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Acta Crystallographica Section E: Structure Reports Online logoLink to Acta Crystallographica Section E: Structure Reports Online
. 2013 Mar 23;69(Pt 4):m227–m228. doi: 10.1107/S1600536813007514

Bis[1,2-bis­(meth­oxy­carbon­yl)ethene-1,2-dithiol­ato-κ2 S,S′]bis­(η5-penta­methyl­cyclo­penta­dien­yl)tetra-μ3-sulfido-tetra­iron(4 FeFe) hexa­fluoridophosphate

Shinji Inomata a,*, Shohei Ito a, Tsugiko Takase b
PMCID: PMC3629501  PMID: 23634019

Abstract

The asymmetric unit of the title compound, [Fe4(C6H6O4S2)2(C10H15)2S4]PF6, contains two different complex cations and two PF6 anions. The two complex cations have similar conformations with the butterfly-like Fe4S4 core surrounded by two penta­methyl­cyclo­penta­dienyl ligands and the S atoms of two dithiol­ate ligands. In each Fe4S4 core, there are four short Fe—Fe and two long Fe⋯Fe contacts, suggesting bonding and non-bonding inter­actions, respectively. The Fe—S distances range from 2.1287 (13) to 2.2706 (16) Å for one and from 2.1233 (13) to 2.2650 (16) Å for the other Fe4S4 core. The Fe—S distances involving the dithiol­ate ligands are in a more narrow range [2.1764 (16)–2.1874 (13) Å for one and 2.1743 (14)–2.1779 (16) Å for the other cation]. There are no significant inter­actions between cations and anions.

Related literature  

For background to polynuclear transition metal clusters, see: Geiger & Connelly (1985). For structural details of iron–sulfur cubane-type clusters, see: Blonk et al. (1992); Inomata et al. (1994, 1995); Schunn et al. (1966); Toan et al. (1977a ,b ); Wei et al. (1966).graphic file with name e-69-0m227-scheme1.jpg

Experimental  

Crystal data  

  • [Fe4(C6H6O4S2)2(C10H15)2S4]PF6

  • M r = 1179.51

  • Monoclinic, Inline graphic

  • a = 15.546 (9) Å

  • b = 23.767 (13) Å

  • c = 24.872 (14) Å

  • β = 102.209 (6)°

  • V = 8982 (9) Å3

  • Z = 8

  • Mo Kα radiation

  • μ = 1.74 mm−1

  • T = 93 K

  • 0.20 × 0.20 × 0.15 mm

Data collection  

  • Rigaku Saturn diffractometer

  • Absorption correction: multi-scan (REQAB; Jacobson, 1998) T min = 0.634, T max = 0.770

  • 81617 measured reflections

  • 20169 independent reflections

  • 16442 reflections with I > 2σ(I)

  • R int = 0.062

Refinement  

  • R[F 2 > 2σ(F 2)] = 0.075

  • wR(F 2) = 0.186

  • S = 1.14

  • 20169 reflections

  • 1064 parameters

  • H-atom parameters constrained

  • Δρmax = 0.94 e Å−3

  • Δρmin = −0.87 e Å−3

Data collection: CrystalClear (Rigaku, 2009); cell refinement: CrystalClear; data reduction: CrystalClear; program(s) used to solve structure: SIR97 (Altomare et al., 1999); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: ORTEP-3 for Windows (Farrugia, 2012); software used to prepare material for publication: CrystalStructure (Rigaku, 2006).

Supplementary Material

Crystal structure: contains datablock(s) global, I. DOI: 10.1107/S1600536813007514/wm2732sup1.cif

e-69-0m227-sup1.cif (165.7KB, cif)

Structure factors: contains datablock(s) I. DOI: 10.1107/S1600536813007514/wm2732Isup2.hkl

e-69-0m227-Isup2.hkl (985.6KB, hkl)

Additional supplementary materials: crystallographic information; 3D view; checkCIF report

Table 1. Selected bond lengths (Å).

Fe1—Fe2 3.1989 (10)
Fe1—Fe3 2.7418 (10)
Fe1—Fe4 2.7306 (10)
Fe2—Fe3 2.7505 (9)
Fe2—Fe4 2.7601 (11)
Fe3—Fe4 3.2499 (11)
Fe5—Fe6 3.1960 (10)
Fe5—Fe7 2.7603 (9)
Fe5—Fe8 2.7619 (11)
Fe6—Fe7 2.7601 (10)
Fe6—Fe8 2.7223 (10)
Fe7—Fe8 3.2216 (11)

supplementary crystallographic information

Comment

The structures of polynuclear transition metal clusters depend on the total charge of the clusters (Geiger & Connelly, 1985). Notable examples are illustrated by a series of cyclopentadienyl (Cp)-supported iron-sulfur cubane-type clusters, [Fe4S4Cp4] (Schunn et al., 1966; Wei et al., 1966) and their monocationic and dicationic representatives [Fe4S4Cp4]+ (Toan et al., 1977a) and [Fe4S4Cp4]2+ (Toan et al., 1977b). In this series, the total bond order of iron—iron interactions increases upon changing the charge from 0 to +2. A similar tendency is also known for methylcyclopentadienyl analogues [Fe4S4(MeCp)4]n (n = 0, +1) (Blonk et al., 1992).

Previously, we found a structural change accompanying an one-electron transfer between the mixed-ligand iron-sulfur cubane-type cluster [Fe4S4(Ph2C2S2)2(C5Me5)2] ([Fe4S4(Ph2C2S2)2Cp*2]) and its monocationic derivative [Fe4S4(Ph2C2S2)2Cp*2](PF6) (Inomata et al., 1994). In both clusters the Fe4S4 cores are surrounded by two pentamethylcyclopentadienyl (Cp*) ligands and the S atoms of two diphenyldithiolate ligands. Upon single-electron oxidation, the number of iron—iron bonds increased by three to four accompanied by a complex rearrangement of corresponding bonds. We report here the second structural example of such a monocationic mixed-ligand cluster, [Fe4S4{(MeO2C)2C2S2}2Cp*2]PF6 or [Fe4S4(C6H6O4S2)2(C10H15)2]PF6, (I), which has bis(methoxycarbonyl)dithiolate ligands instead of diphenyldithiolate ligands.

The asymmetric unit of compound (I) consists of two different cations and anions. There are no significant cation···anion interactions. The cations have quite similar conformations. The butterfly-like Fe4S4 cores are surrounded by two Cp* ligands and the S atoms of two dithiolate ligands. In each Fe4S4 core, there are four short Fe—Fe contacts (2.7306 (10) - 2.7601 (11) Å and 2.7223 (10) - 2.7619 (11) Å for each cation), indicating there is a bonding interaction. The remaining two long Fe···Fe distances (3.1989 (10) and 3.2499 (11) Å, 3.1960 (10) and 3.2216 (11) Å for each cation) suggest non-bonding interactions (Table 1). The iron-sulfur distances in the Fe4S4 core range from 2.1287 (13) to 2.2706 (16) Å for one and from 2.1233 (13) to 2.2650 (16) Å for the other cation and are normal. On the other hand, the distances between iron and sulfur involving the dithiolate ligands are in a more narrow range (2.1764 (16) to 2.1874 (13) Å and 2.1743 (14) to 2.1779 (16) Å for each cation). The slight differences in both complex cations are registered by changes of the conformation between methoxycarbonyl groups and dithiolate five-membered chelate rings.

Experimental

To a dichloromethane solution containing [Fe4S4{(MeO2C)2C2S2}2Cp*2] (Inomata et al., 1995) (104 mg, 0.101 mmol), was added [Fe(Cp)2]PF6 (107 mg, 0.323 mmol). The reaction mixture was stirred for 0.5 h at room temperature. After removal of the solvent, the residue was washed with water and then hexane to afford the title compound (yield 109 mg; 92%). Single crystals suitable for X-ray structural analysis were grown by layering hexane on the dichloromethane solution of the monocationic cluster at room temperature.

Refinement

All hydrogen atoms were placed in calculated positions with C—H distances of 0.98 Å. The Uiso(H) values were fixed at 1.2 times the Ueq(C) values of the carbon atoms to which they are covalently bonded.

Figures

Fig. 1.

Fig. 1.

The molecular structures of the two complex cations and the PF6- anions in the title compound, drawn with displacement ellipsoid at the 50% probability level. All hydrogen atoms were omitted for clarity. Solid lines indicate short Fe–Fe contacts.

Crystal data

[Fe4(C6H6O4S2)2(C10H15)2S4]PF6 F(000) = 4792.00
Mr = 1179.51 Dx = 1.744 Mg m3
Monoclinic, P21/c Mo Kα radiation, λ = 0.71075 Å
Hall symbol: -P 2ybc Cell parameters from 16701 reflections
a = 15.546 (9) Å θ = 3.0–27.5°
b = 23.767 (13) Å µ = 1.74 mm1
c = 24.872 (14) Å T = 93 K
β = 102.209 (6)° Block, black
V = 8982 (9) Å3 0.20 × 0.20 × 0.15 mm
Z = 8

Data collection

Rigaku Saturn diffractometer 16442 reflections with I > 2σ(I)
Detector resolution: 7.31 pixels mm-1 Rint = 0.062
ω scans θmax = 27.5°
Absorption correction: multi-scan (REQAB; Jacobson, 1998) h = −20→20
Tmin = 0.634, Tmax = 0.770 k = −30→30
81617 measured reflections l = −32→31
20169 independent reflections

Refinement

Refinement on F2 H-atom parameters constrained
R[F2 > 2σ(F2)] = 0.075 w = 1/[σ2(Fo2) + (0.0697P)2 + 28.5393P] where P = (Fo2 + 2Fc2)/3
wR(F2) = 0.186 (Δ/σ)max < 0.001
S = 1.14 Δρmax = 0.94 e Å3
20169 reflections Δρmin = −0.87 e Å3
1064 parameters

Special details

Refinement. Refinement was performed using all reflections. The weighted R-factor (wR) and goodness of fit (S) are based on F2. R-factor (gt) are based on F. The threshold expression of F2 > 2.0 σ(F2) is used only for calculating R-factor (gt).

