 (5) | 0.0474 (6) | 0.0022 (4) | 0.0057 (4) | −0.0114 (4) |
C8 | 0.0374 (5) | 0.0423 (6) | 0.0314 (5) | 0.0087 (4) | 0.0095 (4) | −0.0107 (4) |
C9 | 0.0313 (5) | 0.0358 (5) | 0.0256 (4) | 0.0042 (4) | 0.0121 (4) | 0.0001 (4) |
Geometric parameters (Å, º) top O1—C5 | 1.3616 (11) | C4—C5 | 1.3970 (12) |
O1—C1 | 1.4439 (12) | C4—C9 | 1.3977 (13) |
O2—C3 | 1.2166 (12) | C5—C6 | 1.3957 (13) |
C1—C2 | 1.5112 (14) | C6—C7 | 1.3803 (16) |
C1—H11 | 0.9900 | C6—H6 | 0.9500 |
C1—H12 | 0.9900 | C7—C8 | 1.3870 (18) |
C2—C3 | 1.5013 (13) | C7—H7 | 0.9500 |
C2—H21 | 0.9900 | C8—C9 | 1.3813 (15) |
C2—H22 | 0.9900 | C8—H8 | 0.9500 |
C3—C4 | 1.4785 (12) | C9—H9 | 0.9500 |
| | | |
C5—O1—C1 | 113.55 (7) | C5—C4—C3 | 120.27 (8) |
O1—C1—C2 | 111.27 (8) | C9—C4—C3 | 120.43 (9) |
O1—C1—H11 | 109.4 | O1—C5—C6 | 117.70 (9) |
C2—C1—H11 | 109.4 | O1—C5—C4 | 122.30 (8) |
O1—C1—H12 | 109.4 | C6—C5—C4 | 119.99 (9) |
C2—C1—H12 | 109.4 | C7—C6—C5 | 119.45 (10) |
H11—C1—H12 | 108.0 | C7—C6—H6 | 120.3 |
C3—C2—C1 | 111.02 (8) | C5—C6—H6 | 120.3 |
C3—C2—H21 | 109.4 | C6—C7—C8 | 121.35 (9) |
C1—C2—H21 | 109.4 | C6—C7—H7 | 119.3 |
C3—C2—H22 | 109.4 | C8—C7—H7 | 119.3 |
C1—C2—H22 | 109.4 | C9—C8—C7 | 119.13 (10) |
H21—C2—H22 | 108.0 | C9—C8—H8 | 120.4 |
O2—C3—C4 | 122.29 (9) | C7—C8—H8 | 120.4 |
O2—C3—C2 | 122.37 (9) | C8—C9—C4 | 120.82 (10) |
C4—C3—C2 | 115.33 (8) | C8—C9—H9 | 119.6 |
C5—C4—C9 | 119.25 (9) | C4—C9—H9 | 119.6 |
| | | |
C5—O1—C1—C2 | −55.93 (11) | C3—C4—C5—O1 | 1.80 (13) |
O1—C1—C2—C3 | 55.36 (11) | C9—C4—C5—C6 | 0.23 (13) |
C1—C2—C3—O2 | 154.40 (10) | C3—C4—C5—C6 | −177.25 (8) |
C1—C2—C3—C4 | −26.96 (11) | O1—C5—C6—C7 | −179.64 (9) |
O2—C3—C4—C5 | 177.76 (9) | C4—C5—C6—C7 | −0.55 (14) |
C2—C3—C4—C5 | −0.88 (12) | C5—C6—C7—C8 | 0.14 (15) |
O2—C3—C4—C9 | 0.32 (14) | C6—C7—C8—C9 | 0.60 (16) |
C2—C3—C4—C9 | −178.33 (8) | C7—C8—C9—C4 | −0.93 (15) |
C1—O1—C5—C6 | −153.72 (9) | C5—C4—C9—C8 | 0.52 (14) |
C1—O1—C5—C4 | 27.22 (12) | C3—C4—C9—C8 | 177.99 (8) |
C9—C4—C5—O1 | 179.27 (8) | | |
Hydrogen-bond geometry (Å, º) top D—H···A | D—H | H···A | D···A | D—H···A |
C1—H11···O2i | 0.99 | 2.53 | 3.4674 (13) | 157 |
C1—H12···O2ii | 0.99 | 2.56 | 3.3934 (15) | 141 |
Symmetry codes: (i) x, −y+1/2, z−1/2; (ii) −x, y+1/2, −z+1/2. |
Experimental details
Crystal data |
Chemical formula | C9H8O2 |
Mr | 148.15 |
Crystal system, space group | Monoclinic, P21/c |
Temperature (K) | 200 |
a, b, c (Å) | 7.5538 (4), 8.0896 (4), 13.0410 (6) |
β (°) | 115.364 (3) |
V (Å3) | 720.08 (6) |
Z | 4 |
Radiation type | Mo Kα |
µ (mm−1) | 0.10 |
Crystal size (mm) | 0.48 × 0.41 × 0.29 |
|
Data collection |
Diffractometer | Bruker APEXII CCD diffractometer |
Absorption correction | – |
No. of measured, independent and observed [I > 2σ(I)] reflections | 6367, 1774, 1578 |
Rint | 0.041 |
(sin θ/λ)max (Å−1) | 0.667 |
|
Refinement |
R[F2 > 2σ(F2)], wR(F2), S | 0.037, 0.107, 1.05 |
No. of reflections | 1774 |
No. of parameters | 100 |
H-atom treatment | H-atom parameters constrained |
Δρmax, Δρmin (e Å−3) | 0.29, −0.19 |
Hydrogen-bond geometry (Å, º) top D—H···A | D—H | H···A | D···A | D—H···A |
C1—H11···O2i | 0.99 | 2.53 | 3.4674 (13) | 157 |
C1—H12···O2ii | 0.99 | 2.56 | 3.3934 (15) | 141 |
Symmetry codes: (i) x, −y+1/2, z−1/2; (ii) −x, y+1/2, −z+1/2. |
Acknowledgements
The authors thank Mr Raynard Fourie for helpful discussions.
