Startseite Crystal structure of 4,4′-bipyridin-1,1′-dium poly[bis(μ4-benzene-1,3,5-triyltris(hydrogen phosphonato-κ4O:O′:O′′:O′′′))zinc(II)], C11H11NO9P3Zn
Artikel Open Access

Crystal structure of 4,4′-bipyridin-1,1′-dium poly[bis(μ4-benzene-1,3,5-triyltris(hydrogen phosphonato-κ4O:O′:O′′:O′′′))zinc(II)], C11H11NO9P3Zn

  • Yabin Sun ORCID logo , Yan Chen ORCID logo und Daguang Wang ORCID logo EMAIL logo
Veröffentlicht/Copyright: 20. August 2020

Abstract

C11H11NO9P3Zn, monoclinic, P21/n (no. 14), a = 12.619(2) Å, b = 8.4948(12) Å, c = 13.954(2) Å, β = 90.588(3)°, V = 1495.7(4) Å3, Z = 4, Rgt(F) = 0.0413, wRref(F2) = 0.0965, T = 120(2) K.

CCDC no.: 2022887

A part of the title structure is shown in the figure. Table 1 contains crystallographic data and Table 2 contains the list of the atoms including atomic coordinates and displacement parameters.

Table 1:

Data collection and handling.

Crystal:Yellow block
Size:0.50 × 0.40 × 0.30 mm
Wavelength:Mo Kα radiation (0.71073 Å)
μ:2.02 mm−1
Diffractometer, scan mode:Bruker D8 QUEST, φ and ω
θmax, completeness:26.0°, >99%
N(hkl)measured, N(hkl)unique, Rint:9136, 2951, 0.058
Criterion for Iobs, N(hkl)gt:Iobs > 2 σ(Iobs), 2228
N(param)refined:229
Programs:Bruker [1], SHELX [2], [3]
Table 2:

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

AtomxyzUiso*/Ueq
C10.8793(3)0.6266(4)0.5838(3)0.0184(9)
H10.53530.67670.38390.045*
C20.8713(3)0.6923(4)0.4919(3)0.0193(9)
H2A0.89130.79880.48200.023*
C30.8342(3)0.6031(4)0.4154(3)0.0184(9)
C40.8080(3)0.4455(4)0.4298(3)0.0220(9)
H40.78190.38470.37750.026*
C50.8191(3)0.3763(4)0.5189(3)0.0185(9)
C60.8523(3)0.4689(4)0.5952(3)0.0210(9)
H60.85680.42330.65730.025*
C70.5234(4)0.5763(5)0.5151(3)0.0241(10)
C80.5429(5)0.6093(6)0.6110(4)0.0529(16)
H80.52710.53260.65830.063*
C90.5845(5)0.7514(6)0.6380(4)0.0589(18)
H9A0.59630.77350.70400.071*
C100.5485(4)0.6932(5)0.4503(3)0.0375(12)
H100.63570.94870.59130.047*
C110.5921(4)0.8323(6)0.4804(4)0.0425(13)
H110.61080.91040.43480.051*
N10.6084(3)0.8582(4)0.5728(3)0.0389(10)
O10.7925(3)0.0798(3)0.4493(2)0.0314(8)
O20.9045(3)0.1362(4)0.5960(3)0.0581(12)
H20.91050.03890.60520.087*
O30.7065(3)0.1413(4)0.6030(2)0.0409(9)
O40.9893(2)0.8716(3)0.65547(19)0.0235(7)
O50.8261(2)0.7936(3)0.7396(2)0.0283(7)
H50.81910.74760.79250.042*
O60.9827(2)0.6163(3)0.75222(19)0.0251(7)
O70.8723(2)0.8445(3)0.29502(19)0.0252(7)
O80.7032(2)0.6910(3)0.27114(19)0.0255(7)
O90.8721(3)0.5731(3)0.2250(2)0.0338(8)
H90.92140.52390.25260.051*
P10.92645(9)0.72922(12)0.68808(7)0.0173(2)
P20.79970(9)0.17005(12)0.54090(7)0.0197(3)
P30.81958(9)0.68718(12)0.29698(7)0.0188(3)
Zn10.86114(4)1.06319(5)0.32777(3)0.01940(15)