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2)

x y z Uiso*/Ueq
Fe1 0.07715 (5) 0.25810 (3) 0.13972 (3) 0.02379 (16)
Fe2 0.17209 (5) 0.14168 (3) 0.12396 (3) 0.02310 (15)
Fe3 0.25495 (5) 0.23885 (3) 0.16724 (3) 0.02406 (16)
Fe4 0.10372 (5) 0.17163 (3) 0.21367 (3) 0.02498 (16)
Fe5 0.40860 (5) 0.16445 (3) 0.41442 (3) 0.02296 (15)
Fe6 0.51419 (5) 0.27648 (3) 0.39853 (3) 0.02344 (15)
Fe7 0.33413 (5) 0.26306 (3) 0.36759 (3) 0.02417 (16)
Fe8 0.48134 (5) 0.19003 (3) 0.32525 (3) 0.02368 (15)
S1 0.16053 (9) 0.25894 (5) 0.22228 (5) 0.0252 (2)
S2 0.24502 (9) 0.15484 (5) 0.20734 (5) 0.0249 (2)
S3 0.16987 (9) 0.22812 (5) 0.08839 (5) 0.0241 (2)
S4 0.03634 (9) 0.16770 (5) 0.12982 (5) 0.0252 (2)
S5 0.38789 (9) 0.21638 (5) 0.16024 (5) 0.0267 (2)
S6 0.29811 (9) 0.32650 (5) 0.17785 (6) 0.0271 (2)
S7 0.10692 (9) 0.09201 (6) 0.25727 (6) 0.0296 (2)
S8 0.00484 (10) 0.20097 (6) 0.25752 (6) 0.0304 (3)
S9 0.33870 (9) 0.17746 (5) 0.32996 (5) 0.0249 (2)
S10 0.43360 (9) 0.27930 (5) 0.31515 (5) 0.0253 (2)
S11 0.41556 (9) 0.25207 (5) 0.44758 (5) 0.0247 (2)
S12 0.54640 (9) 0.18524 (5) 0.40926 (5) 0.0245 (2)
S13 0.28944 (9) 0.34880 (5) 0.34754 (6) 0.0284 (2)
S14 0.20265 (9) 0.24286 (6) 0.37925 (6) 0.0276 (2)
S15 0.58474 (9) 0.21416 (5) 0.28298 (5) 0.0262 (2)
S16 0.47793 (9) 0.10758 (5) 0.28698 (6) 0.0278 (2)
P1 0.22590 (10) −0.06091 (6) 0.00440 (7) 0.0342 (3)
P2 0.79528 (11) 0.08690 (7) 0.53460 (7) 0.0398 (3)
F1 0.2900 (2) −0.05306 (19) 0.06399 (17) 0.0594 (11)
F2 0.1630 (2) −0.06931 (19) −0.05418 (16) 0.0564 (10)
F3 0.1453 (2) −0.03742 (17) 0.02790 (17) 0.0511 (9)
F4 0.2500 (2) 0.00156 (17) −0.0111 (2) 0.0635 (11)
F5 0.3070 (2) −0.08523 (17) −0.01850 (16) 0.0485 (9)
F6 0.2040 (2) −0.12284 (16) 0.02164 (19) 0.0586 (11)
F7 0.8525 (4) 0.0881 (2) 0.5951 (2) 0.105 (2)
F8 0.7378 (3) 0.0907 (2) 0.47366 (19) 0.0819 (16)
F9 0.7742 (3) 0.15229 (19) 0.5407 (2) 0.0773 (14)
F10 0.8811 (2) 0.10435 (19) 0.5135 (2) 0.0659 (12)
F11 0.8167 (3) 0.0239 (2) 0.5264 (3) 0.129 (3)
F12 0.7088 (2) 0.0706 (2) 0.5558 (2) 0.0691 (13)
O1 0.5672 (2) 0.23236 (16) 0.13678 (16) 0.0331 (8)
O2 0.4382 (2) 0.41343 (16) 0.12956 (16) 0.0352 (9)
O3 0.5844 (2) 0.32126 (15) 0.16952 (16) 0.0312 (8)
O4 0.4903 (2) 0.40029 (15) 0.22064 (15) 0.0304 (8)
O5 0.0196 (3) −0.00103 (18) 0.31801 (18) 0.0441 (10)
O6 −0.0984 (3) 0.19614 (19) 0.3522 (2) 0.0504 (12)
O7 0.0088 (2) 0.06421 (17) 0.38207 (16) 0.0353 (9)
O8 −0.1459 (2) 0.11024 (16) 0.32115 (15) 0.0320 (8)
O9 0.0916 (2) 0.42316 (17) 0.38344 (17) 0.0391 (9)
O10 0.0418 (2) 0.28168 (18) 0.42666 (16) 0.0383 (9)
O11 0.1559 (2) 0.43978 (17) 0.31230 (18) 0.0380 (9)
O12 −0.0060 (2) 0.32613 (18) 0.34611 (17) 0.0359 (9)
O13 0.7394 (2) 0.19747 (16) 0.23000 (16) 0.0330 (8)
O14 0.5351 (2) 0.02758 (17) 0.19250 (18) 0.0390 (9)
O15 0.6840 (2) 0.11810 (16) 0.18545 (17) 0.0358 (9)
O16 0.6576 (2) 0.02846 (15) 0.26018 (15) 0.0304 (8)
C1 0.0520 (3) 0.3487 (2) 0.1384 (2) 0.0327 (12)
C2 −0.0131 (3) 0.3207 (2) 0.1621 (2) 0.0290 (11)
C3 −0.0598 (3) 0.2821 (2) 0.1229 (2) 0.0280 (11)
C4 −0.0237 (3) 0.2864 (2) 0.0741 (2) 0.0306 (11)
C5 0.0438 (3) 0.3280 (2) 0.0841 (2) 0.0314 (12)
C6 0.1101 (4) 0.3954 (2) 0.1658 (3) 0.0461 (16)
C7 −0.0340 (4) 0.3378 (2) 0.2156 (2) 0.0414 (14)
C8 −0.1378 (3) 0.2477 (2) 0.1283 (2) 0.0382 (13)
C9 −0.0609 (4) 0.2575 (2) 0.0209 (2) 0.0392 (14)
C10 0.0918 (4) 0.3494 (2) 0.0421 (2) 0.0468 (17)
C11 0.2685 (3) 0.0860 (2) 0.0984 (2) 0.0272 (11)
C12 0.2112 (3) 0.1098 (2) 0.0519 (2) 0.0262 (10)
C13 0.1226 (3) 0.0924 (2) 0.0524 (2) 0.0266 (10)
C14 0.1260 (3) 0.0584 (2) 0.1003 (2) 0.0285 (11)
C15 0.2151 (3) 0.0543 (2) 0.1283 (2) 0.0283 (11)
C16 0.3666 (3) 0.0857 (2) 0.1092 (2) 0.0334 (12)
C17 0.2391 (3) 0.1419 (2) 0.0063 (2) 0.0310 (11)
C18 0.0435 (3) 0.1038 (2) 0.0084 (2) 0.0325 (12)
C19 0.0515 (3) 0.0273 (2) 0.1147 (2) 0.0322 (12)
C20 0.2508 (4) 0.0182 (2) 0.1773 (2) 0.0354 (13)
C21 0.4461 (3) 0.2784 (2) 0.1631 (2) 0.0246 (10)
C22 0.4050 (3) 0.3275 (2) 0.1710 (2) 0.0262 (10)
C23 0.0278 (3) 0.0968 (2) 0.2964 (2) 0.0294 (11)
C24 −0.0190 (3) 0.1451 (2) 0.2953 (2) 0.0291 (11)
C25 0.5377 (3) 0.2737 (2) 0.1542 (2) 0.0274 (11)
C26 0.4456 (3) 0.3849 (2) 0.1704 (2) 0.0283 (11)
C27 0.0180 (3) 0.0471 (2) 0.3319 (2) 0.0318 (12)
C28 −0.0912 (4) 0.1541 (2) 0.3268 (2) 0.0324 (12)
C29 0.6745 (3) 0.3204 (2) 0.1611 (2) 0.0374 (13)
C30 0.5421 (4) 0.4515 (2) 0.2211 (2) 0.0419 (14)
C31 −0.0156 (4) 0.0199 (2) 0.4170 (2) 0.0444 (15)
