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The title compound, [Fe8(μ3-O)2(μ2-OH)12(C6H12N3)6]Br8·8H2O, which crystallizes as an octahydrate, has a different arrangement of cations, anions and water molecules from the known nonahydrate [Wieghardt, Pohl, Jibril & Huttner (1984). Angew. Chem. Int. Ed. Engl. 23, 77–78.]. In the present phase, the cluster is generated by inversion symmetry and the bromide ions display substantial positional disorder.
Supporting information
CCDC reference: 287559
Key indicators
- Single-crystal X-ray study
- T = 293 K
- Mean (C-C) = 0.012 Å
- H-atom completeness 87%
- Disorder in solvent or counterion
- R factor = 0.059
- wR factor = 0.209
- Data-to-parameter ratio = 28.0
checkCIF/PLATON results
No syntax errors found
Alert level A
PLAT306_ALERT_2_A Isolated Oxygen Atom (H-atoms Missing ?) ....... O1W
| Author Response: H-atoms for the solvent water molecules could not be located in the
Fourier differences map.
|
PLAT306_ALERT_2_A Isolated Oxygen Atom (H-atoms Missing ?) ....... O2W
| Author Response: H-atoms for the solvent water molecules could not be located in the
Fourier differences map.
|
PLAT306_ALERT_2_A Isolated Oxygen Atom (H-atoms Missing ?) ....... O3W
| Author Response: H-atoms for the solvent water molecules could not be located in the
Fourier differences map.
|
PLAT306_ALERT_2_A Isolated Oxygen Atom (H-atoms Missing ?) ....... O4W
| Author Response: H-atoms for the solvent water molecules could not be located in the
Fourier differences map.
|
PLAT431_ALERT_2_A Short Inter HL..A Contact Br3 .. Br4 .. 3.08 Ang.
| Author Response: As the sum of the occupancy factors of both atoms is 1, this short
distance can be explained by the disorder in the Br atom positions.
|
Alert level B
PLAT430_ALERT_2_B Short Inter D...A Contact O2W .. O4W .. 2.71 Ang.
PLAT431_ALERT_2_B Short Inter HL..A Contact Br2 .. O2W .. 2.96 Ang.
| Author Response: As the sum of the occupancy factors of both atoms is 1, this short
distance can be explained by the disorder in the Br atom positions.
|
Alert level C
ABSTM02_ALERT_3_C The ratio of expected to reported Tmax/Tmin(RR) is > 1.10
Tmin and Tmax reported: 0.142 0.241
Tmin and Tmax expected: 0.119 0.242
RR = 1.196
Please check that your absorption correction is appropriate.
PLAT041_ALERT_1_C Calc. and Rep. SumFormula Strings Differ .... ?
PLAT042_ALERT_1_C Calc. and Rep. MoietyFormula Strings Differ .... ?
PLAT060_ALERT_3_C Ratio Tmax/Tmin (Exp-to-Rep) (too) Large ....... 1.17
PLAT068_ALERT_1_C Reported F000 Differs from Calcd (or Missing)... ?
PLAT094_ALERT_2_C Ratio of Maximum / Minimum Residual Density .... 2.45
PLAT199_ALERT_1_C Check the Reported _cell_measurement_temperature 293 K
PLAT200_ALERT_1_C Check the Reported _diffrn_ambient_temperature . 293 K
PLAT222_ALERT_3_C Large Non-Solvent H Ueq(max)/Ueq(min) ... 3.41 Ratio
PLAT241_ALERT_2_C Check High Ueq as Compared to Neighbors for C23
PLAT241_ALERT_2_C Check High Ueq as Compared to Neighbors for C25
PLAT241_ALERT_2_C Check High Ueq as Compared to Neighbors for C26
PLAT241_ALERT_2_C Check High Ueq as Compared to Neighbors for C43
PLAT302_ALERT_4_C Anion/Solvent Disorder ......................... 31.00 Perc.
PLAT341_ALERT_3_C Low Bond Precision on C-C bonds (x 1000) Ang ... 12
PLAT416_ALERT_2_C Short Intra D-H..H-D H3 .. H41 .. 1.90 Ang.
PLAT420_ALERT_2_C D-H Without Acceptor N31 - H31 ... ?
PLAT431_ALERT_2_C Short Inter HL..A Contact Br1 .. O1W .. 3.15 Ang.
| Author Response: As the sum of the occupancy factors of both atoms is 1, this short
distance can be explained by the disorder in the Br atom positions.
|
PLAT431_ALERT_2_C Short Inter HL..A Contact Br4 .. O3W .. 3.23 Ang.
| Author Response: As the sum of the occupancy factors of both atoms is 1, this short
distance can be explained by the disorder in the Br atom positions.
|
PLAT431_ALERT_2_C Short Inter HL..A Contact Br4 .. O4W .. 3.36 Ang.
| Author Response: As the sum of the occupancy factors of both atoms is 1, this short
distance can be explained by the disorder in the Br atom positions.
|
PLAT431_ALERT_2_C Short Inter HL..A Contact Br5 .. O3W .. 3.36 Ang.
| Author Response: As the sum of the occupancy factors of both atoms is 1, this short
distance can be explained by the disorder in the Br atom positions.
|
PLAT431_ALERT_2_C Short Inter HL..A Contact Br5 .. Br5 .. 3.56 Ang.
| Author Response: As the sum of the occupancy factors of both atoms is 1, this short
distance can be explained by the disorder in the Br atom positions.
|
PLAT431_ALERT_2_C Short Inter HL..A Contact Br7 .. O4W .. 3.24 Ang.
| Author Response: As the sum of the occupancy factors of both atoms is 1, this short
distance can be explained by the disorder in the Br atom positions.
|
PLAT480_ALERT_4_C Long H...A H-Bond Reported H24 .. BR8 .. 2.96 Ang.
PLAT480_ALERT_4_C Long H...A H-Bond Reported H31 .. BR1 .. 2.94 Ang.
PLAT480_ALERT_4_C Long H...A H-Bond Reported H37 .. BR2 .. 3.00 Ang.
PLAT480_ALERT_4_C Long H...A H-Bond Reported H41 .. BR3 .. 3.08 Ang.
Alert level G
FORMU01_ALERT_2_G There is a discrepancy between the atom counts in the
_chemical_formula_sum and the formula from the _atom_site* data.
Atom count from _chemical_formula_sum:C36 H118 Br8 Fe8 N18 O22
Atom count from the _atom_site data: C36 H102 Br8.002 Fe8 N18 O22
CELLZ01_ALERT_1_G Difference between formula and atom_site contents detected.
CELLZ01_ALERT_1_G WARNING: H atoms missing from atom site list. Is this intentional?