Source of material

A mixture of 1,3,5-benzenetriphosphonic acid (0.2 mmol), 4,4′-bipyridine (0.2 mmol), Zn(NO3)2 ⋅ 6(H2O) (0.2 mmol), H2O (8 mL) was stirred for ten minutes. The mixture was transferred in a 25 mL stainless steel reactor with a Teflon liner and heated from 298 to 453 K in 5 h and a constant temperature was maintained at 453 K for 72 h. After cooling to room temperature, yellow block crystals were collected in 57.2% yield based on Zn.

Experimental details

Coordinates of hydrogen atoms were added. Their Uiso values were set to 1.2Ueq of the parent atoms.

Comment

A large number of metal coordination compounds containing various metal cations and organic ligands have been obtained. Currently, linking metal cations and organic ligands to build coordination compounds has become a popular synthetic strategy [4], [5]. Especially metal organophosphonates have attracted wide attention for potential design of chain, layered, and open-framework materials with numerous combinations of metal sources and organophosphonate units. Use of rigid multifunctional phosphonates, has been recently explored to avoid formation of conventional dense layered structures with monophosphonic acids or diphosphonic acids and to favor formation of more open structures [6], [7]. The 1,3,5-benzenetriphosphonic acid (BTP) was found to form a variety of self-assembly networks in the presence of organic amines [8]. In spite of some reports, still a limited number of BTP-containing open-framework materials are known.

The asymmetric unit of the title structure contains one crystallographically independent zinc(II) ion, one 1,3,5-benzenetri(hydrogen phosphonato), and a half of 4,4′-bipyridine with a proton at the nitrogen. The zinc(II) is four-coordinated by O atoms from four 1,3,5-benzenetri(hydrogen phosphonato) ligands, forming a distorted tetrahedral geometry. The distances between Zn and the coordinated atoms are: d(Zn1⋯O1) = 1.917(3) Å, d(Zn1⋯O4) = 1.979(3) Å, d(Zn1⋯O7) = 1.919(3) Å, and d(Zn1⋯O8) = 1.929(3) Å, respectivily. The Zn(II) coordination angles are in the normal range from 103.14(12)° to 113.95(12)°. The above mentioned bond distances and angles are all in their normal ranges [9]. The Zn(II) ions are linked with phosphonate groups to form a two-dimensional framework parallel to the ab plane, with 4,4′-bipyridinium locating between adjacent layers. There are related structures. For example, zinc 1,3,5-benzenetriphosphonates (ZBP) was prepared in the presence of organic cations containing layers composed of inorganic 1D chains bridged with benzene rings, resembling layered metal phosphates rather than conventional layered phosphonates [10]. ZnBP-NH4 synthesized from BTP assisted by urea reveals a 3D framework built from layers linked by ZnO4 tetrahedra [11].

Acknowledgements

This work is supported by the project development plan of science and technology of Jilin Province.

References

1. Bruker. APEX2, SAINT and SADABS. Bruker AXS Inc., Madison, WI, USA (2009).Suche in Google Scholar

2. Sheldrick, G. M.: SHELXT – Integrated space-group and crystal-structure determination. Acta Crystallogr. A71 (2015) 3–8.10.1107/S2053273314026370Suche in Google Scholar PubMed PubMed Central

3. Sheldrick, G. M.: Crystal structure refinement with SHELXL. Acta Crystallogr. C71 (2015) 3–8.10.1107/S2053229614024218Suche in Google Scholar PubMed PubMed Central

4. Wang, Q.; Astruc, D.: State of the art and prospects in Metal–Organic Framework (MOF)-Based and MOF-derived nanocatalysis. Chem. Rev. 120 (2020) 1438–1511.10.1021/acs.chemrev.9b00223Suche in Google Scholar PubMed