C32 −0.2087 (4) 0.1119 (2) 0.3572 (2) 0.0383 (13)
C33 0.3072 (3) 0.1112 (2) 0.4383 (2) 0.0284 (11)
C34 0.3604 (3) 0.1372 (2) 0.4852 (2) 0.0289 (11)
C35 0.4495 (3) 0.1203 (2) 0.4891 (2) 0.0277 (11)
C36 0.4515 (3) 0.0821 (2) 0.4438 (2) 0.0260 (10)
C37 0.3647 (3) 0.0771 (2) 0.4131 (2) 0.0269 (11)
C38 0.2090 (3) 0.1103 (2) 0.4216 (2) 0.0337 (12)
C39 0.3257 (4) 0.1734 (2) 0.5250 (2) 0.0322 (12)
C40 0.5267 (3) 0.1355 (2) 0.5338 (2) 0.0325 (12)
C41 0.5300 (4) 0.0489 (2) 0.4351 (2) 0.0339 (12)
C42 0.3336 (4) 0.0391 (2) 0.3645 (2) 0.0312 (11)
C43 0.6137 (3) 0.3332 (2) 0.3789 (2) 0.0267 (10)
C44 0.6534 (3) 0.2943 (2) 0.4195 (2) 0.0274 (11)
C45 0.6133 (3) 0.3026 (2) 0.4661 (2) 0.0282 (11)
C46 0.5495 (3) 0.3462 (2) 0.4536 (2) 0.0307 (11)
C47 0.5483 (3) 0.3649 (2) 0.3989 (2) 0.0276 (11)
C48 0.6428 (3) 0.3458 (2) 0.3264 (2) 0.0325 (12)
C49 0.7296 (3) 0.2568 (2) 0.4180 (2) 0.0350 (12)
C50 0.6428 (4) 0.2744 (2) 0.5207 (2) 0.0360 (13)
C51 0.4979 (4) 0.3719 (2) 0.4914 (2) 0.0387 (14)
C52 0.4998 (4) 0.4141 (2) 0.3702 (2) 0.0392 (13)
C53 0.1828 (3) 0.3524 (2) 0.3569 (2) 0.0259 (10)
C54 0.1439 (3) 0.3045 (2) 0.3713 (2) 0.0261 (10)
C55 0.6124 (3) 0.1543 (2) 0.2519 (2) 0.0264 (10)
C56 0.5647 (3) 0.1066 (2) 0.2538 (2) 0.0262 (10)
C57 0.1386 (3) 0.4085 (2) 0.3535 (2) 0.0285 (11)
C58 0.0551 (3) 0.3018 (2) 0.3847 (2) 0.0282 (11)
C59 0.6862 (3) 0.1601 (2) 0.2221 (2) 0.0297 (11)
C60 0.5833 (3) 0.0505 (2) 0.2305 (2) 0.0282 (11)
C61 0.1148 (4) 0.4949 (2) 0.3070 (3) 0.0434 (15)
C62 −0.0926 (4) 0.3320 (2) 0.3588 (2) 0.0424 (14)
C63 0.7511 (4) 0.1218 (2) 0.1529 (2) 0.0407 (14)
C64 0.6837 (4) −0.0250 (2) 0.2398 (2) 0.0361 (13)
H1 0.0989 0.4021 0.2026 0.055*
H2 0.0974 0.4298 0.1437 0.055*
H3 0.1719 0.3849 0.1688 0.055*
H4 −0.0824 0.3146 0.2229 0.050*
H5 −0.0513 0.3775 0.2139 0.050*
H6 0.0181 0.3324 0.2452 0.050*
H7 −0.1611 0.2283 0.0935 0.046*
H8 −0.1833 0.2723 0.1374 0.046*
H9 −0.1202 0.2198 0.1577 0.046*
H10 −0.0271 0.2683 −0.0066 0.047*
H11 −0.1225 0.2686 0.0081 0.047*
H12 −0.0574 0.2167 0.0263 0.047*
H13 0.1347 0.3779 0.0588 0.056*
H14 0.0497 0.3662 0.0114 0.056*
H15 0.1224 0.3182 0.0285 0.056*
H16 0.3864 0.1075 0.0806 0.040*
H17 0.3877 0.0469 0.1089 0.040*
H18 0.3901 0.1027 0.1453 0.040*
H19 0.1873 0.1500 −0.0228 0.037*
H20 0.2810 0.1192 −0.0089 0.037*
H21 0.2670 0.1773 0.0208 0.037*
H22 −0.0080 0.0860 0.0181 0.039*
H23 0.0525 0.0884 −0.0265 0.039*
H24 0.0340 0.1445 0.0048 0.039*
H25 0.0723 0.0060 0.1487 0.039*
H26 0.0269 0.0012 0.0848 0.039*
H27 0.0059 0.0539 0.1200 0.039*
H28 0.3150 0.0218 0.1871 0.042*
H29 0.2350 −0.0212 0.1686 0.042*
H30 0.2257 0.0303 0.2084 0.042*
H31 0.7139 0.3059 0.1943 0.045*
H32 0.6924 0.3587 0.1538 0.045*
H33 0.6777 0.2962 0.1298 0.045*
H34 0.6012 0.4417 0.2163 0.050*
H35 0.5464 0.4709 0.2563 0.050*
H36 0.5135 0.4762 0.1911 0.050*
H37 −0.0798 0.0174 0.4108 0.053*
H38 0.0085 0.0289 0.4557 0.053*
H39 0.0083 −0.0162 0.4079 0.053*
H40 −0.1833 0.0930 0.3919 0.046*
H41 −0.2630 0.0927 0.3393 0.046*
H42 −0.2219 0.1512 0.3645 0.046*
H43 0.1841 0.1347 0.4462 0.040*
H44 0.1878 0.0717 0.4241 0.040*
H45 0.1908 0.1237 0.3837 0.040*
H46 0.3742 0.1845 0.5551 0.039*
H47 0.2817 0.1524 0.5399 0.039*
H48 0.2984 0.2072 0.5061 0.039*
H49 0.5795 0.1166 0.5272 0.039*
H50 0.5156 0.1236 0.5694 0.039*
H51 0.5356 0.1763 0.5339 0.039*
H52 0.5131 0.0259 0.4018 0.041*
H53 0.5507 0.0244 0.4668 0.041*
H54 0.5772 0.0748 0.4309 0.041*
H55 0.2697 0.0428 0.3521 0.037*
H56 0.3483 0.0001 0.3753 0.037*
H57 0.3625 0.0498 0.3347 0.037*
H58 0.6906 0.3203 0.3226 0.039*
H59 0.6636 0.3848 0.3271 0.039*
H60 0.5932 0.3407 0.2952 0.039*
H61 0.7476 0.2377 0.4535 0.042*
H62 0.7787 0.2793 0.4107 0.042*
H63 0.7125 0.2288 0.3888 0.042*
H64 0.6080 0.2885 0.5464 0.043*
H65 0.7052 0.2826 0.5351 0.043*
H66 0.6346 0.2337 0.5163 0.043*
H67 0.4604 0.4020 0.4721 0.046*
H68 0.5382 0.3876 0.5236 0.046*
H69 0.4610 0.3431 0.5034 0.046*
H70 0.5156 0.4193 0.3345 0.047*
H71 0.5155 0.4480 0.3927 0.047*
H72 0.4363 0.4075 0.3648 0.047*
H73 0.0568 0.4925 0.2822 0.052*
H74 0.1518 0.5214 0.2918 0.052*
H75 0.1081 0.5080 0.3432 0.052*
H76 −0.1281 0.2987 0.3458 0.051*
H77 −0.1216 0.3656 0.3404 0.051*
H78 −0.0866 0.3357 0.3986 0.051*
H79 0.7283 0.1433 0.1193 0.049*
H80 0.7670 0.0838 0.1430 0.049*
H81 0.8033 0.1406 0.1743 0.049*
H82 0.6572 −0.0560 0.2566 0.043*
H83 0.7480 −0.0284 0.2493 0.043*
H84 0.6635 −0.0265 0.1997 0.043*