From the CIF: _cell_formula_units_Z 1
From the CIF: _chemical_formula_sum C36 H118 Br8 Fe8 N18 O22
TEST: Compare cell contents of formula and atom_site data
atom Z*formula cif sites diff
C 36.00 36.00 0.00
H 118.00 102.00 16.00
Br 8.00 8.00 0.00
Fe 8.00 8.00 0.00
N 18.00 18.00 0.00
O 22.00 22.00 0.00
5 ALERT level A = In general: serious problem
2 ALERT level B = Potentially serious problem
27 ALERT level C = Check and explain
3 ALERT level G = General alerts; check
7 ALERT type 1 CIF construction/syntax error, inconsistent or missing data
21 ALERT type 2 Indicator that the structure model may be wrong or deficient
4 ALERT type 3 Indicator that the structure quality may be low
5 ALERT type 4 Improvement, methodology, query or suggestion
Crystals of (I) were obtainedwhile following the literature procedure to grow crystals of the known nonahydrate pseudopolymorph (Wieghardt et al., 1985 or?? 1984).
H atoms in the cluster were placed in calculated positions (C—H = 0.97 Å, N—H = 0.91 Å and O—H = 0.93 Å) and refined as riding with the constraint Uiso(H) = 1.2Ueq(carrier) applied. The H atoms of the solvent water molecules could not be located in difference Fourier maps.
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 (Farrugia, 1997); software used to prepare material for publication: WinGX (Farrugia, 1999).
dodeca-µ
2-hydroxo-di-µ
3-oxo-hexakis(1,4,7-triazacyclononane-
κ3N,
N',
N'')octairon(III) octabromide octahydrate
top
Crystal data top
[Fe8O2(OH)12(C6H12N3)6]Br8·8H2O | Z = 1 |
Mr = 2241.56 | F(000) = 1124 |
Triclinic, P1 | Dx = 1.721 Mg m−3 |
Hall symbol: -P 1 | Mo Kα radiation, λ = 0.71073 Å |
a = 13.257 (2) Å | Cell parameters from 15 reflections |
b = 13.564 (1) Å | θ = 10.8–12.6° |
c = 14.831 (4) Å | µ = 5.06 mm−1 |
α = 108.15 (1)° | T = 293 K |
β = 113.34 (1)° | Prism, colourless |
γ = 101.43 (1)° | 0.5 × 0.37 × 0.28 mm |
V = 2163.0 (8) Å3 | |
Data collection top
Enraf–Nonius CAD-4 diffractometer | 8217 reflections with I > 2σ(I) |
Radiation source: Enraf–Nonius FR590 | Rint = 0.029 |
Graphite monochromator | θmax = 30.4°, θmin = 2.4° |
non–profiled ω/2θ scans | h = 0→18 |
Absorption correction: ψ scan (North et al., 1968) | k = −19→18 |
Tmin = 0.142, Tmax = 0.241 | l = −21→19 |
13602 measured reflections | 3 standard reflections every 90 reflections |
13085 independent reflections | intensity decay: none |
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)] = 0.059 | Hydrogen site location: inferred from neighbouring sites |
wR(F2) = 0.209 | H-atom parameters constrained |
S = 1.12 | w = 1/[σ2(Fo2) + (0.116P)2 + 2.3967P] where P = (Fo2 + 2Fc2)/3 |
13085 reflections | (Δ/σ)max = 0.048 |
467 parameters | Δρmax = 2.53 e Å−3 |
39 restraints | Δρmin = −1.03 e Å−3 |
Crystal data top
[Fe8O2(OH)12(C6H12N3)6]Br8·8H2O | γ = 101.43 (1)° |
Mr = 2241.56 | V = 2163.0 (8) Å3 |
Triclinic, P1 | Z = 1 |
a = 13.257 (2) Å | Mo Kα radiation |
b = 13.564 (1) Å | µ = 5.06 mm−1 |
c = 14.831 (4) Å | T = 293 K |
α = 108.15 (1)° | 0.5 × 0.37 × 0.28 mm |
β = 113.34 (1)° | |
Data collection top
Enraf–Nonius CAD-4 diffractometer | 8217 reflections with I > 2σ(I) |
Absorption correction: ψ scan (North et al., 1968) | Rint = 0.029 |
Tmin = 0.142, Tmax = 0.241 | 3 standard reflections every 90 reflections |
13602 measured reflections | intensity decay: none |
13085 independent reflections | |
Refinement top
R[F2 > 2σ(F2)] = 0.059 | 39 restraints |
wR(F2) = 0.209 | H-atom parameters constrained |
S = 1.12 | Δρmax = 2.53 e Å−3 |
13085 reflections | Δρmin = −1.03 e Å−3 |
467 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. |
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 | Occ. (<1) |
Fe1 | 0.38470 (5) | 0.41654 (5) | 0.45841 (4) | 0.02143 (14) | |
Fe3 | 0.17949 (5) | 0.37903 (5) | 0.24373 (5) | 0.02466 (14) | |
Fe4 | 0.46203 (5) | 0.42176 (5) | 0.26224 (5) | 0.02378 (14) | |