5. Yang, X.; Zhang, Y.; Li, F.; Guo, T.; Wu, Y.; Jin, F.; Fang, M.; Lan, Y.; Li, Y.; Zhou, Y.; Zou, Z.: Theoretical and experimental studies on three water-stable, isostructural, paddlewheel based semiconducting metal–organic frameworks. Dalton Trans. 46 (2017) 8204–8218.10.1039/C7DT01560GSuche in Google Scholar PubMed

6. Zorlu, Y.; Erbahar, D.; Çetinkaya, A.; Bulut, A.; Erkal, T. S.; Yazaydin, A. O.; Beckmann, J.; Yücesan, G.: A cobalt arylphosphonate MOF-superior stability, sorption and magnetism. Chem. Commun. 55 (2019) 3053–3056.10.1039/C8CC09655DSuche in Google Scholar PubMed

7. Yücesan, G.; Zorlu, Y.; Stricker, M.; Beckmann, J.: Metal-organic solids derived from arylphosphonic acids. Coord. Chem. Rev. 369 (2018) 105–122.10.1016/j.ccr.2018.05.002Suche in Google Scholar

8. Maeda, K.; Takamatsu, R.; Mochizuki, M.; Kawawa, K.; Kondo, A.: Formation of zeolite-like zinc 1,3,5-benzenetriphosphonate open-frameworks by topotactic pillaring of anionic layers. Dalton Trans. 42 (2013) 10424–10432.10.1039/c3dt33037kSuche in Google Scholar PubMed

9. Hasegawa, Y.; Kitagawa, Y.: Thermo-sensitive luminescence of lanthanide complexes, clusters, coordination polymers and metal-organic frameworks with organic photosensitizers. J. Mater. Chem. C 7 (2019) 7494–7511.10.1039/C9TC00607ASuche in Google Scholar

10. Maeda, K.; Hatasawa, H.; Kawawa, K.; Nagayoshi, N.; Matsushima, Y.: Preparation and intercalation properties of novel layered zinc 1,3,5-benzenetriphosphonates composed of anionic hybrid layers. Chem. Lett. 40 (2011) 215–217.10.1246/cl.2011.215Suche in Google Scholar

11. Kinnibrugh, T. L.; Ayi, A. A.; Bakhmutov, V. I.; Zoń, J.; Clearfield, A.: Probing structural changes in a phosphonate-based metal–organic framework exhibiting reversible dehydration. Cryst. Growth Des. 13 (2013) 2973–2981.10.1021/cg400399vSuche in Google Scholar

Received: 2020-07-12
Accepted: 2020-08-12
Published Online: 2020-08-20
Published in Print: 2020-10-27

©2020 Yabin Sun et al., published by De Gruyter, Berlin/Boston

This work is licensed under the Creative Commons Attribution 4.0 International License.