Atomic displacement parameters (Å2)

U11 U22 U33 U12 U13 U23
Fe1 0.0243 (4) 0.0269 (3) 0.0205 (3) 0.0010 (2) 0.0056 (2) −0.0003 (2)
Fe2 0.0239 (4) 0.0253 (3) 0.0202 (3) −0.0000 (2) 0.0049 (2) −0.0006 (2)
Fe3 0.0241 (4) 0.0261 (3) 0.0219 (3) −0.0013 (2) 0.0047 (2) −0.0004 (2)
Fe4 0.0274 (4) 0.0279 (3) 0.0203 (3) −0.0021 (2) 0.0065 (3) 0.0003 (2)
Fe5 0.0243 (4) 0.0259 (3) 0.0190 (3) −0.0008 (2) 0.0053 (2) 0.0001 (2)
Fe6 0.0236 (4) 0.0250 (3) 0.0219 (3) 0.0002 (2) 0.0050 (2) 0.0004 (2)
Fe7 0.0236 (4) 0.0269 (3) 0.0225 (3) 0.0007 (2) 0.0061 (3) −0.0003 (2)
Fe8 0.0253 (4) 0.0257 (3) 0.0208 (3) 0.0003 (2) 0.0067 (2) −0.0003 (2)
S1 0.0284 (7) 0.0277 (6) 0.0200 (6) −0.0012 (5) 0.0062 (5) −0.0009 (4)
S2 0.0262 (6) 0.0286 (6) 0.0197 (6) −0.0003 (5) 0.0039 (4) 0.0012 (4)
S3 0.0254 (6) 0.0259 (6) 0.0214 (6) 0.0004 (4) 0.0060 (4) −0.0005 (4)
S4 0.0251 (6) 0.0281 (6) 0.0231 (6) −0.0019 (4) 0.0066 (5) −0.0021 (4)
S5 0.0265 (7) 0.0262 (6) 0.0283 (6) −0.0011 (5) 0.0076 (5) −0.0004 (4)
S6 0.0260 (7) 0.0275 (6) 0.0285 (6) −0.0006 (5) 0.0074 (5) −0.0012 (4)
S7 0.0304 (7) 0.0302 (6) 0.0295 (6) −0.0009 (5) 0.0092 (5) 0.0048 (5)
S8 0.0365 (8) 0.0304 (6) 0.0275 (6) −0.0014 (5) 0.0138 (5) 0.0014 (5)
S9 0.0251 (6) 0.0283 (6) 0.0211 (6) −0.0002 (5) 0.0045 (4) −0.0012 (4)
S10 0.0269 (7) 0.0269 (6) 0.0226 (6) 0.0016 (5) 0.0064 (5) 0.0013 (4)
S11 0.0252 (6) 0.0285 (6) 0.0211 (6) −0.0012 (4) 0.0066 (5) −0.0024 (4)
S12 0.0243 (6) 0.0259 (6) 0.0237 (6) 0.0001 (4) 0.0060 (5) 0.0020 (4)
S13 0.0255 (7) 0.0270 (6) 0.0343 (7) 0.0014 (5) 0.0101 (5) 0.0024 (5)
S14 0.0259 (7) 0.0290 (6) 0.0289 (6) 0.0001 (5) 0.0080 (5) 0.0014 (4)
S15 0.0287 (7) 0.0261 (6) 0.0256 (6) −0.0001 (5) 0.0100 (5) −0.0002 (4)
S16 0.0296 (7) 0.0264 (6) 0.0300 (6) −0.0018 (5) 0.0120 (5) −0.0028 (4)
P1 0.0307 (8) 0.0327 (7) 0.0378 (8) 0.0043 (6) 0.0042 (6) −0.0039 (6)
P2 0.0305 (8) 0.0413 (8) 0.0466 (9) 0.0042 (6) 0.0063 (7) 0.0020 (6)
F1 0.043 (2) 0.080 (3) 0.048 (2) 0.005 (2) −0.0043 (18) −0.019 (2)
F2 0.039 (2) 0.088 (3) 0.037 (2) 0.016 (2) −0.0025 (17) −0.0132 (19)
F3 0.040 (2) 0.058 (2) 0.059 (2) 0.0031 (17) 0.0181 (18) −0.0211 (18)
F4 0.055 (2) 0.044 (2) 0.093 (3) 0.0044 (19) 0.022 (2) 0.012 (2)
F5 0.034 (2) 0.060 (2) 0.052 (2) 0.0122 (17) 0.0097 (17) −0.0066 (17)
F6 0.059 (2) 0.040 (2) 0.079 (3) 0.0003 (18) 0.020 (2) 0.0072 (19)
F7 0.094 (4) 0.139 (5) 0.062 (3) −0.019 (3) −0.027 (3) 0.029 (3)
F8 0.050 (2) 0.146 (5) 0.049 (2) −0.027 (2) 0.007 (2) −0.005 (2)
F9 0.069 (3) 0.050 (2) 0.119 (4) 0.015 (2) 0.033 (3) −0.002 (2)
F10 0.032 (2) 0.070 (2) 0.101 (3) −0.0088 (19) 0.024 (2) −0.020 (2)
F11 0.058 (3) 0.038 (2) 0.291 (9) 0.001 (2) 0.038 (4) −0.015 (3)
F12 0.049 (2) 0.088 (3) 0.074 (3) 0.005 (2) 0.022 (2) 0.039 (2)
O1 0.034 (2) 0.032 (2) 0.035 (2) 0.0043 (16) 0.0100 (17) −0.0044 (15)
O2 0.043 (2) 0.029 (2) 0.032 (2) −0.0027 (17) 0.0073 (18) 0.0041 (15)
O3 0.028 (2) 0.0302 (19) 0.036 (2) −0.0039 (15) 0.0091 (16) 0.0009 (15)
O4 0.035 (2) 0.0291 (19) 0.0271 (19) −0.0053 (16) 0.0074 (16) −0.0000 (14)
O5 0.057 (3) 0.037 (2) 0.042 (2) −0.006 (2) 0.019 (2) 0.0018 (18)
O6 0.068 (3) 0.040 (2) 0.054 (2) −0.014 (2) 0.039 (2) −0.017 (2)
O7 0.035 (2) 0.043 (2) 0.029 (2) −0.0070 (17) 0.0083 (17) 0.0103 (16)
O8 0.033 (2) 0.039 (2) 0.027 (2) −0.0053 (16) 0.0148 (16) 0.0004 (15)
O9 0.048 (2) 0.039 (2) 0.036 (2) 0.0118 (18) 0.023 (2) 0.0049 (17)
O10 0.040 (2) 0.050 (2) 0.029 (2) −0.0019 (19) 0.0160 (18) 0.0084 (17)
O11 0.037 (2) 0.038 (2) 0.045 (2) 0.0100 (17) 0.0206 (19) 0.0114 (17)
O12 0.021 (2) 0.055 (2) 0.034 (2) 0.0019 (17) 0.0101 (16) 0.0026 (17)
O13 0.026 (2) 0.036 (2) 0.038 (2) −0.0012 (16) 0.0097 (17) 0.0024 (16)
O14 0.040 (2) 0.032 (2) 0.042 (2) 0.0044 (17) 0.0013 (19) −0.0084 (17)
O15 0.046 (2) 0.032 (2) 0.036 (2) −0.0002 (17) 0.0237 (19) −0.0039 (16)
O16 0.032 (2) 0.0286 (19) 0.031 (2) 0.0034 (15) 0.0067 (16) 0.0008 (14)
C1 0.034 (3) 0.028 (2) 0.038 (3) 0.010 (2) 0.010 (2) 0.003 (2)
C2 0.030 (3) 0.034 (2) 0.024 (2) 0.011 (2) 0.009 (2) 0.006 (2)
C3 0.023 (2) 0.037 (2) 0.023 (2) 0.009 (2) 0.003 (2) 0.003 (2)
C4 0.028 (3) 0.039 (3) 0.024 (2) 0.011 (2) 0.005 (2) 0.005 (2)
C5 0.025 (2) 0.034 (2) 0.037 (3) 0.015 (2) 0.011 (2) 0.012 (2)
C6 0.036 (3) 0.028 (3) 0.072 (4) 0.004 (2) 0.007 (3) −0.005 (2)
C7 0.050 (4) 0.048 (3) 0.029 (3) 0.016 (2) 0.014 (2) −0.001 (2)
C8 0.023 (3) 0.046 (3) 0.046 (3) 0.002 (2) 0.009 (2) 0.004 (2)
C9 0.033 (3) 0.054 (3) 0.026 (2) 0.017 (2) −0.003 (2) −0.001 (2)
C10 0.046 (4) 0.050 (3) 0.052 (4) 0.019 (3) 0.027 (3) 0.025 (3)
C11 0.028 (2) 0.026 (2) 0.027 (2) 0.003 (2) 0.006 (2) −0.0046 (19)
C12 0.028 (2) 0.027 (2) 0.024 (2) 0.000 (2) 0.006 (2) −0.0036 (19)
C13 0.027 (2) 0.027 (2) 0.026 (2) −0.005 (2) 0.004 (2) −0.0065 (19)
C14 0.034 (3) 0.028 (2) 0.025 (2) −0.003 (2) 0.010 (2) −0.0072 (19)
C15 0.035 (3) 0.024 (2) 0.025 (2) 0.001 (2) 0.003 (2) −0.0027 (19)
C16 0.028 (3) 0.033 (2) 0.040 (3) 0.002 (2) 0.008 (2) −0.006 (2)
C17 0.037 (3) 0.039 (3) 0.020 (2) 0.002 (2) 0.012 (2) −0.002 (2)
C18 0.031 (3) 0.041 (3) 0.026 (2) −0.002 (2) 0.005 (2) −0.003 (2)
C19 0.035 (3) 0.030 (2) 0.034 (3) −0.008 (2) 0.013 (2) −0.003 (2)
C20 0.047 (3) 0.025 (2) 0.035 (3) 0.008 (2) 0.009 (2) 0.006 (2)
C21 0.023 (2) 0.032 (2) 0.019 (2) −0.003 (2) 0.0063 (19) 0.0012 (19)
C22 0.029 (2) 0.030 (2) 0.019 (2) −0.004 (2) 0.004 (2) 0.0007 (18)
C23 0.027 (2) 0.037 (2) 0.025 (2) −0.007 (2) 0.007 (2) 0.000 (2)
C24 0.031 (3) 0.035 (2) 0.021 (2) −0.009 (2) 0.006 (2) −0.002 (2)
C25 0.026 (2) 0.029 (2) 0.027 (2) −0.001 (2) 0.003 (2) 0.005 (2)
C26 0.031 (3) 0.026 (2) 0.031 (2) −0.002 (2) 0.011 (2) −0.001 (2)
C27 0.026 (3) 0.040 (3) 0.029 (2) −0.008 (2) 0.006 (2) 0.005 (2)
C28 0.039 (3) 0.035 (2) 0.025 (2) −0.005 (2) 0.010 (2) −0.000 (2)
C29 0.023 (3) 0.045 (3) 0.046 (3) −0.002 (2) 0.012 (2) 0.002 (2)
C30 0.041 (3) 0.031 (3) 0.053 (3) −0.013 (2) 0.012 (3) 0.000 (2)
C31 0.049 (4) 0.051 (3) 0.035 (3) −0.001 (3) 0.014 (2) 0.012 (2)
C32 0.035 (3) 0.048 (3) 0.035 (3) 0.001 (2) 0.015 (2) 0.004 (2)
C33 0.023 (2) 0.033 (2) 0.031 (2) −0.004 (2) 0.008 (2) 0.002 (2)
C34 0.027 (2) 0.040 (3) 0.022 (2) 0.003 (2) 0.009 (2) 0.002 (2)
C35 0.031 (3) 0.030 (2) 0.023 (2) −0.002 (2) 0.007 (2) 0.0024 (19)
C36 0.030 (2) 0.028 (2) 0.019 (2) 0.001 (2) 0.005 (2) 0.0036 (18)
C37 0.031 (3) 0.026 (2) 0.025 (2) −0.005 (2) 0.010 (2) 0.0052 (19)
C38 0.032 (3) 0.038 (3) 0.033 (3) −0.003 (2) 0.010 (2) 0.001 (2)
C39 0.037 (3) 0.043 (3) 0.020 (2) −0.004 (2) 0.013 (2) −0.001 (2)
C40 0.025 (2) 0.048 (3) 0.023 (2) 0.001 (2) 0.003 (2) 0.006 (2)
C41 0.040 (3) 0.030 (2) 0.035 (3) 0.005 (2) 0.014 (2) 0.001 (2)
C42 0.038 (3) 0.029 (2) 0.028 (2) −0.007 (2) 0.009 (2) −0.003 (2)
C43 0.025 (2) 0.027 (2) 0.030 (2) −0.005 (2) 0.010 (2) −0.0025 (19)
C44 0.023 (2) 0.029 (2) 0.029 (2) −0.006 (2) 0.003 (2) −0.002 (2)
C45 0.027 (2) 0.033 (2) 0.025 (2) −0.005 (2) 0.006 (2) −0.005 (2)
C46 0.028 (3) 0.028 (2) 0.038 (3) −0.005 (2) 0.010 (2) −0.008 (2)
C47 0.026 (2) 0.023 (2) 0.033 (2) −0.005 (2) 0.004 (2) 0.002 (2)
C48 0.032 (3) 0.039 (3) 0.028 (2) −0.005 (2) 0.008 (2) 0.005 (2)
C49 0.032 (3) 0.033 (3) 0.039 (3) 0.002 (2) 0.006 (2) −0.000 (2)
C50 0.036 (3) 0.043 (3) 0.027 (2) −0.003 (2) 0.004 (2) 0.004 (2)
C51 0.037 (3) 0.038 (3) 0.046 (3) −0.010 (2) 0.019 (2) −0.019 (2)
C52 0.040 (3) 0.028 (2) 0.048 (3) 0.001 (2) 0.006 (2) 0.006 (2)
C53 0.025 (2) 0.035 (2) 0.019 (2) 0.002 (2) 0.006 (2) 0.0027 (19)
C54 0.030 (2) 0.034 (2) 0.016 (2) 0.001 (2) 0.007 (2) 0.0028 (18)
C55 0.032 (3) 0.027 (2) 0.022 (2) 0.004 (2) 0.010 (2) −0.0009 (19)
C56 0.028 (2) 0.031 (2) 0.020 (2) 0.006 (2) 0.004 (2) 0.0001 (19)
C57 0.027 (2) 0.029 (2) 0.030 (2) −0.000 (2) 0.006 (2) −0.001 (2)
C58 0.028 (2) 0.027 (2) 0.030 (2) 0.000 (2) 0.008 (2) −0.004 (2)
C59 0.031 (3) 0.029 (2) 0.031 (2) 0.005 (2) 0.011 (2) 0.004 (2)
C60 0.032 (3) 0.023 (2) 0.032 (2) 0.004 (2) 0.013 (2) 0.001 (2)
C61 0.039 (3) 0.037 (3) 0.061 (4) 0.005 (2) 0.025 (3) 0.009 (2)
C62 0.027 (3) 0.053 (3) 0.050 (3) 0.003 (2) 0.013 (2) −0.000 (2)
C63 0.044 (3) 0.045 (3) 0.041 (3) −0.000 (2) 0.029 (2) 0.000 (2)
C64 0.041 (3) 0.029 (2) 0.041 (3) 0.008 (2) 0.016 (2) −0.003 (2)