Fe2 | 0.37002 (6) | 0.28676 (5) | 0.59163 (5) | 0.02721 (15) | |
Br1 | 0.14652 (10) | 0.03211 (6) | 0.18139 (7) | 0.0703 (3) | 0.818 (2) |
Br2 | 0.28821 (7) | 0.55595 (10) | 0.05697 (9) | 0.0798 (4) | 0.842 (2) |
Br3 | 0.95535 (13) | 0.59745 (13) | 0.48690 (12) | 0.0614 (3) | 0.5 |
Br4 | 0.14384 (18) | 0.80749 (17) | 0.5326 (2) | 0.0904 (6) | 0.5 |
Br5 | 0.6200 (2) | 0.1003 (2) | 0.0123 (3) | 0.1045 (14) | 0.355 (3) |
Br6 | 0.6718 (8) | 0.2531 (8) | 0.5427 (5) | 0.078 (2) | 0.193 (4) |
Br7 | 0.7576 (2) | 0.2517 (2) | 0.7566 (2) | 0.0673 (9) | 0.304 (3) |
Br8 | 0.6862 (4) | 0.2526 (4) | 0.5888 (7) | 0.118 (3) | 0.307 (4) |
Br9 | 0.3279 (8) | 0.9238 (13) | 0.2042 (11) | 0.203 (6) | 0.182 (2) |
N21 | 0.2714 (4) | 0.2378 (4) | 0.6676 (4) | 0.0389 (9) | |
H21 | 0.2522 | 0.296 | 0.6967 | 0.047* | |
C22 | 0.3545 (7) | 0.2210 (7) | 0.7575 (5) | 0.0654 (19) | |
H22A | 0.3122 | 0.1877 | 0.7877 | 0.078* | |
H22B | 0.4142 | 0.2926 | 0.8148 | 0.078* | |
C23 | 0.4116 (7) | 0.1483 (8) | 0.7194 (8) | 0.081 (2) | |
H23A | 0.357 | 0.0713 | 0.6812 | 0.097* | |
H23B | 0.4801 | 0.1549 | 0.7819 | 0.097* | |
N24 | 0.4497 (5) | 0.1767 (4) | 0.6448 (5) | 0.0574 (14) | |
H24 | 0.5298 | 0.2108 | 0.6808 | 0.069* | |
C25 | 0.4121 (9) | 0.0782 (6) | 0.5427 (9) | 0.091 (3) | |
H25A | 0.4528 | 0.0991 | 0.5058 | 0.109* | |
H25B | 0.4349 | 0.0202 | 0.5606 | 0.109* | |
C26 | 0.2833 (10) | 0.0337 (5) | 0.4686 (8) | 0.088 (3) | |
H26A | 0.2654 | −0.0148 | 0.396 | 0.105* | |
H26B | 0.2436 | −0.0106 | 0.4935 | 0.105* | |
N27 | 0.2383 (5) | 0.1243 (4) | 0.4638 (4) | 0.0518 (13) | |
H27 | 0.222 | 0.1254 | 0.3986 | 0.062* | |
C28 | 0.1306 (6) | 0.1135 (6) | 0.4728 (5) | 0.0641 (19) | |
H28A | 0.0728 | 0.0383 | 0.4244 | 0.077* | |
H28B | 0.0967 | 0.165 | 0.4513 | 0.077* | |
C29 | 0.1604 (6) | 0.1388 (5) | 0.5898 (5) | 0.0542 (15) | |
H29A | 0.0962 | 0.1527 | 0.6007 | 0.065* | |
H29B | 0.1695 | 0.0748 | 0.6034 | 0.065* | |
N31 | 0.0464 (4) | 0.2338 (3) | 0.0927 (3) | 0.0362 (9) | |
H31 | 0.0786 | 0.1809 | 0.0811 | 0.043* | |
C32 | −0.0611 (5) | 0.1845 (5) | 0.0954 (5) | 0.0537 (15) | |
H32A | −0.0851 | 0.1039 | 0.0645 | 0.064* | |
H32B | −0.1248 | 0.2027 | 0.0517 | 0.064* | |
C33 | −0.0388 (6) | 0.2283 (6) | 0.2101 (5) | 0.0610 (17) | |
H33A | 0.0072 | 0.1926 | 0.2483 | 0.073* | |
H33B | −0.1133 | 0.2113 | 0.2102 | 0.073* | |
N34 | 0.0268 (4) | 0.3516 (4) | 0.2666 (4) | 0.0454 (11) | |
H34 | 0.0525 | 0.3746 | 0.3391 | 0.054* | |
C35 | −0.0454 (5) | 0.4157 (6) | 0.2277 (5) | 0.0624 (19) | |
H35A | −0.0682 | 0.4499 | 0.2806 | 0.075* | |
H35B | −0.1168 | 0.3652 | 0.1595 | 0.075* | |
C36 | 0.0222 (6) | 0.5046 (5) | 0.2110 (6) | 0.0568 (16) | |
H36A | −0.0318 | 0.5317 | 0.1681 | 0.068* | |
H36B | 0.0792 | 0.5668 | 0.281 | 0.068* | |
N37 | 0.0846 (4) | 0.4594 (3) | 0.1540 (3) | 0.0381 (9) | |
H37 | 0.1377 | 0.5173 | 0.1585 | 0.046* | |
C38 | 0.0040 (5) | 0.3795 (5) | 0.0365 (4) | 0.0487 (13) | |
H38A | 0.015 | 0.4146 | −0.0084 | 0.058* | |
H38B | −0.0773 | 0.3629 | 0.0211 | 0.058* | |
C39 | 0.0254 (5) | 0.2721 (5) | 0.0063 (4) | 0.0446 (12) | |
H39A | −0.0426 | 0.2154 | −0.0615 | 0.054* | |
H39B | 0.0934 | 0.2832 | −0.0047 | 0.054* | |
N41 | 0.6287 (4) | 0.4085 (4) | 0.2840 (4) | 0.0400 (10) | |
H41 | 0.6864 | 0.474 | 0.3396 | 0.048* | |
C42 | 0.6394 (6) | 0.3212 (6) | 0.3224 (6) | 0.0622 (18) | |
H42A | 0.6533 | 0.349 | 0.3966 | 0.075* | |
H42B | 0.7064 | 0.3029 | 0.3222 | 0.075* | |
C43 | 0.5302 (7) | 0.2193 (6) | 0.2515 (7) | 0.0684 (19) | |
H43A | 0.5271 | 0.1746 | 0.2908 | 0.082* | |
H43B | 0.5335 | 0.1754 | 0.1878 | 0.082* | |
N44 | 0.4207 (4) | 0.2446 (3) | 0.2154 (3) | 0.0380 (9) | |
H44 | 0.3816 | 0.2238 | 0.2489 | 0.046* | |
C45 | 0.3415 (6) | 0.1840 (5) | 0.0975 (5) | 0.0558 (16) | |
H45A | 0.2634 | 0.1854 | 0.0808 | 0.067* | |
H45B | 0.3349 | 0.1067 | 0.0739 | 0.067* | |
