Startseite The crystal structure of fac-tricarbonyl (N′-benzoyl-N,N-diphenylcarbamimidothioato-κ2S,O)-(pyrazole-κN)rhenium(I) — methanol (1/1) C26H23O4N4SRe
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The crystal structure of fac-tricarbonyl (N′-benzoyl-N,N-diphenylcarbamimidothioato-κ2S,O)-(pyrazole-κN)rhenium(I) — methanol (1/1) C26H23O4N4SRe

  • Wesley K. Komane ORCID logo EMAIL logo , Pennie Mokolokolo , Banele Vatsha und Amanda-Lee E. Manicum
Veröffentlicht/Copyright: 17. März 2021

Abstract

C26H23O4N4SRe, triclinic, P1 (no. 2), a = 9.919(2) Å, b = 11.752(3) Å, c = 12.717(3) Å, α = 111.098(7)°, β = 94.467(7)°, γ = 98.295(7)°, V = 1354.9(5) Å3, Z = 2, Rgt(F) = 0.0342, wRref(F2) = 0.0843, T = 102.0(2) K.

CCDC no.: 2068004

The molecular 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 cuboid
Size:0.32 × 0.17 × 0.06 mm
Wavelength:Mo Kα radiation (0.71073 Å)
μ:4.61 mm−1
Diffractometer, scan mode:Bruker APEX-II, φ and ω
θmax, completeness:28.4°, >99%
N(hkl)measuredN(hkl)uniqueRint:28,629, 6727, 0.067
Criterion for Iobs, N(hkl)gt:Iobs > 2 σ(Iobs), 6176
N(param)refined:352
Programs:Bruker [1], SIR97 [2], Olex2 [3], SHELX [4], Diamond [5]
Table 2:

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

xyzUiso*/Ueq
Re10.15615 (2)0.26486 (2)0.61077 (2)0.02059 (6)
S10.13423 (10)0.46874 (10)0.74707 (10)0.0256 (2)
O40.3664 (3)0.3055 (3)0.6821 (3)0.0266 (6)
O2−0.1446 (3)0.2264 (3)0.5100 (3)0.0363 (8)
O10.1892 (4)0.0175 (3)0.4294 (3)0.0473 (10)
N30.4193 (3)0.5187 (3)0.7938 (3)0.0232 (7)
O30.0642 (4)0.1328 (4)0.7692 (3)0.0426 (9)
N10.2368 (4)0.3666 (4)0.5072 (3)0.0263 (8)
N40.3080 (3)0.6801 (3)0.8412 (3)0.0214 (7)
O90.5471 (4)0.1927 (4)0.4341 (4)0.0519 (10)
N20.3377 (4)0.3371 (4)0.4425 (4)0.0357 (9)
C2−0.0301 (4)0.2388 (4)0.5471 (4)0.0243 (8)
C320.6289 (4)0.2788 (4)0.7371 (4)0.0238 (8)
H320.5669380.2100600.6821150.029*
C30.0987 (5)0.1825 (4)0.7086 (4)0.0287 (9)
C330.7604 (5)0.2659 (4)0.7690 (4)0.0285 (9)
H330.7887880.1885860.7351040.034*
C70.4436 (4)0.4044 (4)0.7505 (3)0.0212 (8)
C310.5870 (4)0.3918 (4)0.7851 (3)0.0207 (8)
C110.1889 (4)0.7385 (4)0.8419 (3)0.0204 (8)
C340.8517 (5)0.3657 (5)0.8506 (4)0.0325 (10)
H340.9416480.3564100.8732650.039*
C160.1444 (5)0.7616 (4)0.7470 (4)0.0279 (9)
H160.1905420.7389560.6818360.034*
C80.2972 (4)0.5551 (4)0.7921 (3)0.0202 (8)
C10.1771 (4)0.1104 (4)0.4981 (4)0.0295 (9)
C120.1242 (5)0.7729 (4)0.9379 (4)0.0296 (9)
H120.1575610.7584041.0032130.036*
C350.8098 (5)0.4785 (5)0.8982 (5)0.0376 (11)
H350.8723510.5475560.9522030.045*
C360.6770 (5)0.4915 (4)0.8675 (4)0.0311 (10)
H360.6477500.5682170.9026360.037*
C40.1875 (5)0.4534 (5)0.4804 (5)0.0365 (11)
H00Q0.1144820.4917460.5125200.044*
C150.0303 (5)0.8188 (5)0.7490 (4)0.0378 (12)
H15−0.0015970.8352380.6844320.045*
C50.2571 (6)0.4808 (5)0.3988 (5)0.0424 (12)
H00S0.2412450.5389650.3653480.051*
C210.4346 (4)0.7584 (4)0.9072 (4)0.0243 (9)
C14−0.0360 (5)0.8513 (5)0.8423 (5)0.0400 (12)
H14−0.1140060.8896570.8421260.048*
C260.4815 (5)0.7536 (4)1.0109 (4)0.0305 (10)
H260.4316800.6966801.0376610.037*
C220.5071 (4)0.8416 (4)0.8684 (4)0.0287 (9)
H220.4754380.8453960.7974560.034*
C130.0100 (5)0.8288 (5)0.9381 (5)0.0365 (11)
H13−0.0365510.8514481.0030080.044*
C60.3530 (6)0.4059 (5)0.3774 (5)0.0458 (13)
H00Y0.4185340.4026920.3262000.055*
C250.6010 (5)0.8318 (5)1.0752 (4)0.0356 (11)
H250.6331820.8285521.1462420.043*
C90.5515 (7)0.0657 (6)0.3820 (6)0.0563 (16)
H930.6278470.0555670.3369820.084*
H910.4646860.0221110.3321470.084*
H920.5651010.0310710.4407450.084*
C230.6269 (5)0.9196 (5)0.9345 (5)0.0393 (12)
H230.6769350.9771270.9085760.047*
C240.6735 (5)0.9144 (5)1.0366 (5)0.0393 (12)
H240.7558060.9677391.0807580.047*
H00B0.394 (6)0.287 (6)0.457 (5)0.049 (17)*
H940.624 (12)0.254 (12)0.494 (10)0.16 (5)*