Geometric parameters (Å, º)

Fe1—Fe3 2.7418 (10) C22—C26 1.506 (7)
Fe1—Fe4 2.7306 (10) C23—C24 1.356 (7)
Fe1—S1 2.1844 (13) C23—C27 1.501 (8)
Fe1—S3 2.2347 (16) C24—C28 1.513 (8)
Fe1—S4 2.2390 (13) C33—C34 1.421 (7)
Fe1—C1 2.187 (5) C33—C37 1.443 (8)
Fe1—C2 2.195 (5) C33—C38 1.494 (7)
Fe1—C3 2.159 (5) C34—C35 1.426 (8)
Fe1—C4 2.119 (5) C34—C39 1.496 (8)
Fe1—C5 2.154 (5) C35—C36 1.452 (7)
Fe2—Fe3 2.7505 (9) C35—C40 1.497 (7)
Fe2—Fe4 2.7601 (11) C36—C37 1.408 (7)
Fe2—S2 2.1656 (13) C36—C41 1.506 (8)
Fe2—S3 2.2342 (14) C37—C42 1.504 (7)
Fe2—S4 2.2333 (16) C43—C44 1.412 (7)
Fe2—C11 2.193 (5) C43—C47 1.437 (8)
Fe2—C12 2.148 (5) C43—C48 1.499 (8)
Fe2—C13 2.134 (4) C44—C45 1.442 (8)
Fe2—C14 2.145 (5) C44—C49 1.488 (8)
Fe2—C15 2.178 (5) C45—C46 1.422 (7)
Fe3—S1 2.2598 (16) C45—C50 1.496 (7)
Fe3—S2 2.2517 (14) C46—C47 1.428 (8)
Fe3—S3 2.1363 (13) C46—C51 1.490 (9)
Fe3—S5 2.1769 (16) C47—C52 1.490 (7)
Fe3—S6 2.1874 (13) C53—C54 1.372 (7)
Fe4—S1 2.2476 (14) C53—C57 1.495 (7)
Fe4—S2 2.2706 (16) C54—C58 1.488 (8)
Fe4—S4 2.1287 (13) C55—C56 1.360 (7)
Fe4—S7 2.1764 (16) C55—C59 1.498 (8)
Fe4—S8 2.1790 (18) C56—C60 1.507 (7)
Fe5—Fe7 2.7603 (9) C6—H1 0.980
Fe5—Fe8 2.7619 (11) C6—H2 0.980
Fe5—S9 2.1735 (13) C6—H3 0.980
Fe5—S11 2.2340 (13) C7—H4 0.980
Fe5—S12 2.2285 (16) C7—H5 0.980
Fe5—C33 2.199 (5) C7—H6 0.980
Fe5—C34 2.154 (5) C8—H7 0.980
Fe5—C35 2.112 (5) C8—H8 0.980
Fe5—C36 2.146 (5) C8—H9 0.980
Fe5—C37 2.183 (5) C9—H10 0.980
Fe6—Fe7 2.7601 (10) C9—H11 0.980
Fe6—Fe8 2.7223 (10) C9—H12 0.980
Fe6—S10 2.1854 (13) C10—H13 0.980
Fe6—S11 2.2287 (16) C10—H14 0.980
Fe6—S12 2.2289 (13) C10—H15 0.980
Fe6—C43 2.184 (5) C16—H16 0.980
Fe6—C44 2.159 (5) C16—H17 0.980
Fe6—C45 2.118 (5) C16—H18 0.980
Fe6—C46 2.147 (5) C17—H19 0.980
Fe6—C47 2.166 (5) C17—H20 0.980
Fe7—S9 2.2468 (14) C17—H21 0.980
Fe7—S10 2.2571 (16) C18—H22 0.980
Fe7—S11 2.1363 (13) C18—H23 0.980
Fe7—S13 2.1765 (13) C18—H24 0.980
Fe7—S14 2.1779 (16) C19—H25 0.980
Fe8—S9 2.2650 (16) C19—H26 0.980
Fe8—S10 2.2442 (14) C19—H27 0.980
Fe8—S12 2.1233 (13) C20—H28 0.980
Fe8—S15 2.1755 (16) C20—H29 0.980
Fe8—S16 2.1743 (14) C20—H30 0.980
S5—C21 1.724 (5) C29—H31 0.980
S6—C22 1.706 (5) C29—H32 0.980
S7—C23 1.727 (6) C29—H33 0.980
S8—C24 1.712 (5) C30—H34 0.980
S13—C53 1.724 (5) C30—H35 0.980
S14—C54 1.715 (5) C30—H36 0.980
S15—C55 1.718 (5) C31—H37 0.980
S16—C56 1.725 (5) C31—H38 0.980
P1—F1 1.612 (4) C31—H39 0.980
P1—F2 1.586 (3) C32—H40 0.980
P1—F3 1.591 (4) C32—H41 0.980
P1—F4 1.598 (4) C32—H42 0.980
P1—F5 1.598 (4) C38—H43 0.980
P1—F6 1.590 (4) C38—H44 0.980
P2—F7 1.578 (5) C38—H45 0.980
P2—F8 1.591 (4) C39—H46 0.980
P2—F9 1.602 (4) C39—H47 0.980
P2—F10 1.588 (5) C39—H48 0.980
P2—F11 1.557 (5) C40—H49 0.980
P2—F12 1.593 (5) C40—H50 0.980
O1—C25 1.203 (6) C40—H51 0.980
O2—C26 1.206 (6) C41—H52 0.980
O3—C25 1.354 (6) C41—H53 0.980
O3—C29 1.459 (7) C41—H54 0.980
O4—C26 1.346 (6) C42—H55 0.980
O4—C30 1.457 (7) C42—H56 0.980
O5—C27 1.198 (7) C42—H57 0.980
O6—C28 1.200 (7) C48—H58 0.980
O7—C27 1.347 (7) C48—H59 0.980
O7—C31 1.466 (8) C48—H60 0.980
O8—C28 1.334 (7) C49—H61 0.980
O8—C32 1.458 (8) C49—H62 0.980
O9—C57 1.199 (7) C49—H63 0.980
O10—C58 1.204 (7) C50—H64 0.980
O11—C57 1.339 (7) C50—H65 0.980
O11—C61 1.451 (7) C50—H66 0.980
O12—C58 1.333 (6) C51—H67 0.980
O12—C62 1.453 (7) C51—H68 0.980
O13—C59 1.201 (6) C51—H69 0.980
O14—C60 1.205 (6) C52—H70 0.980
O15—C59 1.347 (6) C52—H71 0.980
O15—C63 1.452 (8) C52—H72 0.980
O16—C60 1.340 (6) C61—H73 0.980
O16—C64 1.457 (6) C61—H74 0.980
C1—C2 1.436 (8) C61—H75 0.980
C1—C5 1.418 (8) C62—H76 0.980
C1—C6 1.501 (8) C62—H77 0.980
C2—C3 1.420 (7) C62—H78 0.980
C2—C7 1.492 (8) C63—H79 0.980
C3—C4 1.445 (8) C63—H80 0.980
C3—C8 1.492 (8) C63—H81 0.980
C4—C5 1.423 (7) C64—H82 0.980
C4—C9 1.495 (7) C64—H83 0.980
C5—C10 1.495 (10) C64—H84 0.980
C11—C12 1.420 (6) Fe1—Fe2 3.1989 (10)
C11—C15 1.440 (8) Fe1—Fe3 2.7418 (10)
C11—C16 1.492 (7) Fe1—Fe4 2.7306 (10)
C12—C13 1.440 (7) Fe2—Fe3 2.7505 (9)
C12—C17 1.504 (8) Fe2—Fe4 2.7601 (11)
C13—C14 1.432 (7) Fe3—Fe4 3.2499 (11)
C13—C18 1.487 (7) Fe5—Fe6 3.1960 (10)
C14—C15 1.416 (7) Fe5—Fe7 2.7603 (9)
C14—C19 1.480 (8) Fe5—Fe8 2.7619 (11)
C15—C20 1.498 (7) Fe6—Fe7 2.7601 (10)
C21—C22 1.363 (7) Fe6—Fe8 2.7223 (10)
C21—C25 1.489 (8) Fe7—Fe8 3.2216 (11)
Fe3—Fe1—Fe4 72.86 (2) Fe1—C1—C5 69.7 (3)
Fe3—Fe1—S1 53.16 (4) Fe1—C1—C6 129.3 (3)
Fe3—Fe1—S3 49.57 (3) C2—C1—C5 107.5 (4)
Fe3—Fe1—S4 96.58 (4) C2—C1—C6 124.4 (5)
Fe3—Fe1—C1 109.63 (15) C5—C1—C6 127.7 (5)
Fe3—Fe1—C2 135.59 (13) Fe1—C2—C1 70.6 (3)
Fe3—Fe1—C3 173.56 (14) Fe1—C2—C3 69.6 (3)
Fe3—Fe1—C4 141.97 (17) Fe1—C2—C7 133.0 (3)
Fe3—Fe1—C5 112.46 (16) C1—C2—C3 108.7 (4)
Fe4—Fe1—S1 53.02 (3) C1—C2—C7 123.0 (4)
Fe4—Fe1—S3 96.94 (4) C3—C2—C7 127.7 (5)
