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The structure determination of caesium oxalate monohydrate using single-crystal X-ray diffraction, powder neutron diffraction data and a combination of both has been undertaken. Results show that even for hydrogen-containing materials data collected rapidly on a high-flux neutron diffractometer improve the refinement such that accurate positional and thermal displacement parameters can be extracted for all atom types. This contrasts with structural models extracted from either data set alone that demonstrate the inherent limitations of the individual diffraction methods. The rapidity with which useful neutron diffraction data has been collected from hydrogen-containing compounds, 10 min in this study, indicates that the technique should be widely applicable allowing the facile and accurate extraction of hydrogen positions for many compounds.
Supporting information
CCDC references: 650633; 650634; 650635; 650636
Data collection: COLLECT (Hooft, R.W.W., 1998) for 06mtw0002. Cell refinement: DENZO (Otwinowski & Minor, 1997) & COLLECT (Hooft, R.W.W., 1998) for 06mtw0002. Data reduction: DENZO (Otwinowski & Minor, 1997) & COLLECT (Hooft, R.W.W., 1998) for 06mtw0002. Program(s) used to solve structure: SHELXS97 (Sheldrick, 1997) for 06mtw0002. Program(s) used to refine structure: SHELXL97 (Sheldrick, 1997) for 06mtw0002; GSAS for CSOXNEUT10MINS_publ, CSSXDRT_publ. Molecular graphics: CAMERON (Watkin, et al., 1993) for 06mtw0002. Software used to prepare material for publication: WinGX (Farrugia, 1998) for 06mtw0002.
Crystal data top
C2H2Cs2O5 | F(000) = 656 |
Mr = 371.86 | Dx = 3.416 Mg m−3 |
Monoclinic, C2/c | Mo Kα radiation, λ = 0.71073 Å |
a = 10.0748 (5) Å | Cell parameters from 869 reflections |
b = 6.6473 (3) Å | θ = 1.0–27.5° |
c = 11.2997 (6) Å | µ = 10.04 mm−1 |
β = 107.189 (3)° | T = 289 K |
V = 722.94 (6) Å3 | Block, colourless |
Z = 4 | 0.2 × 0.11 × 0.07 mm |
Data collection top
Bruker-Nonius CCD camera on κ-goniostat diffractometer | 809 independent reflections |
Radiation source: Bruker Nonius FR591 Rotating Anode | 700 reflections with I > 2σ(I) |
Graphite monochromator | Rint = 0.067 |
Detector resolution: 9.091 pixels mm-1 | θmax = 27.3°, θmin = 3.7° |
ϕ & ω scans to fill the asymmetric unit | h = −12→12 |
Absorption correction: multi-scan SADABS V2.10 (Sheldrick, G.M., 2003) | k = −8→8 |
Tmin = 0.206, Tmax = 0.501 | l = −14→14 |
4032 measured reflections | |
Refinement top
Refinement on F2 | Secondary atom site location: difference Fourier map |
Least-squares matrix: full | Hydrogen site location: inferred from neighbouring sites |
R[F2 > 2σ(F2)] = 0.025 | All H-atom parameters refined |
wR(F2) = 0.054 | w = 1/[σ2(Fo2) + (0.0142P)2 + 1.827P] where P = (Fo2 + 2Fc2)/3 |
S = 1.17 | (Δ/σ)max = 0.001 |
809 reflections | Δρmax = 0.96 e Å−3 |
47 parameters | Δρmin = −0.90 e Å−3 |
0 restraints | Extinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4 |
Primary atom site location: structure-invariant direct methods | Extinction coefficient: 0.0034 (2) |
Crystal data top
C2H2Cs2O5 | V = 722.94 (6) Å3 |
Mr = 371.86 | Z = 4 |
Monoclinic, C2/c | Mo Kα radiation |
a = 10.0748 (5) Å | µ = 10.04 mm−1 |
b = 6.6473 (3) Å | T = 289 K |
c = 11.2997 (6) Å | 0.2 × 0.11 × 0.07 mm |
β = 107.189 (3)° | |
Data collection top
Bruker-Nonius CCD camera on κ-goniostat diffractometer | 809 independent reflections |
Absorption correction: multi-scan SADABS V2.10 (Sheldrick, G.M., 2003) | 700 reflections with I > 2σ(I) |
Tmin = 0.206, Tmax = 0.501 | Rint = 0.067 |
4032 measured reflections | |
Refinement top
R[F2 > 2σ(F2)] = 0.025 | 0 restraints |
wR(F2) = 0.054 | All H-atom parameters refined |
S = 1.17 | Δρmax = 0.96 e Å−3 |
809 reflections | Δρmin = −0.90 e Å−3 |
47 parameters | |
Special details top
Experimental. SADABS was used to perform the Absorption correction Parameter refinement on 3332 reflections reduced R(int) from 0.1285 to 0.0275 Ratio of minimum to maximum apparent transmission: 0.544250 The given Tmin and Tmax were generated using the SHELX SIZE command A thin coating of glue was applied to the crystal to reduce its deterioration during data collection |
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. |
Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top | x | y | z | Uiso*/Ueq | |
Cs1 | 0.87244 (3) | 0.30550 (4) | 0.37345 (2) | 0.02732 (16) | |
O1 | 0.6398 (3) | 0.2709 (6) | 0.0934 (3) | 0.0335 (8) | |
O2 | 0.8242 (3) | 0.4550 (5) | 0.0942 (3) | 0.0303 (7) | |
O3 | 1.0000 | −0.0535 (9) | 0.2500 | 0.074 (2) | |
H1 | 0.968 (6) | −0.128 (9) | 0.291 (5) | 0.050 (18)* | |
C1 | 0.7393 (5) | 0.3148 (6) | 0.0543 (4) | 0.0224 (9) | |
Atomic displacement parameters (Å2) top | U11 | U22 | U33 | U12 | U13 | U23 |
Cs1 | 0.02621 (19) | 0.0275 (2) | 0.0283 (2) | −0.00157 (11) | 0.00824 (13) | −0.00304 (12) |
O1 | 0.0317 (18) | 0.0366 (18) | 0.037 (2) | −0.0071 (15) | 0.0183 (16) | −0.0071 (16) |
O2 | 0.0331 (16) | 0.0273 (16) | 0.0308 (17) | −0.0049 (14) | 0.0102 (14) | −0.0048 (13) |
O3 | 0.124 (6) | 0.029 (3) | 0.110 (6) | 0.000 | 0.095 (5) | 0.000 |
C1 | 0.024 (2) | 0.021 (2) | 0.022 (2) | 0.0055 (16) | 0.0067 (18) | 0.0041 (16) |
Geometric parameters (Å, º) top
Cs1—O2i | 3.116 (3) | O1—Cs1iii | 3.579 (4) |
Cs1—O1ii | 3.120 (3) | O2—C1 | 1.256 (5) |
Cs1—O1iii | 3.123 (4) | O2—Cs1viii | 3.116 (3) |
Cs1—O2iv | 3.131 (3) | O2—Cs1iv | 3.131 (3) |