C46 | 0.3842 (6) | 0.2330 (5) | 0.0368 (5) | 0.0618 (18) | |
H46A | 0.3188 | 0.2094 | −0.0354 | 0.074* | |
H46B | 0.4434 | 0.205 | 0.0283 | 0.074* | |
N47 | 0.4359 (4) | 0.3564 (4) | 0.0928 (3) | 0.0413 (10) | |
H47 | 0.3849 | 0.3827 | 0.0541 | 0.05* | |
C48 | 0.6458 (6) | 0.3927 (7) | 0.1890 (6) | 0.0625 (18) | |
H48A | 0.6495 | 0.3195 | 0.1606 | 0.075* | |
H48B | 0.7207 | 0.4479 | 0.212 | 0.075* | |
C49 | 0.5495 (6) | 0.4026 (7) | 0.1005 (6) | 0.0657 (19) | |
H49A | 0.5667 | 0.4806 | 0.1149 | 0.079* | |
H49B | 0.5457 | 0.3632 | 0.0316 | 0.079* | |
O1 | 0.4947 (2) | 0.4541 (2) | 0.4054 (2) | 0.0224 (5) | |
O2 | 0.4408 (3) | 0.3007 (2) | 0.5006 (3) | 0.0293 (6) | |
H2 | 0.4871 | 0.2644 | 0.4819 | 0.035* | |
O3 | 0.2873 (3) | 0.3726 (3) | 0.5304 (3) | 0.0294 (6) | |
H3 | 0.2233 | 0.3892 | 0.5325 | 0.035* | |
O4 | 0.2782 (3) | 0.4932 (2) | 0.3937 (2) | 0.0270 (6) | |
H4 | 0.2768 | 0.5632 | 0.4265 | 0.032* | |
O5 | 0.2535 (3) | 0.2935 (2) | 0.3108 (3) | 0.0319 (7) | |
H5 | 0.2345 | 0.2167 | 0.2834 | 0.038* | |
O6 | 0.2930 (3) | 0.4050 (3) | 0.1919 (3) | 0.0300 (6) | |
H6 | 0.2641 | 0.4101 | 0.1259 | 0.036* | |
O7 | 0.5151 (3) | 0.5772 (3) | 0.2746 (3) | 0.0318 (7) | |
H7 | 0.4819 | 0.5857 | 0.2106 | 0.038* | |
O1W | 0.9176 (6) | 0.9244 (5) | 0.1886 (5) | 0.099 (2) | |
O2W | 0.2056 (6) | 0.3635 (6) | 0.8483 (10) | 0.164 (5) | |
O3W | 0.7496 (10) | 0.0277 (6) | 0.2135 (9) | 0.167 (5) | |
O4W | 0.0220 (10) | 0.7811 (8) | 0.2762 (9) | 0.160 (4) | |
Atomic displacement parameters (Å2) top | U11 | U22 | U33 | U12 | U13 | U23 |
Fe1 | 0.0206 (3) | 0.0220 (3) | 0.0210 (3) | 0.0072 (2) | 0.0102 (2) | 0.0090 (2) |
Fe3 | 0.0191 (3) | 0.0276 (3) | 0.0237 (3) | 0.0076 (2) | 0.0087 (2) | 0.0099 (2) |
Fe4 | 0.0229 (3) | 0.0278 (3) | 0.0214 (3) | 0.0105 (2) | 0.0127 (2) | 0.0083 (2) |
Fe2 | 0.0299 (3) | 0.0265 (3) | 0.0305 (3) | 0.0106 (2) | 0.0171 (3) | 0.0153 (2) |
Br1 | 0.1024 (7) | 0.0303 (4) | 0.0613 (5) | 0.0157 (4) | 0.0392 (5) | 0.0069 (3) |
Br2 | 0.0480 (5) | 0.1350 (9) | 0.0900 (7) | 0.0354 (5) | 0.0309 (4) | 0.0911 (7) |
Br3 | 0.0626 (8) | 0.0739 (9) | 0.0590 (7) | 0.0334 (7) | 0.0387 (7) | 0.0255 (7) |
Br4 | 0.0940 (13) | 0.0914 (12) | 0.1360 (17) | 0.0513 (10) | 0.0736 (13) | 0.0751 (12) |
Br5 | 0.0651 (15) | 0.0779 (17) | 0.125 (2) | 0.0240 (12) | 0.0501 (16) | −0.0118 (15) |
Br6 | 0.065 (3) | 0.094 (5) | 0.075 (3) | 0.026 (3) | 0.032 (2) | 0.041 (3) |
Br7 | 0.0614 (14) | 0.0700 (16) | 0.0581 (14) | 0.0233 (12) | 0.0175 (11) | 0.0296 (12) |
Br8 | 0.051 (2) | 0.055 (2) | 0.263 (8) | 0.0326 (17) | 0.068 (4) | 0.089 (4) |
Br9 | 0.098 (6) | 0.312 (16) | 0.198 (10) | 0.091 (8) | 0.056 (6) | 0.123 (11) |
N21 | 0.041 (2) | 0.039 (2) | 0.042 (2) | 0.0108 (18) | 0.0264 (19) | 0.0193 (19) |
C22 | 0.073 (4) | 0.087 (5) | 0.048 (3) | 0.022 (4) | 0.031 (3) | 0.046 (4) |
C23 | 0.064 (4) | 0.107 (6) | 0.112 (6) | 0.042 (4) | 0.040 (4) | 0.092 (6) |
N24 | 0.051 (3) | 0.057 (3) | 0.097 (4) | 0.030 (2) | 0.043 (3) | 0.056 (3) |
C25 | 0.119 (7) | 0.050 (4) | 0.177 (9) | 0.057 (4) | 0.118 (7) | 0.060 (5) |
C26 | 0.146 (9) | 0.031 (3) | 0.109 (7) | 0.029 (4) | 0.093 (7) | 0.019 (4) |
N27 | 0.072 (3) | 0.032 (2) | 0.039 (2) | 0.000 (2) | 0.029 (2) | 0.0120 (19) |
C28 | 0.046 (3) | 0.057 (4) | 0.056 (4) | −0.012 (3) | 0.011 (3) | 0.022 (3) |
C29 | 0.050 (3) | 0.052 (3) | 0.064 (4) | 0.009 (3) | 0.037 (3) | 0.024 (3) |
N31 | 0.031 (2) | 0.0305 (19) | 0.034 (2) | 0.0061 (16) | 0.0099 (17) | 0.0105 (16) |
C32 | 0.035 (3) | 0.043 (3) | 0.057 (4) | −0.003 (2) | 0.018 (3) | 0.008 (3) |
C33 | 0.041 (3) | 0.070 (4) | 0.059 (4) | −0.002 (3) | 0.025 (3) | 0.026 (3) |
N34 | 0.028 (2) | 0.061 (3) | 0.039 (2) | 0.009 (2) | 0.0172 (18) | 0.016 (2) |
C35 | 0.034 (3) | 0.091 (5) | 0.051 (3) | 0.033 (3) | 0.020 (3) | 0.013 (3) |
C36 | 0.049 (3) | 0.047 (3) | 0.061 (4) | 0.029 (3) | 0.018 (3) | 0.012 (3) |