Fe4—Fe1—S4 49.52 (3) Fe1—C3—C2 72.4 (3)
Fe4—Fe1—C1 138.76 (16) Fe1—C3—C4 68.8 (3)
Fe4—Fe1—C2 110.68 (15) Fe1—C3—C8 128.6 (3)
Fe4—Fe1—C3 109.38 (15) C2—C3—C4 107.2 (4)
Fe4—Fe1—C4 137.71 (16) C2—C3—C8 126.9 (5)
Fe4—Fe1—C5 174.13 (17) C4—C3—C8 125.7 (4)
S1—Fe1—S3 102.34 (5) Fe1—C4—C3 71.7 (2)
S1—Fe1—S4 102.13 (5) Fe1—C4—C5 71.9 (2)
S1—Fe1—C1 94.23 (14) Fe1—C4—C9 128.3 (4)
S1—Fe1—C2 92.28 (13) C3—C4—C5 107.9 (4)
S1—Fe1—C3 123.00 (15) C3—C4—C9 124.4 (5)
S1—Fe1—C4 156.35 (16) C5—C4—C9 127.3 (5)
S1—Fe1—C5 127.68 (14) Fe1—C5—C1 72.2 (3)
S3—Fe1—S4 80.40 (5) Fe1—C5—C4 69.2 (3)
S3—Fe1—C1 116.13 (17) Fe1—C5—C10 128.6 (4)
S3—Fe1—C2 152.20 (15) C1—C5—C4 108.7 (5)
S3—Fe1—C3 134.66 (14) C1—C5—C10 126.2 (5)
S3—Fe1—C4 97.07 (17) C4—C5—C10 124.9 (5)
S3—Fe1—C5 88.60 (17) Fe2—C11—C12 69.2 (3)
S4—Fe1—C1 153.79 (16) Fe2—C11—C15 70.2 (3)
S4—Fe1—C2 119.78 (15) Fe2—C11—C16 133.2 (3)
S4—Fe1—C3 89.28 (15) C12—C11—C15 107.4 (4)
S4—Fe1—C4 94.26 (15) C12—C11—C16 126.2 (5)
S4—Fe1—C5 130.18 (14) C15—C11—C16 125.7 (4)
C1—Fe1—C2 38.3 (2) Fe2—C12—C11 72.6 (3)
C1—Fe1—C3 64.6 (2) Fe2—C12—C13 69.8 (3)
C1—Fe1—C4 64.8 (2) Fe2—C12—C17 128.9 (3)
C1—Fe1—C5 38.1 (2) C11—C12—C13 108.3 (4)
C2—Fe1—C3 38.07 (19) C11—C12—C17 125.8 (5)
C2—Fe1—C4 64.6 (2) C13—C12—C17 125.5 (4)
C2—Fe1—C5 63.9 (2) Fe2—C13—C12 70.9 (2)
C3—Fe1—C4 39.5 (2) Fe2—C13—C14 70.9 (2)
C3—Fe1—C5 65.1 (2) Fe2—C13—C18 127.5 (3)
C4—Fe1—C5 38.9 (2) C12—C13—C14 107.6 (4)
Fe3—Fe2—Fe4 72.28 (2) C12—C13—C18 125.8 (4)
Fe3—Fe2—S2 52.91 (3) C14—C13—C18 126.4 (5)
Fe3—Fe2—S3 49.43 (3) Fe2—C14—C13 70.0 (2)
Fe3—Fe2—S4 96.47 (4) Fe2—C14—C15 72.2 (2)
Fe3—Fe2—C11 109.18 (13) Fe2—C14—C19 128.9 (4)
Fe3—Fe2—C12 115.51 (14) C13—C14—C15 108.0 (5)
Fe3—Fe2—C13 147.54 (15) C13—C14—C19 126.2 (4)
Fe3—Fe2—C14 169.73 (14) C15—C14—C19 125.5 (4)
Fe3—Fe2—C15 131.92 (14) Fe2—C15—C11 71.3 (2)
Fe4—Fe2—S2 53.25 (4) Fe2—C15—C14 69.6 (2)
Fe4—Fe2—S3 96.12 (4) Fe2—C15—C20 130.1 (3)
Fe4—Fe2—S4 49.08 (3) C11—C15—C14 108.7 (4)
Fe4—Fe2—C11 142.57 (14) C11—C15—C20 124.5 (5)
Fe4—Fe2—C12 172.11 (14) C14—C15—C20 126.6 (5)
Fe4—Fe2—C13 133.12 (16) S5—C21—C22 118.6 (4)
Fe4—Fe2—C14 107.23 (16) S5—C21—C25 116.1 (3)
Fe4—Fe2—C15 111.85 (16) C22—C21—C25 125.3 (4)
S2—Fe2—S3 101.98 (5) S6—C22—C21 120.0 (4)
S2—Fe2—S4 102.01 (5) S6—C22—C26 115.6 (3)
S2—Fe2—C11 96.54 (13) C21—C22—C26 124.3 (5)
S2—Fe2—C12 131.81 (14) S7—C23—C24 119.1 (4)
S2—Fe2—C13 154.35 (14) S7—C23—C27 117.0 (4)
S2—Fe2—C14 118.21 (14) C24—C23—C27 123.9 (5)
S2—Fe2—C15 89.83 (13) S8—C24—C23 119.4 (4)
S3—Fe2—S4 80.53 (5) S8—C24—C28 116.4 (4)
S3—Fe2—C11 113.25 (15) C23—C24—C28 124.2 (5)
S3—Fe2—C12 88.68 (14) O1—C25—O3 124.1 (5)
S3—Fe2—C13 101.65 (14) O1—C25—C21 124.4 (4)
S3—Fe2—C14 139.81 (14) O3—C25—C21 111.6 (4)
S3—Fe2—C15 151.14 (17) O2—C26—O4 124.6 (4)
S4—Fe2—C11 154.08 (13) O2—C26—C22 123.5 (4)
S4—Fe2—C12 126.15 (14) O4—C26—C22 111.9 (4)
S4—Fe2—C13 91.59 (15) O5—C27—O7 124.6 (5)
S4—Fe2—C14 90.46 (16) O5—C27—C23 124.8 (5)
S4—Fe2—C15 123.03 (16) O7—C27—C23 110.6 (4)
C11—Fe2—C12 38.16 (18) O6—C28—O8 125.2 (6)
C11—Fe2—C13 64.78 (19) O6—C28—C24 123.6 (5)
C11—Fe2—C14 64.7 (2) O8—C28—C24 111.2 (4)
C11—Fe2—C15 38.5 (2) Fe5—C33—C34 69.2 (3)
C12—Fe2—C13 39.3 (2) Fe5—C33—C37 70.1 (3)
C12—Fe2—C14 65.4 (2) Fe5—C33—C38 133.0 (3)
C12—Fe2—C15 64.4 (2) C34—C33—C37 107.1 (4)
C13—Fe2—C14 39.1 (2) C34—C33—C38 128.1 (5)
C13—Fe2—C15 64.56 (18) C37—C33—C38 124.2 (4)
C14—Fe2—C15 38.2 (2) Fe5—C34—C33 72.7 (3)
Fe1—Fe3—Fe2 71.24 (2) Fe5—C34—C35 68.9 (3)
Fe1—Fe3—S1 50.68 (3) Fe5—C34—C39 127.1 (4)
Fe1—Fe3—S2 95.66 (4) C33—C34—C35 108.8 (4)
Fe1—Fe3—S3 52.77 (4) C33—C34—C39 124.4 (4)
Fe1—Fe3—S5 160.90 (4) C35—C34—C39 126.7 (4)
Fe1—Fe3—S6 97.96 (4) Fe5—C35—C34 72.1 (2)
Fe2—Fe3—S1 95.97 (4) Fe5—C35—C36 71.3 (2)
Fe2—Fe3—S2 50.10 (3) Fe5—C35—C40 125.2 (3)
Fe2—Fe3—S3 52.60 (3) C34—C35—C36 107.7 (4)
Fe2—Fe3—S5 97.86 (4) C34—C35—C40 126.7 (4)
Fe2—Fe3—S6 162.40 (4) C36—C35—C40 125.5 (5)
S1—Fe3—S2 78.75 (5) Fe5—C36—C35 68.8 (2)
S1—Fe3—S3 103.06 (5) Fe5—C36—C37 72.4 (2)
S1—Fe3—S5 148.17 (5) Fe5—C36—C41 129.2 (4)
S1—Fe3—S6 87.00 (5) C35—C36—C37 107.3 (4)
S2—Fe3—S3 102.34 (5) C35—C36—C41 126.2 (4)
S2—Fe3—S5 88.46 (5) C37—C36—C41 126.2 (4)
S2—Fe3—S6 147.04 (5) Fe5—C37—C33 71.4 (3)
S3—Fe3—S5 108.13 (6) Fe5—C37—C36 69.6 (2)
S3—Fe3—S6 109.82 (5) Fe5—C37—C42 129.0 (3)
S5—Fe3—S6 88.34 (5) C33—C37—C36 109.2 (4)
Fe1—Fe4—Fe2 71.26 (2) C33—C37—C42 124.2 (4)
Fe1—Fe4—S1 50.93 (3) C36—C37—C42 126.4 (5)
Fe1—Fe4—S2 95.53 (4) Fe6—C43—C44 70.0 (3)
Fe1—Fe4—S4 53.14 (3) Fe6—C43—C47 70.0 (3)
Fe1—Fe4—S7 166.99 (4) Fe6—C43—C48 132.6 (3)
Fe1—Fe4—S8 94.25 (4) C44—C43—C47 109.2 (4)
Fe2—Fe4—S1 95.99 (4) C44—C43—C48 126.0 (5)
Fe2—Fe4—S2 49.84 (3) C47—C43—C48 124.2 (4)
Fe2—Fe4—S4 52.45 (4) Fe6—C44—C43 72.0 (3)
Fe2—Fe4—S7 101.91 (5) Fe6—C44—C45 68.8 (2)