Cs1—O2v | 3.149 (3) | O2—Cs1iii | 3.149 (3) |
Cs1—O2 | 3.205 (3) | O3—Cs1iv | 3.217 (4) |
Cs1—O3 | 3.217 (4) | O3—Cs1ix | 3.7162 (15) |
Cs1—O1 | 3.343 (3) | O3—Cs1v | 3.7162 (15) |
Cs1—C1 | 3.456 (4) | O3—H1 | 0.81 (6) |
Cs1—O1v | 3.579 (4) | C1—C1x | 1.566 (9) |
Cs1—C1v | 3.622 (4) | C1—Cs1iii | 3.622 (4) |
Cs1—O3vi | 3.7162 (15) | C1—Cs1v | 3.733 (4) |
Cs1—H1 | 3.26 (6) | C1—Cs1viii | 3.738 (4) |
O1—C1 | 1.244 (6) | C1—Cs1vii | 3.743 (4) |
O1—Cs1vii | 3.120 (3) | C1—Cs1iv | 3.753 (4) |
O1—Cs1v | 3.123 (4) | | |
| | | |
O2i—Cs1—O1ii | 75.37 (9) | O3—Cs1—H1 | 14.3 (10) |
O2i—Cs1—O1iii | 51.46 (9) | O1—Cs1—H1 | 81.6 (11) |
O1ii—Cs1—O1iii | 96.95 (8) | C1—Cs1—H1 | 77.0 (10) |
O2i—Cs1—O2iv | 97.01 (7) | O1v—Cs1—H1 | 34.4 (10) |
O1ii—Cs1—O2iv | 51.36 (8) | C1v—Cs1—H1 | 53.6 (10) |
O1iii—Cs1—O2iv | 75.12 (8) | O3vi—Cs1—H1 | 117.9 (11) |
O2i—Cs1—O2v | 91.88 (8) | C1—O1—Cs1vii | 110.6 (3) |
O1ii—Cs1—O2v | 102.23 (9) | C1—O1—Cs1v | 109.8 (3) |
O1iii—Cs1—O2v | 132.11 (8) | Cs1vii—O1—Cs1v | 83.05 (8) |
O2iv—Cs1—O2v | 147.93 (11) | C1—O1—Cs1 | 84.7 (3) |
O2i—Cs1—O2 | 127.99 (4) | Cs1vii—O1—Cs1 | 164.58 (13) |
O1ii—Cs1—O2 | 132.74 (9) | Cs1v—O1—Cs1 | 89.78 (9) |
O1iii—Cs1—O2 | 79.10 (8) | C1—O1—Cs1iii | 82.0 (2) |
O2iv—Cs1—O2 | 82.83 (9) | Cs1vii—O1—Cs1iii | 101.34 (10) |
O2v—Cs1—O2 | 115.23 (6) | Cs1v—O1—Cs1iii | 165.28 (13) |
O2i—Cs1—O3 | 154.52 (7) | Cs1—O1—Cs1iii | 82.46 (7) |
O1ii—Cs1—O3 | 82.14 (7) | C1—O2—Cs1viii | 110.1 (3) |
O1iii—Cs1—O3 | 145.25 (10) | C1—O2—Cs1iv | 110.1 (2) |
O2iv—Cs1—O3 | 77.58 (8) | Cs1viii—O2—Cs1iv | 82.99 (7) |
O2v—Cs1—O3 | 81.21 (9) | C1—O2—Cs1iii | 101.9 (2) |
O2—Cs1—O3 | 76.53 (7) | Cs1viii—O2—Cs1iii | 88.12 (8) |
O2i—Cs1—O1 | 124.15 (8) | Cs1iv—O2—Cs1iii | 147.93 (11) |
O1ii—Cs1—O1 | 160.33 (9) | C1—O2—Cs1 | 90.7 (2) |
O1iii—Cs1—O1 | 98.06 (8) | Cs1viii—O2—Cs1 | 158.81 (11) |
O2iv—Cs1—O1 | 121.30 (8) | Cs1iv—O2—Cs1 | 85.87 (7) |
O2v—Cs1—O1 | 76.69 (8) | Cs1iii—O2—Cs1 | 91.88 (8) |
O2—Cs1—O1 | 39.62 (8) | Cs1iv—O3—Cs1 | 84.25 (14) |
O3—Cs1—O1 | 78.27 (6) | Cs1iv—O3—Cs1ix | 82.04 (3) |
O2i—Cs1—C1 | 136.21 (9) | Cs1—O3—Cs1ix | 120.85 (8) |
O1ii—Cs1—C1 | 144.25 (10) | Cs1iv—O3—Cs1v | 120.85 (8) |
O1iii—Cs1—C1 | 95.19 (9) | Cs1—O3—Cs1v | 82.04 (3) |
O2iv—Cs1—C1 | 100.40 (9) | Cs1ix—O3—Cs1v | 150.78 (18) |
O2v—Cs1—C1 | 94.06 (9) | Cs1iv—O3—H1 | 169 (4) |
O2—Cs1—C1 | 21.30 (8) | Cs1—O3—H1 | 86 (4) |
O3—Cs1—C1 | 69.05 (7) | Cs1ix—O3—H1 | 99 (4) |
O1—Cs1—C1 | 20.99 (9) | Cs1v—O3—H1 | 62 (4) |
O2i—Cs1—O1v | 113.90 (8) | O1—C1—O2 | 125.6 (4) |
O1ii—Cs1—O1v | 78.66 (10) | O1—C1—C1x | 117.5 (5) |
O1iii—Cs1—O1v | 165.28 (13) | O2—C1—C1x | 116.9 (5) |
O2iv—Cs1—O1v | 111.45 (8) | O1—C1—Cs1 | 74.4 (3) |
O2v—Cs1—O1v | 37.91 (8) | O2—C1—Cs1 | 68.0 (2) |
O2—Cs1—O1v | 114.27 (8) | C1x—C1—Cs1 | 135.0 (3) |
O3—Cs1—O1v | 48.66 (9) | O1—C1—Cs1iii | 78.1 (2) |
O1—Cs1—O1v | 89.69 (9) | O2—C1—Cs1iii | 58.3 (2) |
C1—Cs1—O1v | 96.43 (9) | C1x—C1—Cs1iii | 142.7 (3) |
O2i—Cs1—C1v | 98.47 (9) | Cs1—C1—Cs1iii | 80.30 (9) |
O1ii—Cs1—C1v | 85.79 (10) | O1—C1—Cs1v | 51.9 (2) |
O1iii—Cs1—C1v | 147.07 (10) | O2—C1—Cs1v | 144.3 (3) |
O2iv—Cs1—C1v | 128.12 (9) | C1x—C1—Cs1v | 78.1 (3) |
O2v—Cs1—C1v | 19.83 (9) | Cs1—C1—Cs1v | 78.75 (8) |
O2—Cs1—C1v | 122.30 (9) | Cs1iii—C1—Cs1v | 129.32 (13) |
O3—Cs1—C1v | 67.68 (10) | O1—C1—Cs1viii | 144.1 (3) |
O1—Cs1—C1v | 88.49 (9) | O2—C1—Cs1viii | 51.6 (2) |
C1—Cs1—C1v | 101.56 (10) | C1x—C1—Cs1viii | 77.7 (3) |
O1v—Cs1—C1v | 19.88 (9) | Cs1—C1—Cs1viii | 119.42 (12) |
O2i—Cs1—O3vi | 78.03 (7) | Cs1iii—C1—Cs1viii | 72.58 (7) |
O1ii—Cs1—O3vi | 151.44 (7) | Cs1v—C1—Cs1viii | 155.80 (13) |
O1iii—Cs1—O3vi | 73.97 (10) | O1—C1—Cs1vii | 51.3 (2) |
O2iv—Cs1—O3vi | 143.73 (10) | O2—C1—Cs1vii | 144.4 (3) |
O2v—Cs1—O3vi | 68.28 (10) | C1x—C1—Cs1vii | 78.3 (3) |
O2—Cs1—O3vi | 73.13 (6) | Cs1—C1—Cs1vii | 125.59 (13) |
O3—Cs1—O3vi | 120.85 (8) | Cs1iii—C1—Cs1vii | 89.59 (9) |
O1—Cs1—O3vi | 46.71 (7) | Cs1v—C1—Cs1vii | 67.22 (7) |
C1—Cs1—O3vi | 64.31 (7) | Cs1viii—C1—Cs1vii | 107.56 (10) |
O1v—Cs1—O3vi | 103.15 (10) | O1—C1—Cs1iv | 144.8 (3) |
C1v—Cs1—O3vi | 88.01 (11) | O2—C1—Cs1iv | 51.6 (2) |
O2i—Cs1—H1 | 144.0 (10) | C1x—C1—Cs1iv | 77.6 (3) |
O1ii—Cs1—H1 | 79.9 (11) | Cs1—C1—Cs1iv | 73.42 (8) |
O1iii—Cs1—H1 | 159.2 (10) | Cs1iii—C1—Cs1iv | 109.83 (11) |
O2iv—Cs1—H1 | 87.3 (10) | Cs1v—C1—Cs1iv | 107.45 (10) |
O2v—Cs1—H1 | 68.2 (10) | Cs1viii—C1—Cs1iv | 67.08 (7) |
O2—Cs1—H1 | 88.0 (10) | Cs1vii—C1—Cs1iv | 155.89 (13) |
Symmetry codes: (i) x, −y+1, z+1/2; (ii) x+1/2, −y+1/2, z+1/2; (iii) −x+3/2, y+1/2, −z+1/2; (iv) −x+2, y, −z+1/2; (v) −x+3/2, y−1/2, −z+1/2; (vi) x−1/2, y+1/2, z; (vii) x−1/2, −y+1/2, z−1/2; (viii) x, −y+1, z−1/2; (ix) x+1/2, y−1/2, z; (x) −x+3/2, −y+1/2, −z. |
Hydrogen-bond geometry (Å, º) top
D—H···A | D—H | H···A | D···A | D—H···A |
O3—H1···O1v | 0.81 (6) | 2.05 (5) | 2.819 (4) | 161 (6) |
Symmetry code: (v) −x+3/2, y−1/2, −z+1/2. |
(CSOXJOINTRT_phase_1)
top
Crystal data top
C2H2Cs2O5 | β = 107.191 (4)° |
Mr = 371.84 | V = 727.98 (9) Å3 |
Monoclinic, C2/c | Z = 4 |
a = 10.1125 (6) Å | ? radiation, λ = 1.36 Å |
b = 6.6535 (4) Å | ?, ? × ? × ? mm |
c = 11.3255 (7) Å | |
Data collection top
2θmin = −0.400°, 2θmax = 154.400°, 2θstep = 0.1° | |
Refinement top
Least-squares matrix: full | 1549 data points |
Rp = 0.010 | Profile function: CW Profile function number 2 with 18 terms
Profile coefficients for Simpson's rule integration of pseudovoigt function
C.J. Howard (1982). J. Appl. Cryst.,15,615-620.