Artikel in diesem Heft

  1. Frontmatter
  2. Crystal structure of poly[tetraaqua-bis(μ4-5-(4-carboxy-benzylamino)-isophthalato-κ4O,O′:O′′:O′′′)-(μ2-4,4′-di(1H-imidazol-1-yl)-1,1′-biphenyl-κ2N:N′)dicadmium(II)], C25H22N3O8Cd
  3. The crystal structure of 2-(2-(2,3,4,9-tetrahydro-1H-pyrido[3,4-b]indol-2-ium-1-yl)phenoxy)acetate, C19H18N2O3
  4. Crystal structure of poly[aqua-μ2-4,4′-bipyridine-κ2N:N′)-μ2-bis(2-(2-((2,6-dichlorophenyl)amino)phenyl)acetato-κ2O,O′)zinc(II)], C38H28Cl4N4O4Zn
  5. Crystal structure of 1-(2-(1H-indol-3-yl)ethyl)-4-benzyl-3-hydroxy-3,6-diphenylpiperazine-2,5-dione, C33H29N3O3
  6. The crystal structure 2,2′-bipyridine-κ2N,N′-(2-(3-amino-4-chlorobenzoyl)benzoato-κ1O)-(2-(3-amino-4-chlorobenzoyl)benzoato-κ2O,O′)zinc(II) — ethanol (1/1), C40H32Cl2N4O7Zn
  7. Crystal structure of catena-poly[(μ3-2-carboxy-4-(3-carboxy-5-carboxylatophenoxy)benzoato-κ3O:O′:O′′)-bis(μ2-4,4′-bis(pyrid-4-yl)biphenyl-k1N)copper(II)], C60H40N4O9Cu
  8. The crystal structure of dimethylammonium catena-[di(μ-aqua)-bis(μ9-benzene-1,3,5-tricarboxylato)pentalithium], C20H16Li5NO13
  9. Crystal structure of tetraaqua-bis(3,5-di(pyridin-4-yl)-1,2,4-triazol-1-ido-κ1N)nickel(II) dihydrate, C24H28O6N10Ni
  10. The crystal structure of tetrakis(1-methylimidazole-κ1N)-oxido-(sulfato-κ1O)vanadium(IV), C16H24N8O5SV
  11. Crystal structure of methyl 2-(6,11-dioxo-2,3,6,11-tetrahydro-1H-benzo[f]pyrrolo[2,1-a]isoindole-5-carbonyl)benzoate, C24H17NO5
  12. Crystal structure of (E)-N′-(2-hydroxy-4-(2-(piperidin-1-yl)ethoxy)benzylidene) nicotinohydrazide monohydrate, C20H24N4O3 ⋅ H2O
  13. Crystal structure of poly[bis(μ3-(1-(3,5-di(1H-imidazol-1-yl)phenyl)-1H-imidazole-κ3N:N′:N′′)cobalt(II)] dinitrate — N,N-dimethylformamide (1/4), C42H52N18O10Co
  14. The crystal structure bis{hexakis(1-methyl-1H-imidazole-κ1N)cobalt(II)} tetrakis(μ3-oxido)-octakis(μ2-oxido)-tetradecaoxido-octamolybdate(VI), C24H36CoMo4N12O13
  15. Crystal structure of di-μ-nicotinato-κ2N:O; κ2O:N-bis-[aqua-bis(benzyl)(nicotinato-κ2O,O′)tin(IV)], C52H48N4O10Sn2
  16. Crystal structure of dichlorido-bis[2-(2-(3-(pyridin-2-yl)-1H-1,2,4-triazol-5-yl)phenoxy)benzoic acidmanganese(II) monohydrate, C40H30N8O7MnCl2
  17. The crystal structure of benzyl 3β-acetylglycyrrhetate, C39H54O5
  18. Synthesis and crystal structure of (E)-1-benzyl-3-(4-methoxystyryl)quinoxalin-2(1H)-one, C24H20N2O2
  19. Crystal structure of trans-dichloridobis(4-chlorophenyl-κC1)(1,10-phenanthroline-κ2N,N′)tin(IV) dimethylsulphoxide solvate, C26H22Cl4N2OSSn
  20. Crystal structure of phenyl(1,3,4a-triphenyl-4a,5,6,10b-tetrahydro-1H-[1,4]oxazino[2,3-c]quinolin-5-yl)methanone, C36H28N2O2