N37 | 0.030 (2) | 0.035 (2) | 0.041 (2) | 0.0141 (17) | 0.0094 (17) | 0.0152 (18) |
C38 | 0.038 (3) | 0.058 (3) | 0.037 (3) | 0.020 (3) | 0.005 (2) | 0.022 (3) |
C39 | 0.042 (3) | 0.048 (3) | 0.031 (2) | 0.013 (2) | 0.011 (2) | 0.013 (2) |
N41 | 0.030 (2) | 0.041 (2) | 0.039 (2) | 0.0163 (18) | 0.0150 (18) | 0.0061 (18) |
C42 | 0.052 (4) | 0.068 (4) | 0.066 (4) | 0.038 (3) | 0.021 (3) | 0.029 (3) |
C43 | 0.068 (4) | 0.053 (4) | 0.089 (5) | 0.039 (3) | 0.035 (4) | 0.031 (4) |
N44 | 0.046 (2) | 0.031 (2) | 0.038 (2) | 0.0147 (18) | 0.0256 (19) | 0.0098 (17) |
C45 | 0.060 (4) | 0.040 (3) | 0.044 (3) | 0.004 (3) | 0.024 (3) | 0.001 (2) |
C46 | 0.062 (4) | 0.055 (4) | 0.037 (3) | 0.005 (3) | 0.021 (3) | −0.002 (3) |
N47 | 0.040 (2) | 0.052 (3) | 0.032 (2) | 0.013 (2) | 0.0216 (18) | 0.0147 (19) |
C48 | 0.044 (3) | 0.086 (5) | 0.067 (4) | 0.025 (3) | 0.040 (3) | 0.026 (4) |
C49 | 0.052 (4) | 0.096 (5) | 0.052 (4) | 0.019 (4) | 0.037 (3) | 0.028 (4) |
O1 | 0.0209 (13) | 0.0246 (13) | 0.0190 (12) | 0.0067 (11) | 0.0095 (11) | 0.0075 (11) |
O2 | 0.0330 (16) | 0.0292 (15) | 0.0370 (17) | 0.0164 (13) | 0.0223 (14) | 0.0178 (13) |
O3 | 0.0266 (15) | 0.0359 (16) | 0.0341 (16) | 0.0140 (13) | 0.0180 (13) | 0.0196 (13) |
O4 | 0.0239 (14) | 0.0260 (14) | 0.0255 (14) | 0.0104 (12) | 0.0093 (12) | 0.0076 (12) |
O5 | 0.0335 (16) | 0.0201 (14) | 0.0280 (15) | 0.0057 (12) | 0.0072 (13) | 0.0070 (12) |
O6 | 0.0234 (14) | 0.0426 (17) | 0.0275 (15) | 0.0116 (13) | 0.0138 (12) | 0.0181 (13) |
O7 | 0.0288 (16) | 0.0327 (16) | 0.0285 (15) | 0.0077 (13) | 0.0104 (13) | 0.0142 (13) |
O1W | 0.075 (4) | 0.084 (4) | 0.081 (4) | 0.023 (3) | 0.013 (3) | 0.007 (3) |
O2W | 0.074 (4) | 0.091 (5) | 0.263 (12) | 0.038 (4) | 0.073 (6) | 0.009 (6) |
O3W | 0.251 (12) | 0.061 (4) | 0.223 (10) | 0.010 (5) | 0.188 (10) | 0.036 (5) |
O4W | 0.179 (10) | 0.125 (7) | 0.184 (10) | 0.057 (7) | 0.096 (8) | 0.067 (7) |
Geometric parameters (Å, º) top
Fe1—O1i | 1.959 (3) | C32—H32A | 0.97 |
Fe1—O1 | 1.967 (3) | C32—H32B | 0.97 |
Fe1—O2 | 2.030 (3) | C33—N34 | 1.493 (8) |
Fe1—O4 | 2.031 (3) | C33—H33A | 0.97 |
Fe1—O5 | 2.040 (3) | C33—H33B | 0.97 |
Fe1—O3 | 2.084 (3) | N34—C35 | 1.487 (9) |
Fe1—Fe1i | 2.9193 (12) | N34—H34 | 0.91 |
Fe3—O5 | 1.922 (3) | C35—C36 | 1.500 (11) |
Fe3—O4 | 1.950 (3) | C35—H35A | 0.97 |
Fe3—O6 | 1.964 (3) | C35—H35B | 0.97 |
Fe3—N37 | 2.159 (4) | C36—N37 | 1.485 (8) |
Fe3—N34 | 2.161 (4) | C36—H36A | 0.97 |
Fe3—N31 | 2.181 (4) | C36—H36B | 0.97 |
Fe4—O1 | 1.872 (3) | N37—C38 | 1.498 (7) |
Fe4—O6 | 1.989 (3) | N37—H37 | 0.91 |
Fe4—O7 | 2.011 (3) | C38—C39 | 1.503 (8) |
Fe4—N41 | 2.156 (4) | C38—H38A | 0.97 |
Fe4—N44 | 2.167 (4) | C38—H38B | 0.97 |
Fe4—N47 | 2.241 (4) | C39—H39A | 0.97 |
Fe2—O3 | 1.939 (3) | C39—H39B | 0.97 |
Fe2—O2 | 1.957 (3) | N41—C48 | 1.471 (8) |
Fe2—O7i | 1.967 (3) | N41—C42 | 1.473 (8) |
Fe2—N24 | 2.160 (5) | N41—H41 | 0.91 |
Fe2—N21 | 2.170 (4) | C42—C43 | 1.486 (10) |
Fe2—N27 | 2.179 (5) | C42—H42A | 0.97 |
N21—C22 | 1.473 (8) | C42—H42B | 0.97 |
N21—C29 | 1.485 (7) | C43—N44 | 1.486 (8) |
N21—H21 | 0.91 | C43—H43A | 0.97 |
C22—C23 | 1.468 (12) | C43—H43B | 0.97 |
C22—H22A | 0.97 | N44—C45 | 1.463 (7) |
C22—H22B | 0.97 | N44—H44 | 0.91 |
C23—N24 | 1.503 (9) | C45—C46 | 1.484 (9) |
C23—H23A | 0.97 | C45—H45A | 0.97 |
C23—H23B | 0.97 | C45—H45B | 0.97 |
N24—C25 | 1.485 (11) | C46—N47 | 1.480 (8) |
N24—H24 | 0.91 | C46—H46A | 0.97 |
C25—C26 | 1.477 (14) | C46—H46B | 0.97 |
C25—H25A | 0.97 | N47—C49 | 1.455 (7) |
C25—H25B | 0.97 | N47—H47 | 0.91 |
C26—N27 | 1.477 (10) | C48—C49 | 1.490 (10) |
C26—H26A | 0.97 | C48—H48A | 0.97 |
C26—H26B | 0.97 | C48—H48B | 0.97 |
N27—C28 | 1.469 (9) | C49—H49A | 0.97 |
N27—H27 | 0.91 | C49—H49B | 0.97 |
C28—C29 | 1.522 (9) | O1—Fe1i | 1.959 (3) |
C28—H28A | 0.97 | O2—H2 | 0.93 |
C28—H28B | 0.97 | O3—H3 | 0.93 |