Fe2—Fe4—S8 156.96 (4) Fe6—C44—C49 129.7 (3)
S1—Fe4—S2 78.61 (5) C43—C44—C45 106.7 (4)
S1—Fe4—S4 103.64 (5) C43—C44—C49 127.1 (5)
S1—Fe4—S7 142.01 (5) C45—C44—C49 125.8 (4)
S1—Fe4—S8 87.79 (5) Fe6—C45—C44 71.8 (2)
S2—Fe4—S4 101.96 (5) Fe6—C45—C46 71.6 (2)
S2—Fe4—S7 87.78 (5) Fe6—C45—C50 128.4 (4)
S2—Fe4—S8 152.40 (5) C44—C45—C46 109.0 (4)
S4—Fe4—S7 113.87 (5) C44—C45—C50 124.4 (4)
S4—Fe4—S8 104.56 (6) C46—C45—C50 126.2 (5)
S7—Fe4—S8 88.46 (6) Fe6—C46—C45 69.5 (2)
Fe7—Fe5—Fe8 71.38 (2) Fe6—C46—C47 71.4 (3)
Fe7—Fe5—S9 52.56 (3) Fe6—C46—C51 128.3 (4)
Fe7—Fe5—S11 49.28 (3) C45—C46—C47 107.6 (5)
Fe7—Fe5—S12 96.31 (4) C45—C46—C51 127.2 (5)
Fe7—Fe5—C33 110.00 (14) C47—C46—C51 125.0 (4)
Fe7—Fe5—C34 114.40 (15) Fe6—C47—C43 71.4 (2)
Fe7—Fe5—C35 144.57 (15) Fe6—C47—C46 69.9 (2)
Fe7—Fe5—C36 172.18 (13) Fe6—C47—C52 131.4 (3)
Fe7—Fe5—C37 134.36 (13) C43—C47—C46 107.5 (4)
Fe8—Fe5—S9 53.02 (4) C43—C47—C52 124.8 (5)
Fe8—Fe5—S11 95.46 (4) C46—C47—C52 127.1 (5)
Fe8—Fe5—S12 48.94 (3) S13—C53—C54 118.9 (4)
Fe8—Fe5—C33 141.45 (14) S13—C53—C57 118.7 (4)
Fe8—Fe5—C34 174.23 (15) C54—C53—C57 122.1 (5)
Fe8—Fe5—C35 135.87 (16) S14—C54—C53 119.0 (4)
Fe8—Fe5—C36 108.88 (16) S14—C54—C58 115.7 (3)
Fe8—Fe5—C37 112.17 (15) C53—C54—C58 125.2 (4)
S9—Fe5—S11 101.51 (5) S15—C55—C56 118.9 (4)
S9—Fe5—S12 101.71 (5) S15—C55—C59 115.9 (3)
S9—Fe5—C33 95.87 (13) C56—C55—C59 125.1 (4)
S9—Fe5—C34 130.06 (14) S16—C56—C55 119.6 (4)
S9—Fe5—C35 156.50 (14) S16—C56—C60 115.4 (4)
S9—Fe5—C36 121.00 (13) C55—C56—C60 125.0 (5)
S9—Fe5—C37 91.73 (13) O9—C57—O11 124.2 (4)
S11—Fe5—S12 80.94 (5) O9—C57—C53 123.9 (5)
S11—Fe5—C33 114.74 (15) O11—C57—C53 111.9 (4)
S11—Fe5—C34 88.67 (15) O10—C58—O12 124.7 (5)
S11—Fe5—C35 99.01 (14) O10—C58—C54 123.4 (4)
S11—Fe5—C36 137.49 (13) O12—C58—C54 111.9 (4)
S11—Fe5—C37 151.92 (16) O13—C59—O15 125.2 (5)
S12—Fe5—C33 153.63 (14) O13—C59—C55 124.1 (5)
S12—Fe5—C34 128.22 (14) O15—C59—C55 110.7 (4)
S12—Fe5—C35 92.68 (16) O14—C60—O16 125.2 (4)
S12—Fe5—C36 89.33 (15) O14—C60—C56 124.3 (4)
S12—Fe5—C37 120.75 (15) O16—C60—C56 110.3 (4)
C33—Fe5—C34 38.08 (19) C1—C6—H1 109.5
C33—Fe5—C35 64.9 (2) C1—C6—H2 109.5
C33—Fe5—C36 64.7 (2) C1—C6—H3 109.5
C33—Fe5—C37 38.5 (2) H1—C6—H2 109.5
C34—Fe5—C35 39.0 (2) H1—C6—H3 109.5
C34—Fe5—C36 65.4 (2) H2—C6—H3 109.5
C34—Fe5—C37 64.2 (2) C2—C7—H4 109.5
C35—Fe5—C36 39.9 (2) C2—C7—H5 109.5
C35—Fe5—C37 64.86 (19) C2—C7—H6 109.5
C36—Fe5—C37 37.96 (18) H4—C7—H5 109.5
Fe7—Fe6—Fe8 71.97 (2) H4—C7—H6 109.5
Fe7—Fe6—S10 52.76 (4) H5—C7—H6 109.5
Fe7—Fe6—S11 49.31 (3) C3—C8—H7 109.5
Fe7—Fe6—S12 96.31 (4) C3—C8—H8 109.5
Fe7—Fe6—C43 137.19 (13) C3—C8—H9 109.5
Fe7—Fe6—C44 174.94 (14) H7—C8—H8 109.5
Fe7—Fe6—C45 141.21 (16) H7—C8—H9 109.5
Fe7—Fe6—C46 111.99 (15) H8—C8—H9 109.5
Fe7—Fe6—C47 110.24 (14) C4—C9—H10 109.5
Fe8—Fe6—S10 53.06 (3) C4—C9—H11 109.5
Fe8—Fe6—S11 96.70 (4) C4—C9—H12 109.5
Fe8—Fe6—S12 49.57 (3) H10—C9—H11 109.5
Fe8—Fe6—C43 110.93 (14) H10—C9—H12 109.5
Fe8—Fe6—C44 110.25 (15) H11—C9—H12 109.5
Fe8—Fe6—C45 138.98 (15) C5—C10—H13 109.5
Fe8—Fe6—C46 175.26 (17) C5—C10—H14 109.5
Fe8—Fe6—C47 138.22 (15) C5—C10—H15 109.5
S10—Fe6—S11 101.81 (5) H13—C10—H14 109.5
S10—Fe6—S12 102.28 (5) H13—C10—H15 109.5
S10—Fe6—C43 93.42 (13) H14—C10—H15 109.5
S10—Fe6—C44 124.58 (15) C11—C16—H16 109.5
S10—Fe6—C45 156.70 (16) C11—C16—H17 109.5
S10—Fe6—C46 126.85 (14) C11—C16—H18 109.5
S10—Fe6—C47 93.71 (13) H16—C16—H17 109.5
S11—Fe6—S12 81.05 (5) H16—C16—H18 109.5
S11—Fe6—C43 152.28 (15) H17—C16—H18 109.5
S11—Fe6—C44 133.61 (15) C12—C17—H19 109.5
S11—Fe6—C45 96.38 (16) C12—C17—H20 109.5
S11—Fe6—C46 87.96 (17) C12—C17—H21 109.5
S11—Fe6—C47 116.51 (16) H19—C17—H20 109.5
S12—Fe6—C43 118.38 (14) H19—C17—H21 109.5
S12—Fe6—C44 88.47 (14) H20—C17—H21 109.5
S12—Fe6—C45 94.77 (15) C13—C18—H22 109.5
S12—Fe6—C46 130.87 (14) C13—C18—H23 109.5
S12—Fe6—C47 153.44 (15) C13—C18—H24 109.5
C43—Fe6—C44 37.94 (19) H22—C18—H23 109.5
C43—Fe6—C45 64.3 (2) H22—C18—H24 109.5
C43—Fe6—C46 64.4 (2) H23—C18—H24 109.5
C43—Fe6—C47 38.6 (2) C14—C19—H25 109.5
C44—Fe6—C45 39.4 (2) C14—C19—H26 109.5
C44—Fe6—C46 65.6 (2) C14—C19—H27 109.5
C44—Fe6—C47 64.97 (19) H25—C19—H26 109.5
C45—Fe6—C46 39.0 (2) H25—C19—H27 109.5
C45—Fe6—C47 64.92 (19) H26—C19—H27 109.5
C46—Fe6—C47 38.7 (2) C15—C20—H28 109.5
Fe5—Fe7—Fe6 70.75 (2) C15—C20—H29 109.5
Fe5—Fe7—S9 50.18 (3) C15—C20—H30 109.5
Fe5—Fe7—S10 96.41 (4) H28—C20—H29 109.5
Fe5—Fe7—S11 52.42 (3) H28—C20—H30 109.5
Fe5—Fe7—S13 167.60 (5) H29—C20—H30 109.5
Fe5—Fe7—S14 94.49 (4) O3—C29—H31 109.5
Fe6—Fe7—S9 95.81 (4) O3—C29—H32 109.5
Fe6—Fe7—S10 50.43 (3) O3—C29—H33 109.5
Fe6—Fe7—S11 52.28 (4) H31—C29—H32 109.5
Fe6—Fe7—S13 102.21 (4) H31—C29—H33 109.5
Fe6—Fe7—S14 155.98 (5) H32—C29—H33 109.4
S9—Fe7—S10 80.11 (5) O4—C30—H34 109.5