P. Thompson, D.E. Cox & J.B. Hastings (1987). J. Appl. Cryst.,20,79-83.
#1(GU) = 222.093 #2(GV) = -514.662 #3(GW) = 359.730
#4(LX) = 5.847 #5(LY) = 7.392 #6(trns) = 0.000
#7(asym) = 15.2584 #8(shft) = 0.0000 #9(GP) = 0.000
#10(stec)= 0.00 #11(ptec)= 0.00 #12(sfec)= 0.00
#13(L11) = 0.000 #14(L22) = 0.000 #15(L33) = 0.000
#16(L12) = 0.000 #17(L13) = 0.000 #18(L23) = 0.000
Peak tails are ignored where the intensity is below 0.0100 times the peak
Aniso. broadening axis 0.0 0.0 1.0 |
Rwp = 0.013 | 73 parameters |
Rexp = 0.009 | 0 restraints |
R(F2) = 0.06304 | (Δ/σ)max = 0.02 |
χ2 = 2.789 | Background function: GSAS Background function number 2 with 10 terms.
Cosine Fourier series
1: 10179.3 2: 5267.35 3: -576.316 4: 1077.15
5: -753.819 6: 677.534 7: -428.178 8: 169.871
9: -77.3448 10: 39.2779 |
Crystal data top
C2H2Cs2O5 | β = 107.191 (4)° |
Mr = 371.84 | V = 727.98 (9) Å3 |
Monoclinic, C2/c | Z = 4 |
a = 10.1125 (6) Å | ? radiation, λ = 1.36 Å |
b = 6.6535 (4) Å | ?, ? × ? × ? mm |
c = 11.3255 (7) Å | |
Data collection top
2θmin = −0.400°, 2θmax = 154.400°, 2θstep = 0.1° | |
Refinement top
Rp = 0.010 | χ2 = 2.789 |
Rwp = 0.013 | 1549 data points |
Rexp = 0.009 | 73 parameters |
R(F2) = 0.06304 | 0 restraints |
Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top | x | y | z | Uiso*/Ueq | |
O1 | 0.0 | −0.4456 (5) | 0.25 | 0.06563 | |
O2 | 0.8606 (2) | −0.2708 (3) | 0.40669 (19) | 0.03119 | |
O3 | 0.67580 (19) | −0.4548 (3) | 0.40541 (17) | 0.02845 | |
CS4 | 0.872442 (19 | 0.194463 (26 | 0.373455 (17 | 0.0259 | |
C5 | 0.7606 (3) | −0.3148 (3) | 0.4454 (2) | 0.01929 | |
H6 | 0.9550 (9) | −0.3635 (11) | 0.2968 (7) | 0.04935 | |
Atomic displacement parameters (Å2) top | U11 | U22 | U33 | U12 | U13 | U23 |
O1 | 0.109 (3) | 0.0288 (19) | 0.095 (3) | 0.0 | 0.086 (3) | 0.0 |
O2 | 0.0322 (13) | 0.0373 (12) | 0.0311 (13) | −0.0061 (10) | 0.0203 (11) | −0.0075 (10) |
O3 | 0.0342 (11) | 0.0270 (11) | 0.0261 (12) | −0.0049 (9) | 0.0121 (10) | −0.0063 (9) |
CS4 | 0.02731 (16 | 0.02778 (17 | 0.02345 (17 | 0.00181 (8) | 0.00882 (12 | 0.00307 (9) |
C5 | 0.0224 (13) | 0.0196 (14) | 0.0161 (13) | 0.0048 (11) | 0.0061 (11) | 0.0034 (10) |
H6 | 0.052 (6) | 0.044 (5) | 0.065 (7) | 0.004 (4) | 0.036 (6) | −0.007 (5) |
Geometric parameters (Å, º) top
O1—O2i | 2.823 (2) | CS4—O1xiii | 3.7278 (8) |
O1—O2ii | 2.823 (2) | CS4—O2 | 3.125 (2) |
O1—O3iii | 3.985 (3) | CS4—O2xx | 3.583 (2) |
O1—O3iv | 3.883 (3) | CS4—O2xv | 3.1260 (19) |
O1—O3v | 3.985 (3) | CS4—O2xxi | 3.355 (2) |
O1—O3vi | 3.883 (3) | CS4—O3xx | 3.1557 (18) |
O1—CS4vii | 3.228 (2) | CS4—O3xiii | 3.1418 (18) |
O1—CS4viii | 3.228 (2) | CS4—O3xxi | 3.2075 (19) |
O1—CS4iii | 3.7278 (8) | CS4—O3xii | 3.1267 (18) |
O1—CS4v | 3.7278 (8) | CS4—C5 | 3.738 (2) |
O1—C5i | 3.832 (2) | CS4—C5xx | 3.626 (2) |
O1—C5ii | 3.832 (2) | CS4—C5xv | 3.758 (3) |
O1—C5ix | 3.920 (3) | CS4—C5xiii | 3.766 (3) |
O1—C5x | 3.920 (3) | CS4—C5xxi | 3.462 (2) |
O1—C5iii | 3.798 (3) | CS4—C5xii | 3.746 (2) |
O1—C5v | 3.798 (3) | CS4—H6 | 3.957 (7) |
O1—H6i | 0.964 (7) | CS4—H6xx | 3.245 (7) |
O1—H6ii | 0.964 (7) | CS4—H6xv | 3.795 (8) |
O2—O1xi | 2.823 (2) | CS4—H6xxi | 3.325 (9) |
O2—O2xii | 3.514 (4) | C5—O1xi | 3.832 (2) |
O2—O3 | 2.231 (3) | C5—O1ix | 3.920 (3) |
O2—O3xiii | 3.822 (3) | C5—O1xiii | 3.798 (3) |
O2—O3xii | 2.717 (3) | C5—O2 | 1.251 (3) |
O2—CS4xiv | 3.583 (2) | C5—O2xii | 2.418 (3) |
O2—CS4 | 3.125 (2) | C5—O3 | 1.256 (3) |
O2—CS4xv | 3.1260 (19) | C5—O3xii | 2.417 (3) |
O2—CS4xvi | 3.355 (2) | C5—CS4xiv | 3.626 (2) |
O2—C5 | 1.251 (3) | C5—CS4 | 3.738 (2) |
O2—C5xii | 2.418 (3) | C5—CS4xv | 3.758 (3) |
O2—H6 | 1.881 (7) | C5—CS4iii | 3.766 (3) |
O2—H6xvii | 3.422 (7) | C5—CS4xvi | 3.462 (2) |
O3—O1xviii | 3.883 (3) | C5—CS4xii | 3.746 (2) |
O3—O1xiii | 3.985 (3) | C5—C5xii | 1.573 (4) |
O3—O2 | 2.231 (3) | C5—H6 | 2.959 (8) |
O3—O2iii | 3.822 (3) | H6—O1xi | 0.964 (7) |
O3—O2xii | 2.717 (3) | H6—O2 | 1.881 (7) |
O3—O3xii | 3.516 (4) | H6—O2xvii | 3.422 (7) |
O3—CS4xiv | 3.1557 (18) | H6—O3 | 3.450 (8) |
O3—CS4iii | 3.1418 (18) | H6—O3xiii | 3.503 (8) |
O3—CS4xvi | 3.2075 (19) | H6—O3xxi | 3.550 (8) |
O3—CS4xii | 3.1267 (18) | H6—CS4xiv | 3.245 (7) |
O3—C5 | 1.256 (3) | H6—CS4 | 3.957 (7) |
O3—C5xii | 2.417 (3) | H6—CS4xv | 3.795 (8) |
O3—H6 | 3.450 (8) | H6—CS4xvi | 3.325 (9) |
O3—H6iii | 3.503 (8) | H6—C5 | 2.959 (8) |
O3—H6xvi | 3.550 (8) | H6—H6xvii | 1.589 (14) |
CS4—O1xix | 3.228 (2) | | |
| | | |
O2i—O1—O2ii | 131.33 (14) | O1xix—CS4—C5xxi | 69.09 (4) |
O2i—O1—O3iii | 108.24 (6) | O1xix—CS4—C5xxiv | 172.62 (4) |