  21. Crystal structure of (4aS,5S,6aS,6a1S, 10aS)-4a,5,6a,6a1,9,10-hexahydro-7H-4,5-methanocyclobuta[4,5]naphtho[8a,1-b]pyran-6(2H)-one, C15H16O2
  22. Crystal structure of [(Z)-O-isopropyl N-(4-chlorophenyl)thiocarbamato-κS]-(triphenylphosphine-κP)-gold(I), C28H26AuClNOPS
  23. Crystal structure of (μ2-1,1′-bis(diphenylphosphino)ferrocene-P,P′)-bis[(Z)-O-isopropyl N-(4-chlorophenyl)thiocarbamato-S]-di-gold(I) acetonitrile di-solvate, C54H50Au2Cl2FeN2O2P2S2⋅2(C2H3N)
  24. Crystal structure of (6aR,6a1S,10aS)-2,4a,6a,6a1,9,10-hexahydro-7H-4,5-methanocyclobuta[4,5]naphtho[8a,1-b]pyran, C15H16O
  25. Crystal structure of 5,17-diformyl-25,26,27,28-tetrahydroxycalix[4]arene- dichloromethane, C31H26Cl2O6
  26. Crystal structure of 2-tert-butyl 1-methyl 5-{4-[(methoxycarbonyl)amino]phenyl}-2,5-dihydro-1H-pyrrole-1,2-dicarboxylate, C19H24N2O6
  27. Crystal structure of [2-carboxybenzene-1-thiolato-S]-(triethylphosphane-P)-gold(I), C13H20AuO2PS
  28. Synthesis and crystal structure of bis(5-methyl-2-aldehyde-phenolato-κ2O1,O2)copper(II), C16H14CuO4
  29. Crystal structure of poly[triaqua-(di(2,2′-bipyridine-κ2N,N′)-μ4-silanetetrayltetrakis(benzene-4,1-diyl)tetrakis (hydrogen phosphonato)-κ4O:O′:O′′:O′′′) dicadmium(II)], C44H42N4O15P4Cd2Si
  30. Crystal structure of bis[μ2-(N,N-diethylcarbamodithioato-κSSS′)]-bis(triethylphosphine-P)-di-silver(I), C22H50Ag2N2P2S4
  31. Crystal structure of bis[μ2-(pyrrolidine-1-carbodithioato-κSSS′)]-bis(triethylphosphine-κP)disilver(I), C22H46Ag2N2P2S4
  32. Crystal structure of bis[μ2-(N-(2-hydroxyethyl)-N-methylcarbamodithioato-κSSS′)]-bis(triethylphosphine-P)-di-silver(I), C20H46Ag2N2O2P2S4
  33. The crystal structure of (2E,2′E)-,2,2′-bis[1-(2-pyrazinyl)ethylidene]carbonimidic dihydrazide, C13H15N9
  34. The crystal structure of (E)-1-(quinolin-2-ylmethyl)-2-((1-(quinolin-2-ylmethyl)pyridin-2(1H)-ylidene)amino)pyridin-1-ium, C30H25BrN5
  35. Crystal structure of catena-poly[(μ2-1-((benzotriazol-1-yl)methyl)-1H-1,3-imdazole-κ2N:N′)-(1-((benzotriazol-1-yl)methyl)-1H-1,3-imdazole-κ1N)-(methanol-κ1O)mercury(II)] dinitrate, C21H22N12O7Hg
  36. Crystal structure of 1-(6-hydroxy-2-phenylbenzofuran-5-yl)ethan-1-one, C16H12O3
  37. The crystal structure of oxonium hexaquaaluminium disulfate hexahydrate
  38. Crystal structure of catena{(μ2-1,10-phenanthroline-κ4N,N,N′,N′)-(μ2-1,10-phenanthroline-κ3N,N,N′)potassium(I) {[bis(2-hydroxyethyl)iminiumyl](sulfanidyl)methyl}sulfanide hemi(1,10-phenanthroline)}, {C24H16KN4, 0.5(C12H8N2), C5H10NO2S2}
  39. Crystal structure of chlorido-[(N,N-di-isobutyl)dithiocarbamato-κ2S,S′]-di(4-methylbenzyl-κC)tin(IV), C25H36ClNS2Sn
  40. Crystal structure of chlorido-(η5-pentamethylcyclopentadienyl)-(4-chloro-4-pyridyl-2,2′:6′,2′′-terpyridine-κ2N,N′) rhodium(III) hexaflourophosphate, C31H29Cl2F6N3PRh