C29—H29A | 0.97 | O4—H4 | 0.93 |
C29—H29B | 0.97 | O5—H5 | 0.93 |
N31—C32 | 1.471 (7) | O6—H6 | 0.93 |
N31—C39 | 1.475 (7) | O7—Fe2i | 1.967 (3) |
N31—H31 | 0.91 | O7—H7 | 0.93 |
C32—C33 | 1.496 (9) | | |
| | | |
O1i—Fe1—O1 | 83.91 (12) | Fe3—N31—H31 | 108 |
O1i—Fe1—O2 | 95.91 (13) | N31—C32—C33 | 110.2 (4) |
O1—Fe1—O2 | 96.38 (12) | N31—C32—H32A | 109.6 |
O1i—Fe1—O4 | 98.71 (12) | C33—C32—H32A | 109.6 |
O1—Fe1—O4 | 95.91 (12) | N31—C32—H32B | 109.6 |
O2—Fe1—O4 | 161.78 (13) | C33—C32—H32B | 109.6 |
O1i—Fe1—O5 | 173.99 (13) | H32A—C32—H32B | 108.1 |
O1—Fe1—O5 | 94.96 (13) | C32—C33—N34 | 109.6 (5) |
O2—Fe1—O5 | 90.08 (13) | C32—C33—H33A | 109.7 |
O4—Fe1—O5 | 75.50 (12) | N34—C33—H33A | 109.7 |
O1i—Fe1—O3 | 92.34 (12) | C32—C33—H33B | 109.7 |
O1—Fe1—O3 | 171.78 (12) | N34—C33—H33B | 109.7 |
O2—Fe1—O3 | 76.68 (12) | H33A—C33—H33B | 108.2 |
O4—Fe1—O3 | 91.88 (12) | C35—N34—C33 | 113.8 (5) |
O5—Fe1—O3 | 89.51 (13) | C35—N34—Fe3 | 112.0 (4) |
O1i—Fe1—Fe1i | 42.06 (8) | C33—N34—Fe3 | 106.0 (4) |
O1—Fe1—Fe1i | 41.85 (8) | C35—N34—H34 | 108.3 |
O2—Fe1—Fe1i | 98.28 (9) | C33—N34—H34 | 108.3 |
O4—Fe1—Fe1i | 99.85 (9) | Fe3—N34—H34 | 108.3 |
O5—Fe1—Fe1i | 136.52 (10) | N34—C35—C36 | 111.1 (5) |
O3—Fe1—Fe1i | 133.97 (9) | N34—C35—H35A | 109.4 |
O5—Fe3—O4 | 80.12 (13) | C36—C35—H35A | 109.4 |
O5—Fe3—O6 | 91.56 (14) | N34—C35—H35B | 109.4 |
O4—Fe3—O6 | 98.27 (13) | C36—C35—H35B | 109.4 |
O5—Fe3—N37 | 174.22 (14) | H35A—C35—H35B | 108 |
O4—Fe3—N37 | 105.55 (14) | N37—C36—C35 | 110.3 (5) |
O6—Fe3—N37 | 88.72 (16) | N37—C36—H36A | 109.6 |
O5—Fe3—N34 | 99.76 (18) | C35—C36—H36A | 109.6 |
O4—Fe3—N34 | 90.68 (15) | N37—C36—H36B | 109.6 |
O6—Fe3—N34 | 166.65 (16) | C35—C36—H36B | 109.6 |
N37—Fe3—N34 | 79.30 (18) | H36A—C36—H36B | 108.1 |
O5—Fe3—N31 | 94.51 (14) | C36—N37—C38 | 113.8 (4) |
O4—Fe3—N31 | 166.15 (15) | C36—N37—Fe3 | 105.7 (4) |
O6—Fe3—N31 | 94.61 (15) | C38—N37—Fe3 | 110.9 (3) |
N37—Fe3—N31 | 79.71 (16) | C36—N37—H37 | 108.8 |
N34—Fe3—N31 | 77.58 (17) | C38—N37—H37 | 108.8 |
O1—Fe4—O6 | 101.07 (13) | Fe3—N37—H37 | 108.8 |
O1—Fe4—O7 | 100.17 (13) | N37—C38—C39 | 112.8 (4) |
O6—Fe4—O7 | 91.81 (13) | N37—C38—H38A | 109 |
O1—Fe4—N41 | 96.46 (15) | C39—C38—H38A | 109 |
O6—Fe4—N41 | 161.28 (15) | N37—C38—H38B | 109 |
O7—Fe4—N41 | 91.53 (16) | C39—C38—H38B | 109 |
O1—Fe4—N44 | 93.52 (15) | H38A—C38—H38B | 107.8 |
O6—Fe4—N44 | 93.53 (16) | N31—C39—C38 | 110.8 (5) |
O7—Fe4—N44 | 164.07 (15) | N31—C39—H39A | 109.5 |
N41—Fe4—N44 | 78.78 (17) | C38—C39—H39A | 109.5 |
O1—Fe4—N47 | 168.91 (16) | N31—C39—H39B | 109.5 |
O6—Fe4—N47 | 85.47 (15) | C38—C39—H39B | 109.5 |
O7—Fe4—N47 | 88.46 (15) | H39A—C39—H39B | 108.1 |
N41—Fe4—N47 | 76.20 (17) | C48—N41—C42 | 114.8 (5) |
N44—Fe4—N47 | 77.03 (17) | C48—N41—Fe4 | 114.9 (4) |
O3—Fe2—O2 | 81.87 (13) | C42—N41—Fe4 | 105.8 (4) |
O3—Fe2—O7i | 90.92 (14) | C48—N41—H41 | 106.9 |
O2—Fe2—O7i | 98.43 (14) | C42—N41—H41 | 106.9 |
O3—Fe2—N24 | 174.30 (19) | Fe4—N41—H41 | 106.9 |
O2—Fe2—N24 | 97.05 (17) | N41—C42—C43 | 110.7 (5) |
O7i—Fe2—N24 | 94.8 (2) | N41—C42—H42A | 109.5 |
O3—Fe2—N21 | 100.72 (16) | C43—C42—H42A | 109.5 |
O2—Fe2—N21 | 168.66 (15) | N41—C42—H42B | 109.5 |
O7i—Fe2—N21 | 92.59 (15) | C43—C42—H42B | 109.5 |
N24—Fe2—N21 | 79.26 (19) | H42A—C42—H42B | 108.1 |
O3—Fe2—N27 | 95.36 (18) | C42—C43—N44 | 112.9 (5) |
O2—Fe2—N27 | 90.87 (16) | C42—C43—H43A | 109 |
O7i—Fe2—N27 | 169.44 (16) | N44—C43—H43A | 109 |
N24—Fe2—N27 | 79.0 (2) | C42—C43—H43B | 109 |
N21—Fe2—N27 | 77.93 (18) | N44—C43—H43B | 109 |
C22—N21—C29 | 113.4 (5) | H43A—C43—H43B | 107.8 |
C22—N21—Fe2 | 105.5 (4) | C45—N44—C43 | 112.6 (5) |
C29—N21—Fe2 | 113.1 (3) | C45—N44—Fe4 | 108.8 (4) |
C22—N21—H21 | 108.2 | C43—N44—Fe4 | 111.0 (4) |
C29—N21—H21 | 108.2 | C45—N44—H44 | 108.1 |
Fe2—N21—H21 | 108.2 | C43—N44—H44 | 108.1 |
N21—C22—C23 | 110.9 (6) | Fe4—N44—H44 | 108.1 |