O2i—O1—O3iv | 67.37 (7) | O1xix—CS4—H6 | 117.63 (11) |
O2i—O1—O3v | 112.80 (6) | O1xix—CS4—H6xx | 17.14 (12) |
O2i—O1—O3vi | 72.04 (7) | O1xix—CS4—H6xv | 94.59 (11) |
O2i—O1—CS4vii | 72.28 (5) | O1xix—CS4—H6xxi | 106.96 (12) |
O2i—O1—CS4viii | 156.32 (10) | O1xiii—CS4—O2 | 74.16 (6) |
O2i—O1—CS4iii | 107.34 (6) | O1xiii—CS4—O2xx | 103.08 (6) |
O2i—O1—CS4v | 59.73 (4) | O1xiii—CS4—O2xv | 151.44 (4) |
O2i—O1—C5i | 12.89 (5) | O1xiii—CS4—O2xxi | 46.60 (4) |
O2i—O1—C5ii | 141.97 (11) | O1xiii—CS4—O3xx | 68.09 (5) |
O2i—O1—C5ix | 84.70 (5) | O1xiii—CS4—O3xiii | 143.91 (5) |
O2i—O1—C5xxii | 115.31 (6) | O1xiii—CS4—O3xxi | 73.17 (4) |
O2i—O1—C5iii | 106.83 (6) | O1xiii—CS4—O3xxiii | 78.07 (4) |
O2i—O1—C5v | 104.09 (5) | O1xiii—CS4—C5 | 61.16 (5) |
O2i—O1—H6i | 10.3 (4) | O1xiii—CS4—C5xx | 87.80 (6) |
O2i—O1—H6ii | 121.1 (5) | O1xiii—CS4—C5xv | 169.52 (4) |
O2ii—O1—O3iii | 112.80 (6) | O1xiii—CS4—C5xiii | 161.79 (5) |
O2ii—O1—O3iv | 72.04 (7) | O1xiii—CS4—C5xxi | 64.30 (4) |
O2ii—O1—O3v | 108.24 (6) | O1xiii—CS4—C5xxiv | 63.27 (5) |
O2ii—O1—O3vi | 67.37 (7) | O1xiii—CS4—H6 | 86.46 (14) |
O2ii—O1—CS4vii | 156.32 (10) | O1xiii—CS4—H6xx | 115.95 (17) |
O2ii—O1—CS4viii | 72.28 (5) | O1xiii—CS4—H6xv | 124.26 (12) |
O2ii—O1—CS4iii | 59.73 (4) | O1xiii—CS4—H6xxi | 14.30 (11) |
O2ii—O1—CS4v | 107.34 (6) | O2—CS4—O2xx | 165.30 (7) |
O2ii—O1—C5i | 141.97 (11) | O2—CS4—O2xv | 96.88 (5) |
O2ii—O1—C5ii | 12.89 (5) | O2—CS4—O2xxi | 98.10 (5) |
O2ii—O1—C5ix | 115.31 (6) | O2—CS4—O3xx | 132.15 (5) |
O2ii—O1—C5xxii | 84.70 (5) | O2—CS4—O3xiii | 75.16 (5) |
O2ii—O1—C5iii | 104.09 (5) | O2—CS4—O3xxi | 79.16 (5) |
O2ii—O1—C5v | 106.83 (6) | O2—CS4—O3xxiii | 51.51 (5) |
O2ii—O1—H6i | 121.1 (5) | O2—CS4—C5 | 18.36 (5) |
O2ii—O1—H6ii | 10.3 (4) | O2—CS4—C5xx | 147.06 (6) |
O3iii—O1—O3iv | 115.47 (5) | O2—CS4—C5xv | 102.25 (5) |
O3iii—O1—O3v | 63.59 (7) | O2—CS4—C5xiii | 91.84 (5) |
O3iii—O1—O3vi | 179.06 (5) | O2—CS4—C5xxi | 95.22 (5) |
O3iii—O1—CS4vii | 50.31 (5) | O2—CS4—C5xxiv | 39.94 (5) |
O3iii—O1—CS4viii | 51.51 (5) | O2—CS4—H6 | 27.77 (11) |
O3iii—O1—CS4iii | 77.15 (4) | O2—CS4—H6xx | 162.20 (13) |
O3iii—O1—CS4v | 130.36 (7) | O2—CS4—H6xv | 101.41 (11) |
O3iii—O1—C5i | 102.33 (5) | O2—CS4—H6xxi | 83.57 (13) |
O3iii—O1—C5ii | 99.94 (5) | O2xx—CS4—O2xv | 78.62 (5) |
O3iii—O1—C5ix | 35.60 (5) | O2xx—CS4—O2xxi | 89.72 (5) |
O3iii—O1—C5xxii | 97.01 (8) | O2xx—CS4—O3xx | 37.99 (5) |
O3iii—O1—C5iii | 18.36 (4) | O2xx—CS4—O3xiii | 111.31 (5) |
O3iii—O1—C5v | 81.36 (7) | O2xx—CS4—O3xxi | 114.25 (5) |
O3iii—O1—H6i | 117.4 (5) | O2xx—CS4—O3xxiii | 113.85 (5) |
O3iii—O1—H6ii | 120.2 (5) | O2xx—CS4—C5 | 148.82 (5) |
O3iv—O1—O3v | 179.06 (5) | O2xx—CS4—C5xx | 19.97 (5) |
O3iv—O1—O3vi | 65.47 (7) | O2xx—CS4—C5xv | 77.84 (4) |
O3iv—O1—CS4vii | 128.00 (3) | O2xx—CS4—C5xiii | 93.36 (5) |
O3iv—O1—CS4viii | 129.22 (3) | O2xx—CS4—C5xxi | 96.46 (5) |
O3iv—O1—CS4iii | 48.94 (4) | O2xx—CS4—C5xxiv | 125.70 (5) |
O3iv—O1—CS4v | 103.66 (7) | O2xx—CS4—H6 | 165.98 (12) |
O3iv—O1—C5i | 80.21 (6) | O2xx—CS4—H6xx | 31.50 (12) |
O3iv—O1—C5ii | 77.76 (6) | O2xx—CS4—H6xv | 67.81 (12) |
O3iv—O1—C5ix | 82.07 (5) | O2xx—CS4—H6xxi | 96.76 (13) |
O3iv—O1—C5xxii | 145.27 (8) | O2xv—CS4—O2xxi | 160.40 (6) |
O3iv—O1—C5iii | 97.70 (5) | O2xv—CS4—O3xx | 102.33 (5) |
O3iv—O1—C5v | 162.54 (7) | O2xv—CS4—O3xiii | 51.37 (5) |
O3iv—O1—H6i | 60.1 (5) | O2xv—CS4—O3xxi | 132.76 (5) |
O3iv—O1—H6ii | 62.9 (5) | O2xv—CS4—O3xxiii | 75.36 (5) |
O3v—O1—O3vi | 115.47 (5) | O2xv—CS4—C5 | 102.68 (6) |
O3v—O1—CS4vii | 51.51 (5) | O2xv—CS4—C5xx | 85.87 (5) |
O3v—O1—CS4viii | 50.31 (5) | O2xv—CS4—C5xv | 18.12 (5) |
O3v—O1—CS4iii | 130.36 (7) | O2xv—CS4—C5xiii | 39.73 (5) |
O3v—O1—CS4v | 77.15 (4) | O2xv—CS4—C5xxi | 144.26 (6) |
O3v—O1—C5i | 99.94 (5) | O2xv—CS4—C5xxiv | 92.22 (5) |
O3v—O1—C5ii | 102.33 (5) | O2xv—CS4—H6 | 97.98 (14) |
O3v—O1—C5ix | 97.01 (8) | O2xv—CS4—H6xx | 80.55 (17) |
O3v—O1—C5xxii | 35.60 (5) | O2xv—CS4—H6xv | 29.58 (13) |
O3v—O1—C5iii | 81.36 (7) | O2xv—CS4—H6xxi | 163.39 (13) |
O3v—O1—C5v | 18.36 (4) | O2xxi—CS4—O3xx | 76.54 (5) |
O3v—O1—H6i | 120.2 (5) | O2xxi—CS4—O3xiii | 121.32 (5) |
O3v—O1—H6ii | 117.4 (5) | O2xxi—CS4—O3xxi | 39.66 (5) |
O3vi—O1—CS4vii | 129.22 (3) | O2xxi—CS4—O3xxiii | 124.08 (5) |
O3vi—O1—CS4viii | 128.00 (3) | O2xxi—CS4—C5 | 95.46 (5) |
O3vi—O1—CS4iii | 103.66 (7) | O2xxi—CS4—C5xx | 88.39 (5) |
O3vi—O1—CS4v | 48.94 (4) | O2xxi—CS4—C5xv | 143.71 (5) |
O3vi—O1—C5i | 77.76 (6) | O2xxi—CS4—C5xiii | 126.99 (5) |