  41. The crystal structure of catena-poly[bis-(3,5-dinitro-1,2,4-triazolato-κ2N:O)-(μ2-1,4-bis(1-imidazolyl)benzene-κ2N:N′)copper(II)], C16H10CuN14O8
  42. Crystal structure of poly[triaqua-bis(μ3-3,3′-((5-carboxylato-1,3-phenylene)bis(oxy))dibenzoato)-tris(1,10-phenanthroline)cobalt(II)], C78H46N6O20Co3
  43. The crystal structure of 2,4-dihydroxybenzoic acid–nicotinamide–methanol (1/1/1), C15H18N2O6
  44. The crystal structure of aqua{N,N,N′,N′-tetrakis[(1H-benzimidazol-κN3) methyl]cyclohexane-1,2-diamine}lead(II) diacetate–methanol (1/2), C44H54N10O7Pb
  45. Crystal structure of (2-amino-5-bromo-3-iodophenyl)(3-(4-chlorophenyl)oxiran-2-yl)methanone, C15H10BrClINO2
  46. Synthesis and crystal structure of 3-octyl-5,5-diphenylimidazolidine-2,4-dione, C23H28N2O2
  47. Synthesis and crystal structure of 2-azido-N-(4-nitrophenyl)acetamide, C8H7N5O3
  48. Crystal structure of tert-butyl (1S,2R,5R)-2-(hydroxymethyl)-4-(4-methoxyphenyl)-6-oxa-3-azabicyclo[3.1.0]hexane-3-carboxylate, C17H23NO5
  49. Crystal structure of 4-[(4-methoxy-2-nitrophenyl)carbamoyl]butanoic acid, C12H14N2O6
  50. Crystal structure of 3-ethyl-1-[(E)-[(2E)-3-phenylprop-2-en-1-ylidene]amino]thiourea, C12H15N3S
  51. Crystal structure of 4,4′-bipyridin-1,1′-dium poly[bis(μ4-benzene-1,3,5-triyltris(hydrogen phosphonato-κ4O:O′:O′′:O′′′))zinc(II)], C11H11NO9P3Zn
  52. Crystal structure of (μ2-1,1′-bis(diphenylphosphino)butane-κ2P,P′)-bis[(Z)-N-(3-fluorophenyl)-O-methylthiocarbamato-κS]-di-gold(I), C44H42Au2F2N2O2P2S2
  53. Crystal structure of (μ2-1,1′-bis(diphenylphosphino)hexane-κ2P,P′)-bis[(Z)-N-(3-fluorophenyl)-O-methylthiocarbamato-κS]digold(I), C46H46Au2F2N2O2P2S2
  54. Crystal structure of tetrakis (N-(2-hydroxyethyl)-N-isopropylcarbamodithioato-κS,S′)-(μ2(2-(pyridin-4-yl)vinyl)pyridine-κN,N′)dicadmium(II), C36H58Cd2N6O4S8
  55. Crystal structure of 4-(2-(benzo[b]thiophen-2-yl)-3,3,4,4,5,5-hexafluorocyclopent-1-en-1-yl)-1,5-dimethyl-1H-pyrrole-2-carbonitrile, C20H12F6N2S
  56. Crystal structure of bis(octahydrocyclopenta[c]pyrrolium)pentachlorobismuthate(III), (C7NH14)2BiCl5
  57. The crystal structure of diaqua-tris(nitrato-κ2O,O′)-bis(4,4,5,5-tetramethyl-2-(p-pyridyl)imidazoline-1-oxyl 3-oxide-κN)samarium(III), C24H36N9O15Sm
  58. Synthesis and crystal structure of methyl 2-(2-((tert-butoxycarbonyl)amino)phenyl)-2-(4-oxo-4H-chromen-3-yl)acetate, C23H23NO6
  59. Crystal structure of O-hexyl benzoylcarbamothioate, C14H19NO2S
  60. Crystal structure of chlorido-(O-methyl phenylcarbamothioamide-κS)-bis(triphenylphosphane-κP)silver(I), C44H39AgClNOP2S
  61. Crystal structure of chlorido-(O-ethyl phenylcarbamothioamide-κS)-bis(triphenylphosphane-κP)-silver(I), C45H41AgClNOP2S