N21—C22—H22A | 109.5 | N44—C45—C46 | 112.0 (5) |
C23—C22—H22A | 109.5 | N44—C45—H45A | 109.2 |
N21—C22—H22B | 109.5 | C46—C45—H45A | 109.2 |
C23—C22—H22B | 109.5 | N44—C45—H45B | 109.2 |
H22A—C22—H22B | 108.1 | C46—C45—H45B | 109.2 |
C22—C23—N24 | 112.4 (5) | H45A—C45—H45B | 107.9 |
C22—C23—H23A | 109.1 | C45—C46—N47 | 112.2 (5) |
N24—C23—H23A | 109.1 | C45—C46—H46A | 109.2 |
C22—C23—H23B | 109.1 | N47—C46—H46A | 109.2 |
N24—C23—H23B | 109.1 | C45—C46—H46B | 109.2 |
H23A—C23—H23B | 107.8 | N47—C46—H46B | 109.2 |
C25—N24—C23 | 113.4 (6) | H46A—C46—H46B | 107.9 |
C25—N24—Fe2 | 104.8 (5) | C49—N47—C46 | 113.0 (5) |
C23—N24—Fe2 | 110.7 (4) | C49—N47—Fe4 | 107.5 (4) |
C25—N24—H24 | 109.3 | C46—N47—Fe4 | 111.9 (4) |
C23—N24—H24 | 109.3 | C49—N47—H47 | 108.1 |
Fe2—N24—H24 | 109.3 | C46—N47—H47 | 108.1 |
C26—C25—N24 | 112.2 (6) | Fe4—N47—H47 | 108.1 |
C26—C25—H25A | 109.2 | N41—C48—C49 | 112.7 (5) |
N24—C25—H25A | 109.2 | N41—C48—H48A | 109 |
C26—C25—H25B | 109.2 | C49—C48—H48A | 109 |
N24—C25—H25B | 109.2 | N41—C48—H48B | 109 |
H25A—C25—H25B | 107.9 | C49—C48—H48B | 109 |
N27—C26—C25 | 111.5 (6) | H48A—C48—H48B | 107.8 |
N27—C26—H26A | 109.3 | N47—C49—C48 | 111.0 (6) |
C25—C26—H26A | 109.3 | N47—C49—H49A | 109.4 |
N27—C26—H26B | 109.3 | C48—C49—H49A | 109.4 |
C25—C26—H26B | 109.3 | N47—C49—H49B | 109.4 |
H26A—C26—H26B | 108 | C48—C49—H49B | 109.4 |
C28—N27—C26 | 115.4 (5) | H49A—C49—H49B | 108 |
C28—N27—Fe2 | 106.6 (4) | Fe4—O1—Fe1i | 129.53 (15) |
C26—N27—Fe2 | 111.7 (5) | Fe4—O1—Fe1 | 128.80 (15) |
C28—N27—H27 | 107.6 | Fe1i—O1—Fe1 | 96.09 (12) |
C26—N27—H27 | 107.6 | Fe2—O2—Fe1 | 100.32 (13) |
Fe2—N27—H27 | 107.6 | Fe2—O2—H2 | 129.8 |
N27—C28—C29 | 109.6 (5) | Fe1—O2—H2 | 129.8 |
N27—C28—H28A | 109.8 | Fe2—O3—Fe1 | 99.07 (14) |
C29—C28—H28A | 109.8 | Fe2—O3—H3 | 130.5 |
N27—C28—H28B | 109.8 | Fe1—O3—H3 | 130.5 |
C29—C28—H28B | 109.8 | Fe3—O4—Fe1 | 100.53 (13) |
H28A—C28—H28B | 108.2 | Fe3—O4—H4 | 129.7 |
N21—C29—C28 | 110.7 (5) | Fe1—O4—H4 | 129.7 |
N21—C29—H29A | 109.5 | Fe3—O5—Fe1 | 101.18 (14) |
C28—C29—H29A | 109.5 | Fe3—O5—H5 | 129.4 |
N21—C29—H29B | 109.5 | Fe1—O5—H5 | 129.4 |
C28—C29—H29B | 109.5 | Fe3—O6—Fe4 | 128.36 (16) |
H29A—C29—H29B | 108.1 | Fe3—O6—H6 | 115.8 |
C32—N31—C39 | 114.0 (4) | Fe4—O6—H6 | 115.8 |
C32—N31—Fe3 | 113.4 (3) | Fe2i—O7—Fe4 | 126.63 (17) |
C39—N31—Fe3 | 105.2 (3) | Fe2i—O7—H7 | 116.7 |
C32—N31—H31 | 108 | Fe4—O7—H7 | 116.7 |
C39—N31—H31 | 108 | | |
Symmetry code: (i) −x+1, −y+1, −z+1. |
Hydrogen-bond geometry (Å, º) top
D—H···A | D—H | H···A | D···A | D—H···A |
O5—H5···Br1 | 0.93 | 2.24 | 3.142 (3) | 165 |
O6—H6···Br2 | 0.93 | 2.52 | 3.271 (3) | 139 |
O7—H7···Br2 | 0.93 | 2.52 | 3.306 (3) | 143 |
O3—H3···Br3i | 0.93 | 2.32 | 3.242 (3) | 171 |
O2—H2···Br6 | 0.93 | 2.31 | 3.116 (10) | 145 |
O4—H4···Br6i | 0.93 | 2.29 | 3.123 (10) | 149 |
O2—H2···Br8 | 0.93 | 2.55 | 3.274 (5) | 135 |
O4—H4···Br8i | 0.93 | 2.55 | 3.298 (5) | 138 |
N24—H24···Br7 | 0.91 | 2.64 | 3.519 (6) | 164 |
N24—H24···Br8 | 0.91 | 2.96 | 3.591 (8) | 128 |
N27—H27···Br1 | 0.91 | 2.72 | 3.562 (5) | 155 |
N31—H31···Br1 | 0.91 | 2.94 | 3.643 (4) | 136 |
N34—H34···Br3i | 0.91 | 2.54 | 3.403 (5) | 159 |
N37—H37···Br7i | 0.91 | 2.79 | 3.578 (5) | 146 |
N37—H37···Br2 | 0.91 | 3.00 | 3.731 (5) | 139 |
N41—H41···Br3 | 0.91 | 3.08 | 3.853 (5) | 144 |
N47—H47···Br2 | 0.91 | 2.89 | 3.689 (5) | 148 |
Symmetry code: (i) −x+1, −y+1, −z+1. |
Experimental details
Crystal data |
Chemical formula | [Fe8O2(OH)12(C6H12N3)6]Br8·8H2O |
Mr | 2241.56 |
Crystal system, space group | Triclinic, P1 |
Temperature (K) | 293 |
a, b, c (Å) | 13.257 (2), 13.564 (1), 14.831 (4) |
α, β, γ (°) | 108.15 (1), 113.34 (1), 101.43 (1) |
V (Å3) | 2163.0 (8) |
Z | 1 |
Radiation type | Mo Kα |
µ (mm−1) | 5.06 |
Crystal size (mm) | 0.5 × 0.37 × 0.28 |
|
Data collection |
Diffractometer | Enraf–Nonius CAD-4 diffractometer |