References
Bernstein, J., Davis, R. E., Shimoni, L. & Chang, N.-L. (1995). Angew. Chem. Int. Ed. Engl. 34, 1555–1573. CrossRef CAS Web of Science Google Scholar
Bruker (2010). APEX2 and SAINT Bruker AXS Inc., Madison, Wisconsin, USA. Google Scholar
Cremer, D. & Pople, J. A. (1975). J. Am. Chem. Soc. 97, 1354–1358. CrossRef CAS Web of Science Google Scholar
Etter, M. C., MacDonald, J. C. & Bernstein, J. (1990). Acta Cryst. B46, 256–262. CrossRef CAS Web of Science IUCr Journals Google Scholar
Farrugia, L. J. (1997). J. Appl. Cryst. 30, 565. CrossRef IUCr Journals Google Scholar
Macrae, C. F., Edgington, P. R., McCabe, P., Pidcock, E., Shields, G. P., Taylor, R., Towler, M. & van de Streek, J. (2006). J. Appl. Cryst. 39, 453–457. Web of Science CrossRef CAS IUCr Journals Google Scholar
Sheldrick, G. M. (2008). Acta Cryst. A64, 112–122. Web of Science CrossRef CAS IUCr Journals Google Scholar
Spek, A. L. (2009). Acta Cryst. D65, 148–155. Web of Science CrossRef CAS IUCr Journals Google Scholar
Stewart, K. R., Levine, S. G. & McPhail, A. T. (1984). J. Organomet. Chem. 263, 45–53. CrossRef CAS Google Scholar
This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
 | CRYSTALLOGRAPHIC COMMUNICATIONS |
ISSN: 2056-9890
Open

access
In general, saturated, six-membered carbocycles and heterocycles adopt energetically favourable chair- or boat-conformations in solution and in the solid state although a variety of other conformations such as half-chair- or twist-forms are available. The annulation of aromatic rings can influence the conformation of such ring-systems and "freeze" one of the less common conformations. In our continued interest in effects of substituents and annulation of differently-substituted aromatic systems on the conformation of six-, seven- and eight-membered ring systems, we determined the crystal structure of the title compound to enable comparative studies. As of today, only one structural analysis of a chromium(0)-compound featuring the title compound as a ligand is apparent in the literature (Stewart et al. 1984).
The heterocyclic six-membered ring adopts an E2 conformation with carbon atom C1 acting as the envelope-atom. The latter one is displaced by 0.337 (1) Å from the least-squares plane defined by the atoms of the heterocycle. The least-squares planes defined by the carbon atoms of the phenyl ring as well as the skeletal atoms of the heterocycle intersect at an angle of 7.73 (6)°.
In the crystal structure, C–H···O contacts whose ranges fall by about 0.2 Å below the sum of van-der-Waals radii of the atoms participating are observed. These include both H atoms of the methylene group in ortho-position to the intracyclic O atom as donor atoms and exclusively the O atom of the carbonyl group as acceptor (Fig. 2). In total, the molecules are connected to double layers perpendicular to the crystallographic a axis. In terms of graph-set analysis (Etter et al., 1990; Bernstein et al., 1995) the descriptor for these contacts on the unitary level is C(5)C(5). The shortest Cg···Cg-distance for two π-systems was measured at 3.7699 (6) Å.
The packing of the title compound is shown in Figure 3.