S9—Fe7—S11 102.27 (5) O4—C30—H35 109.5
S9—Fe7—S13 142.09 (5) O4—C30—H36 109.5
S9—Fe7—S14 88.23 (5) H34—C30—H35 109.5
S10—Fe7—S11 102.45 (5) H34—C30—H36 109.5
S10—Fe7—S13 86.10 (5) H35—C30—H36 109.5
S10—Fe7—S14 153.08 (5) O7—C31—H37 109.5
S11—Fe7—S13 115.18 (5) O7—C31—H38 109.5
S11—Fe7—S14 103.71 (6) O7—C31—H39 109.5
S13—Fe7—S14 88.50 (6) H37—C31—H38 109.5
Fe5—Fe8—Fe6 71.29 (2) H37—C31—H39 109.5
Fe5—Fe8—S9 50.05 (3) H38—C31—H39 109.5
Fe5—Fe8—S10 96.67 (4) O8—C32—H40 109.5
Fe5—Fe8—S12 52.31 (4) O8—C32—H41 109.5
Fe5—Fe8—S15 156.34 (4) O8—C32—H42 109.5
Fe5—Fe8—S16 100.19 (5) H40—C32—H41 109.5
Fe6—Fe8—S9 96.43 (4) H40—C32—H42 109.5
Fe6—Fe8—S10 51.11 (3) H41—C32—H42 109.5
Fe6—Fe8—S12 53.04 (3) C33—C38—H43 109.5
Fe6—Fe8—S15 94.10 (4) C33—C38—H44 109.5
Fe6—Fe8—S16 163.16 (4) C33—C38—H45 109.5
S9—Fe8—S10 80.00 (5) H43—C38—H44 109.5
S9—Fe8—S12 102.11 (5) H43—C38—H45 109.5
S9—Fe8—S15 153.04 (5) H44—C38—H45 109.5
S9—Fe8—S16 88.30 (5) C34—C39—H46 109.5
S10—Fe8—S12 103.78 (5) C34—C39—H47 109.5
S10—Fe8—S15 87.56 (5) C34—C39—H48 109.5
S10—Fe8—S16 145.71 (5) H46—C39—H47 109.5
S12—Fe8—S15 104.05 (5) H46—C39—H48 109.5
S12—Fe8—S16 110.18 (5) H47—C39—H48 109.5
S15—Fe8—S16 88.75 (5) C35—C40—H49 109.5
Fe1—S1—Fe3 76.17 (4) C35—C40—H50 109.5
Fe1—S1—Fe4 76.05 (4) C35—C40—H51 109.5
Fe3—S1—Fe4 92.27 (5) H49—C40—H50 109.5
Fe2—S2—Fe3 76.99 (4) H49—C40—H51 109.5
Fe2—S2—Fe4 76.91 (4) H50—C40—H51 109.5
Fe3—S2—Fe4 91.88 (5) C36—C41—H52 109.5
Fe1—S3—Fe2 91.42 (5) C36—C41—H53 109.5
Fe1—S3—Fe3 77.67 (5) C36—C41—H54 109.5
Fe2—S3—Fe3 77.97 (4) H52—C41—H53 109.5
Fe1—S4—Fe2 91.33 (5) H52—C41—H54 109.5
Fe1—S4—Fe4 77.34 (4) H53—C41—H54 109.5
Fe2—S4—Fe4 78.47 (5) C37—C42—H55 109.5
Fe3—S5—C21 106.63 (19) C37—C42—H56 109.5
Fe3—S6—C22 106.32 (18) C37—C42—H57 109.5
Fe4—S7—C23 106.26 (19) H55—C42—H56 109.5
Fe4—S8—C24 106.5 (2) H55—C42—H57 109.5
Fe5—S9—Fe7 77.27 (4) H56—C42—H57 109.5
Fe5—S9—Fe8 76.93 (4) C43—C48—H58 109.5
Fe7—S9—Fe8 91.13 (5) C43—C48—H59 109.5
Fe6—S10—Fe7 76.80 (5) C43—C48—H60 109.5
Fe6—S10—Fe8 75.83 (4) H58—C48—H59 109.5
Fe7—S10—Fe8 91.40 (5) H58—C48—H60 109.5
Fe5—S11—Fe6 91.48 (5) H59—C48—H60 109.5
Fe5—S11—Fe7 78.30 (4) C44—C49—H61 109.5
Fe6—S11—Fe7 78.41 (5) C44—C49—H62 109.5
Fe5—S12—Fe6 91.62 (5) C44—C49—H63 109.5
Fe5—S12—Fe8 78.75 (5) H61—C49—H62 109.5
Fe6—S12—Fe8 77.40 (4) H61—C49—H63 109.5
Fe7—S13—C53 106.56 (18) H62—C49—H63 109.5
Fe7—S14—C54 106.8 (2) C45—C50—H64 109.5
Fe8—S15—C55 106.3 (2) C45—C50—H65 109.5
Fe8—S16—C56 105.81 (18) C45—C50—H66 109.5
F1—P1—F2 179.4 (2) H64—C50—H65 109.5
F1—P1—F3 90.2 (2) H64—C50—H66 109.5
F1—P1—F4 89.1 (2) H65—C50—H66 109.5
F1—P1—F5 89.4 (2) C46—C51—H67 109.5
F1—P1—F6 89.1 (2) C46—C51—H68 109.5
F2—P1—F3 90.1 (2) C46—C51—H69 109.5
F2—P1—F4 91.5 (2) H67—C51—H68 109.5
F2—P1—F5 90.4 (2) H67—C51—H69 109.5
F2—P1—F6 90.3 (2) H68—C51—H69 109.5
F3—P1—F4 90.3 (2) C47—C52—H70 109.5
F3—P1—F5 179.1 (2) C47—C52—H71 109.5
F3—P1—F6 89.8 (2) C47—C52—H72 109.5
F4—P1—F5 90.4 (2) H70—C52—H71 109.5
F4—P1—F6 178.2 (2) H70—C52—H72 109.5
F5—P1—F6 89.5 (2) H71—C52—H72 109.5
F7—P2—F8 175.7 (3) O11—C61—H73 109.5
F7—P2—F9 88.7 (3) O11—C61—H74 109.5
F7—P2—F10 88.1 (3) O11—C61—H75 109.5
F7—P2—F11 92.8 (4) H73—C61—H74 109.5
F7—P2—F12 91.9 (3) H73—C61—H75 109.5
F8—P2—F9 87.1 (3) H74—C61—H75 109.5
F8—P2—F10 90.7 (2) O12—C62—H76 109.5
F8—P2—F11 91.3 (3) O12—C62—H77 109.5
F8—P2—F12 89.2 (2) O12—C62—H78 109.5
F9—P2—F10 88.9 (2) H76—C62—H77 109.5
F9—P2—F11 177.7 (4) H76—C62—H78 109.5
F9—P2—F12 90.1 (2) H77—C62—H78 109.5
F10—P2—F11 89.4 (3) O15—C63—H79 109.5
F10—P2—F12 179.0 (2) O15—C63—H80 109.5
F11—P2—F12 91.6 (3) O15—C63—H81 109.5
C25—O3—C29 115.0 (4) H79—C63—H80 109.5
C26—O4—C30 114.2 (4) H79—C63—H81 109.5
C27—O7—C31 115.1 (4) H80—C63—H81 109.5
C28—O8—C32 114.2 (4) O16—C64—H82 109.5
C57—O11—C61 114.5 (5) O16—C64—H83 109.5
C58—O12—C62 116.0 (4) O16—C64—H84 109.5
C59—O15—C63 114.5 (4) H82—C64—H83 109.5
C60—O16—C64 114.8 (3) H82—C64—H84 109.5
Fe1—C1—C2 71.2 (3) H83—C64—H84 109.5

Footnotes

Supplementary data and figures for this paper are available from the IUCr electronic archives (Reference: WM2732).

References

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Associated Data

This section collects any data citations, data availability statements, or supplementary materials included in this article.

Supplementary Materials

Crystal structure: contains datablock(s) global, I. DOI: 10.1107/S1600536813007514/wm2732sup1.cif

e-69-0m227-sup1.cif (165.7KB, cif)

Structure factors: contains datablock(s) I. DOI: 10.1107/S1600536813007514/wm2732Isup2.hkl

e-69-0m227-Isup2.hkl (985.6KB, hkl)

Additional supplementary materials: crystallographic information; 3D view; checkCIF report


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