Absorption correction | ψ scan (North et al., 1968) |
Tmin, Tmax | 0.142, 0.241 |
No. of measured, independent and observed [I > 2σ(I)] reflections | 13602, 13085, 8217 |
Rint | 0.029 |
(sin θ/λ)max (Å−1) | 0.712 |
|
Refinement |
R[F2 > 2σ(F2)], wR(F2), S | 0.059, 0.209, 1.12 |
No. of reflections | 13085 |
No. of parameters | 467 |
No. of restraints | 39 |
H-atom treatment | H-atom parameters constrained |
Δρmax, Δρmin (e Å−3) | 2.53, −1.03 |
Selected bond lengths (Å) topFe1—O1i | 1.959 (3) | Fe4—O1 | 1.872 (3) |
Fe1—O1 | 1.967 (3) | Fe4—O6 | 1.989 (3) |
Fe1—O2 | 2.030 (3) | Fe4—O7 | 2.011 (3) |
Fe1—O4 | 2.031 (3) | Fe4—N41 | 2.156 (4) |
Fe1—O5 | 2.040 (3) | Fe4—N44 | 2.167 (4) |
Fe1—O3 | 2.084 (3) | Fe4—N47 | 2.241 (4) |
Fe3—O5 | 1.922 (3) | Fe2—O3 | 1.939 (3) |
Fe3—O4 | 1.950 (3) | Fe2—O2 | 1.957 (3) |
Fe3—O6 | 1.964 (3) | Fe2—N24 | 2.160 (5) |
Fe3—N37 | 2.159 (4) | Fe2—N21 | 2.170 (4) |
Fe3—N34 | 2.161 (4) | Fe2—N27 | 2.179 (5) |
Fe3—N31 | 2.181 (4) | | |
Symmetry code: (i) −x+1, −y+1, −z+1. |
Hydrogen-bond geometry (Å, º) top
D—H···A | D—H | H···A | D···A | D—H···A |
O5—H5···Br1 | 0.93 | 2.24 | 3.142 (3) | 165 |
O6—H6···Br2 | 0.93 | 2.52 | 3.271 (3) | 139 |
O7—H7···Br2 | 0.93 | 2.52 | 3.306 (3) | 143 |
O3—H3···Br3i | 0.93 | 2.32 | 3.242 (3) | 171 |
O2—H2···Br6 | 0.93 | 2.31 | 3.116 (10) | 145 |
O4—H4···Br6i | 0.93 | 2.29 | 3.123 (10) | 149 |
O2—H2···Br8 | 0.93 | 2.55 | 3.274 (5) | 135 |
O4—H4···Br8i | 0.93 | 2.55 | 3.298 (5) | 138 |
N24—H24···Br7 | 0.91 | 2.64 | 3.519 (6) | 164 |
N24—H24···Br8 | 0.91 | 2.96 | 3.591 (8) | 128 |
N27—H27···Br1 | 0.91 | 2.72 | 3.562 (5) | 155 |
N31—H31···Br1 | 0.91 | 2.94 | 3.643 (4) | 136 |
N34—H34···Br3i | 0.91 | 2.54 | 3.403 (5) | 159 |
N37—H37···Br7i | 0.91 | 2.79 | 3.578 (5) | 146 |
N37—H37···Br2 | 0.91 | 3.00 | 3.731 (5) | 139 |
N41—H41···Br3 | 0.91 | 3.08 | 3.853 (5) | 144 |
N47—H47···Br2 | 0.91 | 2.89 | 3.689 (5) | 148 |
Symmetry code: (i) −x+1, −y+1, −z+1. |
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As in the previously reported nonahydrate structure (Wieghardt et al., 1985 or/?? 1984), there is one [(C6N3H12)6Fe8(µ3-O)2(µ2-OH)12]8+ cluster per unit cell of the title compound, (I) (Fig. 1). The two structures present a similar conformation of the cluster but a completely different distribution of bromide ions and water molecules. In (I), the cluster is generated by inversion symmetry (Table 1), whereas in the nonahydrate, the cluster possesses no symmetry.
According to charge balance, four Br− ions per asymmetric unit should be present to compensate the positive charge of the cluster. There is substantial disorder in the positions of the anions, and the four Br− ions appear distributed over nine sites with occupancy factors ranging from 0.181 (2) to 0.838 (2). The bromide ions in six of these sites act as acceptors for one or two hydrogen bonds with the OH groups, forming µ2-hydroxo bridges, and with the N atoms in the cyclic amine ligands. The sum of the occupancy factors of the six bromide sites hydrogen bonded to the cluster is 2.97, that is, each cluster is linked by hydrogen bonds to 5.94 Br atoms on average. The bromide ions in the remaining three sites, together with the solvent water molecules, fill the space between the clusters, forming a complex network of hydrogen bonds which crosslinks the clusters and gives cohesion to the crystal.
This distribution of hydrogen bonds is very different from that observed in the previously reported nonahydrate structure. In that case, there were seven bromide ions and one water molecule acting as acceptors for hydrogen bonds between solvent water molecules and the cluster. Owing to the disorder in the bromide positions in (I), the unit-cell volume is larger in this case [2163.0 (8) Å3 versus 1959 Å3], in spite of containing one fewer water molecule.