O3vi—O1—C5ii | 80.21 (6) | O2xxi—CS4—C5xxi | 21.07 (5) |
O3vi—O1—C5ix | 145.27 (8) | O2xxi—CS4—C5xxiv | 107.38 (5) |
O3vi—O1—C5xxii | 82.07 (5) | O2xxi—CS4—H6 | 89.54 (13) |
O3vi—O1—C5iii | 162.54 (7) | O2xxi—CS4—H6xx | 81.32 (17) |
O3vi—O1—C5v | 97.70 (5) | O2xxi—CS4—H6xv | 154.21 (12) |
O3vi—O1—H6i | 62.9 (5) | O2xxi—CS4—H6xxi | 32.72 (12) |
O3vi—O1—H6ii | 60.1 (5) | O3xx—CS4—O3xiii | 147.93 (7) |
CS4vii—O1—CS4viii | 84.22 (7) | O3xx—CS4—O3xxi | 115.10 (4) |
CS4vii—O1—CS4iii | 120.79 (4) | O3xx—CS4—O3xxiii | 91.87 (5) |
CS4vii—O1—CS4v | 81.904 (18) | O3xx—CS4—C5 | 113.82 (5) |
CS4vii—O1—C5i | 61.10 (3) | O3xx—CS4—C5xx | 19.82 (5) |
CS4vii—O1—C5ii | 145.11 (8) | O3xx—CS4—C5xv | 109.51 (5) |
CS4vii—O1—C5ix | 62.56 (5) | O3xx—CS4—C5xiii | 129.73 (5) |
CS4vii—O1—C5xxii | 81.81 (6) | O3xx—CS4—C5xxi | 93.97 (5) |
CS4vii—O1—C5iii | 64.22 (6) | O3xx—CS4—C5xxiv | 95.48 (5) |
CS4vii—O1—C5v | 58.36 (5) | O3xx—CS4—H6 | 154.15 (14) |
CS4vii—O1—H6i | 82.4 (4) | O3xx—CS4—H6xx | 65.22 (14) |
CS4vii—O1—H6ii | 166.6 (5) | O3xx—CS4—H6xv | 77.88 (12) |
CS4viii—O1—CS4iii | 81.904 (18) | O3xx—CS4—H6xxi | 66.36 (13) |
CS4viii—O1—CS4v | 120.79 (4) | O3xiii—CS4—O3xxi | 82.81 (5) |
CS4viii—O1—C5i | 145.11 (8) | O3xiii—CS4—O3xxiii | 97.16 (4) |
CS4viii—O1—C5ii | 61.10 (3) | O3xiii—CS4—C5 | 92.10 (5) |
CS4viii—O1—C5ix | 81.81 (6) | O3xiii—CS4—C5xx | 128.14 (6) |
CS4viii—O1—C5xxii | 62.56 (5) | O3xiii—CS4—C5xv | 39.77 (5) |
CS4viii—O1—C5iii | 58.36 (5) | O3xiii—CS4—C5xiii | 18.23 (5) |
CS4viii—O1—C5v | 64.22 (6) | O3xiii—CS4—C5xxi | 100.35 (6) |
CS4viii—O1—H6i | 166.6 (5) | O3xiii—CS4—C5xxiv | 102.72 (5) |
CS4viii—O1—H6ii | 82.4 (4) | O3xiii—CS4—H6 | 57.78 (14) |
CS4iii—O1—CS4v | 151.04 (9) | O3xiii—CS4—H6xx | 89.87 (16) |
CS4iii—O1—C5i | 117.87 (5) | O3xiii—CS4—H6xv | 80.26 (13) |
CS4iii—O1—C5ii | 54.48 (4) | O3xiii—CS4—H6xxi | 143.24 (13) |
CS4iii—O1—C5ix | 58.58 (4) | O3xxi—CS4—O3xxiii | 128.06 (2) |
CS4iii—O1—C5xxii | 136.43 (4) | O3xxi—CS4—C5 | 88.07 (5) |
CS4iii—O1—C5iii | 59.55 (4) | O3xxi—CS4—C5xx | 122.22 (5) |
CS4iii—O1—C5v | 146.12 (7) | O3xxi—CS4—C5xv | 116.21 (5) |
CS4iii—O1—H6i | 103.9 (6) | O3xxi—CS4—C5xiii | 93.06 (5) |
CS4iii—O1—H6ii | 58.4 (6) | O3xxi—CS4—C5xxi | 21.27 (5) |
CS4v—O1—C5i | 54.48 (4) | O3xxi—CS4—C5xxiv | 110.85 (5) |
CS4v—O1—C5ii | 117.87 (5) | O3xxi—CS4—H6 | 58.28 (12) |
CS4v—O1—C5ix | 136.43 (4) | O3xxi—CS4—H6xx | 89.63 (13) |
CS4v—O1—C5xxii | 58.58 (4) | O3xxi—CS4—H6xv | 162.27 (13) |
CS4v—O1—C5iii | 146.12 (7) | O3xxi—CS4—H6xxi | 63.73 (13) |
CS4v—O1—C5v | 59.55 (4) | O3xxiv—CS4—C5 | 40.00 (5) |
CS4v—O1—H6i | 58.4 (6) | O3xxiv—CS4—C5xx | 98.42 (5) |
CS4v—O1—H6ii | 103.9 (6) | O3xxiv—CS4—C5xv | 91.96 (5) |
C5i—O1—C5ii | 153.74 (11) | O3xxiv—CS4—C5xiii | 102.57 (5) |
C5i—O1—C5ix | 85.16 (5) | O3xxiv—CS4—C5xxi | 136.22 (5) |
C5i—O1—C5xxii | 105.61 (6) | O3xxiv—CS4—C5xxiv | 18.37 (5) |
C5i—O1—C5iii | 104.97 (6) | O3xxiv—CS4—H6 | 77.88 (11) |
C5i—O1—C5v | 92.03 (4) | O3xxiv—CS4—H6xx | 142.18 (13) |
C5i—O1—H6i | 21.9 (5) | O3xxiv—CS4—H6xv | 59.89 (12) |
C5i—O1—H6ii | 132.1 (5) | O3xxiv—CS4—H6xxi | 92.35 (12) |
C5ii—O1—C5ix | 105.61 (6) | C5—CS4—C5xx | 129.24 (7) |
C5ii—O1—C5xxii | 85.16 (5) | C5—CS4—C5xv | 112.83 (4) |
C5ii—O1—C5iii | 92.03 (4) | C5—CS4—C5xiii | 107.53 (5) |
C5ii—O1—C5v | 104.97 (6) | C5—CS4—C5xxi | 99.32 (5) |
C5ii—O1—H6i | 132.1 (5) | C5—CS4—C5xxiv | 24.27 (7) |
C5ii—O1—H6ii | 21.9 (5) | C5—CS4—H6 | 45.12 (12) |
C5ix—O1—C5xxii | 132.02 (11) | C5—CS4—H6xx | 176.76 (16) |
C5ix—O1—C5iii | 23.45 (7) | C5—CS4—H6xv | 97.76 (12) |
C5ix—O1—C5v | 113.05 (7) | C5—CS4—H6xxi | 73.00 (13) |
C5ix—O1—H6i | 90.9 (5) | C5xx—CS4—C5xv | 90.51 (5) |
C5ix—O1—H6ii | 116.4 (6) | C5xx—CS4—C5xiii | 109.92 (6) |
C5xxii—O1—C5iii | 113.05 (7) | C5xx—CS4—C5xxi | 101.52 (5) |
C5xxii—O1—C5v | 23.45 (7) | C5xx—CS4—C5xxiv | 107.32 (4) |
C5xxii—O1—H6i | 116.4 (6) | C5xx—CS4—H6 | 173.72 (12) |
C5xxii—O1—H6ii | 90.9 (5) | C5xx—CS4—H6xx | 50.65 (13) |
C5iii—O1—C5v | 99.41 (10) | C5xx—CS4—H6xv | 66.13 (12) |
C5iii—O1—H6i | 113.9 (5) | C5xx—CS4—H6xxi | 84.92 (13) |
C5iii—O1—H6ii | 109.1 (5) | C5xv—CS4—C5xiii | 24.14 (6) |
C5v—O1—H6i | 109.1 (5) | C5xv—CS4—C5xxi | 126.14 (7) |
C5v—O1—H6ii | 113.9 (5) | C5xv—CS4—C5xxiv | 107.53 (6) |
H6i—O1—H6ii | 110.9 (9) | C5xv—CS4—H6 | 94.67 (14) |
O1xi—O2—O2xii | 159.36 (12) | C5xv—CS4—H6xx | 70.26 (17) |
O1xi—O2—O3 | 110.07 (10) | C5xv—CS4—H6xv | 46.13 (13) |
O1xi—O2—O3xiii | 69.66 (7) | C5xv—CS4—H6xxi | 174.13 (12) |
O1xi—O2—O3xxiii | 158.23 (9) | C5xiii—CS4—C5xxi | 106.51 (5) |
O1xi—O2—CS4xiv | 59.10 (7) | C5xiii—CS4—C5xxiv | 112.98 (4) |