  62. Crystal structure of 4-[(2-methoxyphenyl)carbamoyl]butanoic acid, C12H15NO4
  63. Crystal structure of ethyl 4-methyl-2-oxo-5-phenyl-1,3,4-oxadiazinane-3-carboxylate, C13H16N2O4
  64. Crystal structure of catena-poly[diaqua(μ2-2-(hydroxymethyl)-1H-imidazole-4,5-dicarboxylato)cadmium(II)], C6H8CdN2O7
  65. Crystal structure of (1S)-N-(chloromethyl)-1-((4S,6aR,8aS, 8bR,9aR)-4-methoxy-6a,8a-dimethyl-1,3,4, 5,6,6a,6b,7,8,8a,9a,10,10a,10b-tetradecahydro-8bH-naphtho[2′,1′:4,5] indeno[1,2-b]oxiren-8b-yl)-N-methylethan-1-amine, C24H46ClNO5
  66. Crystal structure of 4-[(3,5-dichlorophenyl)carbamoyl]butanoic acid, C11H11Cl2NO3
  67. Crystal structure of (2Z)-2-amino-3-[(E)-[(2,4-dihydroxyphenyl)methylidene]-amino]but-2-enedinitrile, C11H8N4O2
  68. Crystal structure of 3-methyl-1-[(E)-(4-phenylbutan-2-ylidene)amino]thiourea, C12H17N3S
  69. Crystal structure of carbonyl{hydridotris[3-phenyl-5-methylpyrazol-1-yl]borato-κ3N,N′N′′}copper(I), C31H28BCuN6O
  70. Crystal structure of ethane-1,2-diylbis(diphenylphosphine oxide) – dihydrogenperoxide (1/2), C26H28O6P2
  71. Crystal structure of 2-(pyridin-2-ylamino)pyridinium chloride dibenzyldichlorostannane, [C10H10N3]Cl, C14H14Cl2Sn
  72. Crystal structure of 4-[(3-methoxyphenyl)carbamoyl]butanoic acid, C12H15NO4
  73. Crystal structure of dichlorido-bis(tri-4-tolylphosphane oxide-κO)-di(4-chlorophenyl-κC)tin(IV), C54H50Cl4O2P2Sn
  74. Crystal structure of dichloridodimethylbis(tri-4-tolylphosphane oxide-κO)-tin(IV), C44H48Cl2O2P2Sn
  75. Crystal structure of chlorido(2-methylquinolin-8-olato-κ2N,O)-bis(4-tolyl-κC)tin(IV), C24H22ClNOSn
  76. Crystal structure of (E)-dichloro(1-chloro-3-methoxyprop-1-en-2-yl)(4-methoxyphenyl)-λ4-tellane, C11H13Cl3O2Te
  77. Crystal structure of bis{N-methyl-N′-[3-(4-methoxyphenyl)-1-methylpropane-1-ylidene]carbamohydrazonothioato}zinc(II), C26H36N6O2S2Zn
  78. Crystal structure of (2-carboxy-4-(3-carboxy-5-carboxylatophenoxy)benzoato-κ2O,O′)bis(1,10-phenantroline-κ2N,N′)cobalt(II), C40H24N4O9Co
  79. The crystal structure of (3S,8R,10R,14R)-17-((2S,5S)-5-(2-hydroxypropan-2-yl)-2-methyltetrahydrofuran-2-yl)-4,4,8,10,14-pentamethyl-12-oxohexadecahydro-1H-cyclopenta[a]phenanthren-3-yl acetate, C32H52O5
  80. Crystal structure of (μ2-1,1′-bis(diphenylphosphino)ferrocene-κ2P,P′)-bis[(Z)N-(3-fluorophenyl)-O-methylthiocarbamato-S]digold(I) chloroform solvate, C50H42Au2F2FeN2O2P2S2, CHCl3
  81. Crystal structure of poly[bis(μ2-1,4-di(1H-imidazol-1-yl)benzene-κ2N:N′)-(μ2-tetraoxidomolybdato(VI)-κ2O:O′)cobalt(II)], C24H20N8O4MoCo
Heruntergeladen am 9.9.2025 von https://www.degruyterbrill.com/document/doi/10.1515/ncrs-2020-0352/html
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