O1xi—O2—CS4 | 106.77 (9) | C5xiii—CS4—H6 | 76.01 (13) |
O1xi—O2—CS4xv | 95.38 (6) | C5xiii—CS4—H6xx | 74.86 (16) |
O1xi—O2—CS4xvi | 73.67 (5) | C5xiii—CS4—H6xv | 69.22 (13) |
O1xi—O2—C5 | 136.90 (17) | C5xiii—CS4—H6xxi | 156.79 (13) |
O1xi—O2—C5xxiv | 169.18 (12) | C5xxi—CS4—C5xxiv | 117.88 (5) |
O1xi—O2—H6 | 5.3 (2) | C5xxi—CS4—H6 | 78.26 (13) |
O1xi—O2—H6xvii | 13.96 (12) | C5xxi—CS4—H6xx | 77.79 (15) |
O2xxiii—O2—O3 | 50.64 (7) | C5xxi—CS4—H6xv | 162.88 (11) |
O2xxiii—O2—O3xiii | 129.70 (9) | C5xxi—CS4—H6xxi | 51.66 (13) |
O2xxiii—O2—O3xxiii | 39.40 (6) | C5xxiv—CS4—H6 | 67.70 (10) |
O2xxiv—O2—CS4xiv | 100.87 (8) | C5xxiv—CS4—H6xx | 156.95 (12) |
O2xxiv—O2—CS4 | 92.75 (8) | C5xxiv—CS4—H6xv | 78.23 (12) |
O2xxiv—O2—CS4xv | 93.53 (8) | C5xxiv—CS4—H6xxi | 77.43 (12) |
O2xxiv—O2—CS4xvi | 100.37 (8) | H6—CS4—H6xx | 134.8 (2) |
O2xxiv—O2—C5 | 23.44 (12) | H6—CS4—H6xv | 115.36 (11) |
O2xxiv—O2—C5xxiv | 11.88 (6) | H6—CS4—H6xxi | 90.1 (2) |
O2xxiv—O2—H6 | 164.0 (3) | H6xx—CS4—H6xv | 85.11 (19) |
O2xxiv—O2—H6xvii | 171.90 (17) | H6xx—CS4—H6xxi | 103.93 (19) |
O3—O2—O3xiii | 179.4294 (11) | H6xv—CS4—H6xxi | 134.0 (2) |
O3—O2—O3xxiii | 90.04 (10) | O1xi—C5—O1ix | 94.84 (5) |
O3—O2—CS4xiv | 60.56 (7) | O1xi—C5—O1xiii | 104.97 (6) |
O3—O2—CS4 | 127.19 (10) | O1xi—C5—O2 | 30.22 (13) |
O3—O2—CS4xv | 128.24 (10) | O1xi—C5—O2xii | 171.79 (10) |
O3—O2—CS4xvi | 66.61 (7) | O1xi—C5—O3 | 95.95 (14) |
O3—O2—C5 | 27.20 (12) | O1xi—C5—O3xxiii | 119.27 (10) |
O3—O2—C5xxiv | 62.52 (10) | O1xi—C5—CS4xiv | 51.20 (5) |
O3—O2—H6 | 113.8 (3) | O1xi—C5—CS4 | 78.25 (7) |
O3—O2—H6xvii | 121.28 (16) | O1xi—C5—CS4xv | 70.91 (5) |
O3xiii—O2—O3xxiii | 90.30 (7) | O1xi—C5—CS4iii | 132.44 (6) |
O3xiii—O2—CS4xiv | 119.49 (6) | O1xi—C5—CS4xvi | 61.22 (4) |
O3xiii—O2—CS4 | 52.62 (4) | O1xi—C5—CS4xxiv | 123.61 (7) |
O3xiii—O2—CS4xv | 52.33 (4) | O1xi—C5—C5xxiv | 146.5 (2) |
O3xiii—O2—CS4xvi | 112.82 (6) | O1xi—C5—H6 | 6.98 (14) |
O3xiii—O2—C5 | 153.14 (17) | O1ix—C5—O1xiii | 156.55 (7) |
O3xiii—O2—C5xxiv | 117.83 (9) | O1ix—C5—O2 | 92.88 (16) |
O3xiii—O2—H6 | 65.9 (3) | O1ix—C5—O2xii | 78.10 (7) |
O3xiii—O2—H6xvii | 58.37 (14) | O1ix—C5—O3 | 101.20 (15) |
O3xxiv—O2—CS4xiv | 130.34 (8) | O1ix—C5—O3xxiii | 73.68 (8) |
O3xxiv—O2—CS4 | 64.27 (6) | O1ix—C5—CS4xiv | 71.28 (6) |
O3xxiv—O2—CS4xv | 64.62 (6) | O1ix—C5—CS4 | 114.35 (7) |
O3xxiv—O2—CS4xvi | 123.97 (8) | O1ix—C5—CS4xv | 49.66 (4) |
O3xxiv—O2—C5 | 62.84 (15) | O1ix—C5—CS4iii | 122.03 (6) |
O3xxiv—O2—C5xxiv | 27.53 (6) | O1ix—C5—CS4xvi | 150.90 (8) |
O3xxiv—O2—H6 | 155.7 (3) | O1ix—C5—CS4xxiv | 58.14 (4) |
O3xxiv—O2—H6xvii | 148.67 (16) | O1ix—C5—C5xxiv | 73.93 (16) |
CS4xiv—O2—CS4 | 165.30 (7) | O1ix—C5—H6 | 96.57 (18) |
CS4xiv—O2—CS4xv | 101.38 (5) | O1xiii—C5—O2 | 97.95 (15) |
CS4xiv—O2—CS4xvi | 82.43 (4) | O1xiii—C5—O2xii | 81.08 (7) |
CS4xiv—O2—C5 | 81.96 (14) | O1xiii—C5—O3 | 89.28 (15) |
CS4xiv—O2—C5xxiv | 110.26 (9) | O1xiii—C5—O3xxiii | 85.58 (7) |
CS4xiv—O2—H6 | 64.3 (2) | O1xiii—C5—CS4xiv | 131.31 (7) |
CS4xiv—O2—H6xvii | 73.06 (12) | O1xiii—C5—CS4 | 59.29 (4) |
CS4—O2—CS4xv | 83.12 (5) | O1xiii—C5—CS4xv | 125.68 (7) |
CS4—O2—CS4xvi | 89.74 (5) | O1xiii—C5—CS4iii | 50.52 (4) |
CS4—O2—C5 | 109.74 (15) | O1xiii—C5—CS4xvi | 52.55 (4) |
CS4—O2—C5xxiv | 83.98 (8) | O1xiii—C5—CS4xxiv | 117.11 (7) |
CS4—O2—H6 | 101.5 (2) | O1xiii—C5—C5xxiv | 82.62 (16) |
CS4—O2—H6xvii | 92.84 (13) | O1xiii—C5—H6 | 101.68 (17) |
CS4xv—O2—CS4xvi | 164.67 (8) | O2—C5—O2xii | 144.69 (17) |
CS4xv—O2—C5 | 110.88 (17) | O2—C5—O3 | 125.7 (2) |
CS4xv—O2—C5xxiv | 84.55 (7) | O2—C5—O3xxiii | 89.74 (17) |
CS4xv—O2—H6 | 95.3 (3) | O2—C5—CS4xiv | 78.07 (14) |
CS4xv—O2—H6xvii | 92.96 (17) | O2—C5—CS4 | 51.91 (13) |
CS4xvi—O2—C5 | 84.28 (15) | O2—C5—CS4xv | 51.00 (14) |
CS4xvi—O2—C5xxiv | 108.25 (9) | O2—C5—CS4iii | 145.07 (17) |
CS4xvi—O2—H6 | 72.8 (3) | O2—C5—CS4xvi | 74.65 (15) |
CS4xvi—O2—H6xvii | 73.80 (16) | O2—C5—CS4xxiv | 143.95 (16) |
C5—O2—C5xxiv | 35.31 (17) | O2—C5—C5xxiv | 117.3 (3) |
C5—O2—H6 | 140.9 (3) | O2—C5—H6 | 23.6 (2) |
C5—O2—H6xvii | 148.5 (2) | O2xxiii—C5—O3 | 89.60 (16) |
C5xxiv—O2—H6 | 174.4 (2) | O2xxiii—C5—O3xxiii | 54.94 (8) |
C5xxiv—O2—H6xvii | 176.16 (16) | O2xxiv—C5—CS4xiv | 128.58 (10) |
H6—O2—H6xvii | 8.81 (15) | O2xxiv—C5—CS4 | 100.68 (8) |
O1xviii—O3—O1xiii | 115.47 (5) | O2xxiv—C5—CS4xv | 101.10 (8) |
O1xviii—O3—O2 | 137.30 (9) | O2xxiv—C5—CS4iii | 55.73 (7) |
O1xviii—O3—O2iii | 42.97 (4) | O2xxiv—C5—CS4xvi | 126.75 (9) |
O1xviii—O3—O2xii | 132.06 (7) | O2xxiv—C5—CS4xxiv | 56.08 (7) |
O1xviii—O3—O3xxiii | 169.65 (9) | O2xxiv—C5—C5xxiv | 27.36 (14) |
O1xviii—O3—CS4xiv | 62.97 (4) | O2xxiv—C5—H6 | 167.9 (2) |
O1xviii—O3—CS4iii | 85.01 (5) | O3—C5—O3xxiii | 144.54 (17) |
O1xviii—O3—CS4xvi | 84.15 (4) | O3—C5—CS4xiv | 58.43 (12) |
O1xviii—O3—CS4xxiv | 77.00 (4) | O3—C5—CS4 | 144.27 (16) |
O1xviii—O3—C5 | 163.61 (15) | O3—C5—CS4xv | 144.44 (16) |
O1xviii—O3—C5xxiv | 158.85 (9) | O3—C5—CS4iii | 51.51 (12) |
O1xviii—O3—H6 | 107.44 (13) | O3—C5—CS4xvi | 67.89 (13) |
O1xviii—O3—H6iii | 13.81 (11) | O3—C5—CS4xxiv | 51.71 (13) |
O1xviii—O3—H6xvi | 14.00 (11) | O3—C5—C5xxiv | 117.0 (3) |
O1xiii—O3—O2 | 78.47 (8) | O3—C5—H6 | 102.2 (2) |
O1xiii—O3—O2iii | 101.87 (6) | O3xxiv—C5—CS4xiv | 142.08 (10) |
O1xiii—O3—O2xii | 74.35 (6) | O3xxiv—C5—CS4 | 56.25 (6) |
O1xiii—O3—O3xxiii | 70.42 (6) | O3xxiv—C5—CS4xv | 56.24 (7) |
O1xiii—O3—CS4xiv | 142.37 (6) | O3xxiv—C5—CS4iii | 100.62 (8) |
O1xiii—O3—CS4iii | 52.24 (3) | O3xxiv—C5—CS4xvi | 131.07 (9) |
O1xiii—O3—CS4xvi | 51.97 (3) | O3xxiv—C5—CS4xxiv | 100.49 (8) |
O1xiii—O3—CS4xxiv | 129.23 (5) | O3xxiv—C5—C5xxiv | 27.58 (13) |
O1xiii—O3—C5 | 72.36 (14) | O3xxiv—C5—H6 | 113.21 (19) |
O1xiii—O3—C5xxiv | 70.73 (7) | CS4xiv—C5—CS4 | 129.24 (7) |
O1xiii—O3—H6 | 89.90 (14) | CS4xiv—C5—CS4xv | 89.49 (5) |
O1xiii—O3—H6iii | 110.48 (15) | CS4xiv—C5—CS4iii | 109.92 (6) |
O1xiii—O3—H6xvi | 109.49 (14) | CS4xiv—C5—CS4xvi | 80.36 (5) |
O2—O3—O2iii | 179.4287 (11) | CS4xiv—C5—CS4xxiv | 72.68 (4) |
O2—O3—O2xii | 89.96 (10) | CS4xiv—C5—C5xxiv | 142.58 (19) |
O2—O3—O3xxiii | 50.59 (7) | CS4xiv—C5—H6 | 57.98 (14) |
O2—O3—CS4xiv | 81.44 (8) | CS4—C5—CS4xv | 67.17 (4) |
O2—O3—CS4iii | 127.97 (9) | CS4—C5—CS4iii | 107.53 (5) |
O2—O3—CS4xvi | 73.73 (7) | CS4—C5—CS4xvi | 78.80 (5) |
O2—O3—CS4xxiv | 127.12 (9) | CS4—C5—CS4xxiv | 155.73 (7) |
O2—O3—C5 | 27.09 (13) | CS4—C5—C5xxiv | 78.13 (16) |
O2—O3—C5xxiv | 62.54 (10) | CS4—C5—H6 | 71.36 (15) |
O2—O3—H6 | 29.93 (14) | CS4xv—C5—CS4iii | 155.86 (6) |
O2—O3—H6iii | 150.95 (14) | CS4xv—C5—CS4xvi | 125.60 (7) |
O2—O3—H6xvi | 125.18 (15) | CS4xv—C5—CS4xxiv | 107.53 (6) |
O2iii—O3—O2xii | 89.70 (7) | CS4xv—C5—C5xxiv | 78.20 (18) |
O2iii—O3—O3xxiii | 129.07 (8) | CS4xv—C5—H6 | 67.59 (19) |
O2iii—O3—CS4xiv | 98.51 (6) | CS4iii—C5—CS4xvi | 73.46 (5) |
O2iii—O3—CS4iii | 52.22 (4) | CS4iii—C5—CS4xxiv | 67.02 (4) |
O2iii—O3—CS4xvi | 106.84 (6) | CS4iii—C5—C5xxiv | 77.66 (18) |
O2iii—O3—CS4xxiv | 52.31 (4) | CS4iii—C5—H6 | 134.74 (19) |
O2iii—O3—C5 | 152.57 (16) | CS4xvi—C5—CS4xxiv | 119.46 (7) |
O2iii—O3—C5xxiv | 117.11 (9) | CS4xvi—C5—C5xxiv | 135.17 (19) |
O2iii—O3—H6 | 150.37 (14) | CS4xvi—C5—H6 | 61.79 (18) |
O2iii—O3—H6iii | 29.35 (12) | CS4xxiv—C5—C5xxiv | 77.60 (17) |
O2iii—O3—H6xvi | 55.17 (12) | CS4xxiv—C5—H6 | 130.10 (15) |
O2xxiii—O3—O3xxiii | 39.37 (6) | C5xxiv—C5—H6 | 140.7 (3) |
O2xxiv—O3—CS4xiv | 137.26 (8) | O1xi—H6—O2 | 164.5 (6) |
O2xxiv—O3—CS4iii | 64.01 (5) | O1xi—H6—O2xvii | 44.9 (4) |
O2xxiv—O3—CS4xvi | 125.73 (8) | O1xi—H6—O3 | 131.7 (6) |
O2xxiv—O3—CS4xxiv | 64.22 (6) | O1xi—H6—O3xiii | 106.1 (6) |
O2xxiv—O3—C5 | 62.87 (14) | O1xi—H6—O3xxi | 103.0 (5) |
O2xxiv—O3—C5xxiv | 27.41 (7) | O1xi—H6—CS4xiv | 80.4 (4) |
O2xxiv—O3—H6 | 119.78 (14) | O1xi—H6—CS4 | 144.8 (5) |
O2xxiv—O3—H6iii | 118.94 (13) | O1xi—H6—CS4xv | 123.7 (6) |
O2xxiv—O3—H6xvi | 144.87 (14) | O1xi—H6—CS4xvi | 107.3 (6) |
O3xxiv—O3—CS4xiv | 118.23 (8) | O1xi—H6—C5 | 151.1 (6) |
O3xxiv—O3—CS4iii | 92.96 (7) | O1xi—H6—H6xvii | 34.5 (4) |
O3xxiv—O3—CS4xvi | 105.87 (8) | O2—H6—O2xvii | 150.5 (3) |
O3xxiv—O3—CS4xxiv | 92.68 (7) | O2—H6—O3 | 36.26 (17) |
O3xxiv—O3—C5 | 23.50 (11) | O2—H6—O3xiii | 84.8 (3) |
O3xxiv—O3—C5xxiv | 11.96 (6) | O2—H6—O3xxi | 90.6 (3) |
O3xxiv—O3—H6 | 80.44 (14) | O2—H6—CS4xiv | 84.2 (3) |
O3xxiv—O3—H6iii | 158.19 (14) | O2—H6—CS4 | 50.70 (18) |
O3xxiv—O3—H6xvi | 175.76 (14) | O2—H6—CS4xv | 55.1 (2) |
CS4xiv—O3—CS4iii | 147.93 (7) | O2—H6—CS4xvi | 74.5 (3) |
CS4xiv—O3—CS4xvi | 91.92 (5) | O2—H6—C5 | 15.46 (13) |
CS4xiv—O3—CS4xxiv | 88.13 (5) | O2—H6—H6xvii | 160.7 (3) |
CS4xiv—O3—C5 | 101.75 (14) | O2xvii—H6—O3 | 159.7 (3) |
CS4xiv—O3—C5xxiv | 125.61 (9) | O2xvii—H6—O3xiii | 71.27 (16) |
CS4xiv—O3—H6 | 58.63 (12) | O2xvii—H6—O3xxi | 66.46 (14) |
CS4xiv—O3—H6iii | 75.14 (13) | O2xvii—H6—CS4xiv | 125.3 (2) |
CS4xiv—O3—H6xvi | 59.11 (15) | O2xvii—H6—CS4 | 99.84 (18) |
CS4iii—O3—CS4xvi | 85.96 (5) | O2xvii—H6—CS4xv | 115.2 (3) |
CS4iii—O3—CS4xxiv | 82.84 (4) | O2xvii—H6—CS4xvi | 103.6 (2) |
CS4iii—O3—C5 | 110.26 (15) | O2xvii—H6—C5 | 161.7 (3) |
CS4iii—O3—C5xxiv | 83.99 (7) | O2xvii—H6—H6xvii | 10.45 (14) |
CS4iii—O3—H6 | 141.01 (15) | O3—H6—O3xiii | 121.0 (2) |
CS4iii—O3—H6iii | 72.87 (13) | O3—H6—O3xxi | 100.2 (2) |
CS4iii—O3—H6xvi | 90.17 (15) | O3—H6—CS4xiv | 56.14 (13) |
CS4xvi—O3—CS4xxiv | 158.79 (7) | O3—H6—CS4 | 80.74 (14) |
CS4xvi—O3—C5 | 90.84 (14) | O3—H6—CS4xv | 83.58 (15) |
CS4xvi—O3—C5xxiv | 112.96 (8) | O3—H6—CS4xvi | 56.48 (15) |
CS4xvi—O3—H6 | 59.79 (15) | O3—H6—C5 | 20.84 (8) |
CS4xvi—O3—H6iii | 89.94 (13) | O3—H6—H6xvii | 158.2 (7) |
CS4xvi—O3—H6xvi | 71.49 (12) | O3xiii—H6—O3xxi | 73.08 (15) |
CS4xxiv—O3—C5 | 109.92 (15) | O3xiii—H6—CS4xiv | 142.9 (3) |
CS4xxiv—O3—C5xxiv | 83.74 (7) | O3xiii—H6—CS4 | 49.35 (10) |
CS4xxiv—O3—H6 | 135.49 (16) | O3xiii—H6—CS4xv | 50.54 (12) |
CS4xxiv—O3—H6iii | 69.57 (13) | O3xiii—H6—CS4xvi | 122.4 (2) |
CS4xxiv—O3—H6xvi | 90.54 (11) | O3xiii—H6—C5 | 100.2 (2) |
C5—O3—C5xxiv | 35.46 (17) | O3xiii—H6—H6xvii | 78.6 (4) |
C5—O3—H6 | 56.97 (17) | O3xxi—H6—CS4xiv | 142.3 (3) |
C5—O3—H6iii | 176.8 (2) | O3xxi—H6—CS4 | 50.23 (10) |
C5—O3—H6xvi | 152.3 (2) | O3xxi—H6—CS4xv | 112.53 (19) |
C5xxiv—O3—H6 | 92.39 (15) | O3xxi—H6—CS4xvi | 54.53 (14) |
C5xxiv—O3—H6iii | 146.29 (15) | O3xxi—H6—C5 | 95.7 (2) |
C5xxiv—O3—H6xvi | 172.28 (14) | O3xxi—H6—H6xvii | 75.3 (4) |
H6—O3—H6iii | 121.0 (2) | CS4xiv—H6—CS4 | 134.8 (2) |
H6—O3—H6xvi | 95.33 (18) | CS4xiv—H6—CS4xv | 94.89 (19) |
H6iii—O3—H6xvi | 26.0 (2) | CS4xiv—H6—CS4xvi | 88.3 (2) |
O1xix—CS4—O1xiii | 120.79 (4) | CS4xiv—H6—C5 | 71.36 (16) |
O1xix—CS4—O2 | 145.23 (6) | CS4xiv—H6—H6xvii | 114.96 (12) |
O1xix—CS4—O2xx | 48.62 (5) | CS4—H6—CS4xv | 64.64 (11) |
O1xix—CS4—O2xv | 82.12 (4) | CS4—H6—CS4xvi | 77.29 (15) |
O1xix—CS4—O2xxi | 78.36 (4) | CS4—H6—C5 | 63.51 (13) |
O1xix—CS4—O3xx | 81.20 (5) | CS4—H6—H6xvii | 110.24 (10) |
O1xix—CS4—O3xiii | 77.45 (4) | CS4xv—H6—CS4xvi | 128.7 (2) |
O1xix—CS4—O3xxi | 76.53 (4) | CS4xv—H6—C5 | 66.28 (14) |
O1xix—CS4—O3xxiii | 154.46 (4) | CS4xv—H6—H6xvii | 118.0 (7) |
O1xix—CS4—C5 | 162.26 (5) | CS4xvi—H6—C5 | 66.55 (19) |
O1xix—CS4—C5xx | 67.70 (5) | CS4xvi—H6—H6xvii | 106.4 (7) |
O1xix—CS4—C5xv | 67.78 (4) | C5—H6—H6xvii | 171.0 (6) |
O1xix—CS4—C5xiii | 65.26 (4) | | |
Symmetry codes: (i) x−1, y, z; (ii) −x+1, y, −z+1/2; (iii) x−1/2, y−1/2, z; (iv) x−1/2, y+1/2, z; (v) −x+1/2, y−1/2, −z+1/2; (vi) −x+1/2, y+1/2, −z+1/2; (vii) x−1, y−1, z; (viii) −x+1, y−1, −z+1/2; (ix) −x+1, −y−1, −z+1; (x) x−1, −y−1, z−1/2; (xi) x+1, y, z; (xii) −x+1/2, −y−3/2, −z+1; (xiii) x+1/2, y+1/2, z; (xiv) x, y−1, z; (xv) −x+2, −y, −z+1; (xvi) −x+3/2, y−1/2, −z+1/2; (xvii) −x+2, y, −z+1/2; (xviii) x+1/2, y−1/2, z; (xix) x+1, y+1, z; (xx) x, y+1, z; (xxi) −x+3/2, y+1/2, −z+1/2; (xxii) x−1, −y−1, z+1/2; (xxiii) −x+1/2, −y−3/2, −z; (xxiv) −x+3/2, −y−1/2, −z+1. |
Experimental details
| (06mtw0002) | (CSOXJOINTRT_phase_1) |
Crystal data |
Chemical formula | C2H2Cs2O5 | C2H2Cs2O5 |
Mr | 371.86 | 371.84 |
Crystal system, space group | Monoclinic, C2/c | Monoclinic, C2/c |
Temperature (K) | 289 | ? |
a, b, c (Å) | 10.0748 (5), 6.6473 (3), 11.2997 (6) | 10.1125 (6), 6.6535 (4), 11.3255 (7) |
α, β, γ (°) | 90, 107.189 (3), 90 | 90, 107.191 (4), 90 |
V (Å3) | 722.94 (6) | 727.98 (9) |
Z | 4 | 4 |
Radiation type | Mo Kα | ?, λ = 1.36 Å |
µ (mm−1) | 10.04 | – |
Specimen shape, size (mm) | 0.2 × 0.11 × 0.07 | ?, ? × ? × ? |
|
Data collection |
Diffractometer | Bruker-Nonius CCD camera on κ-goniostat diffractometer | ? |
Specimen mounting | – | ? |
Data collection mode | – | ? |
Data collection method | ϕ & ω scans to fill the asymmetric unit | ? |
Absorption correction | Multi-scan SADABS V2.10 (Sheldrick, G.M., 2003) | – |
Tmin, Tmax | 0.206, 0.501 | – |
No. of measured, independent and observed [I > 2σ(I)] reflections | 4032, 809, 700 | – |
Rint | 0.067 | – |
θ values (°) | θmax = 27.3, θmin = 3.7 | 2θmin = −0.400 2θmax = 154.400 2θstep = 0.1 |
(sin θ/λ)max (Å−1) | 0.646 | – |
|
Refinement |
R factors and goodness of fit | R[F2 > 2σ(F2)] = 0.025, wR(F2) = 0.054, S = 1.17 | Rp = 0.010, Rwp = 0.013, Rexp = 0.009, R(F2) = 0.06304, χ2 = 2.789 |
No. of reflections/data points | 809 | 1549 |
No. of parameters | 47 | 73 |
H-atom treatment | All H-atom parameters refined | ? |
Δρmax, Δρmin (e Å−3) | 0.96, −0.90 | – |
Hydrogen-bond geometry (Å, º) for (06mtw0002) top
D—H···A | D—H | H···A | D···A | D—H···A |
O3—H1···O1i | 0.81 (6) | 2.05 (5) | 2.819 (4) | 161 (6) |
Symmetry code: (i) −x+3/2, y−1/2, −z+1/2. |
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