Source of material

Fac-[Re(S,O)(CO)3(H2O)] (S,O = N′-benzoyl-N,N-diphenylcarbamimidothioate 20 mg, 0.029 mmol) was dissolved in methanol (3 ml) and pyrazole (3.29 mg, 0.00571 mmol) dissolved in (2 ml) methanol was added. The solution was then stirred for 30 min and then refluxed for 24 h at room temperature and the light yellow solution was left to crystallize. (Yield = 15.25 mg, 84%; FTIR (cm−1) ν(CO): 2015, 1889.

Experimental details

All hydrogen atoms were positioned geometrically and refined discernibly using a riding model, with fixed C–HAromatic = 0.97 Å. The H atoms isotropic displacement parameters were fixed; Uiso(H) = 1.2Ueq(C) for aromatic, allowing them to ride on the parent atom. The graphics were obtained using the DIAMOND program with 50% probability ellipsoids. All the H-atoms of the title structure were omitted for clarity.

Comment

The chemistry of fac-[Re(CO)3]+ precursor has recently drawn attention of several research groups because of its potential use as a therapeutic radiopharmaceutical. This has led to an increased investigation of rhenium metal complexes for their potential use as therapeutic and diagnostic agents [6], [7], [8], [9]. Our research group is focusing on the synthesis of rhenium(I) tri- and dicarbonyl complexes for both diagnostic (depending on the type of the bidentate ligand used) and therapeutic applications [10], [11], [12], [13], [14]. This is done by coordinating a series of bi- and monodentate ligand systems to a rhenium metal center using a [2+1] mixed ligand approach. These coordinating ligands for the structure reported comprises of donor atoms such as sulfur and oxygen.

The molecular structure of the title complex comprises of three facial tricarbonyl ligands, a thiourea bidentate ligand in the equatorial plane which is trans to two of the carbonyl ligands and an N-coordinated pyrazole monodentate ligand in the axial position. The molecular structure has a guest molecule (methanol solvent) which is omitted for clarity. The bond distances between rhenium and the three carbons of the carbonyl ligands range between 1.894(4) and 1.917(5) Å, whereas Re1–O4, Re1–N1 and Re1–S1 were arranged in an increasing order as follows: 2.123(3), 2.196(4) and 2.452(12) Å, respectively. The results obtained correlate well with other structures already reported in literature by our research group [10], [11] and Warsink [15]. The polyhedron geometry of the complex reveals an octahedral distortion around the rhenium metal center. This distortion is more evident in the bond angles C3–Re1–N1 and C2–Re1–O4 which were reported as 175.64(16)° and 176.38(14)° respectively. The bite angle of the title structure was found to be 87.67(8)° and deviated slightly from the bite angle of a similar bidentate ligand coordinated to rhodium reported by Warsink (91.1(1)°) [15].

The molecules are arranged in a head-to-head manner and are stabilized by couple of intra- and intermolecular hydrogen bonds.


Corresponding author: Wesley K. Komane, Department of Chemistry, Tshwane University of Technology, Pretoria, 0001, South Africa, E-mail:

Funding source: NRF

Award Identifier / Grant number: 113629

Acknowledgements

We would like to acknowledge Tshwane University of Technology for Institutional support.

  1. Author contributions: All the authors have accepted responsibility for the entire content of this submitted manuscript and approved submission.

  2. Research funding: The authors would like to express the gratitude towards NRF (Thuthuka grant specific number 113629) for financial assistance.

  3. Conflict of interest statement: The authors declare no conflicts of interest regarding this article.

References

1. Bruker. SAINT–Plus (version7. 12) and SADABS (Version 2004/1); Bruker AxS Inc.: Madison, Wisconsin, USA, 2004.Suche in Google Scholar

2. Altomare, A., Burla, M. C., Camalli, M., Cascarano, G. L., Giacovazzo, C., Guagliardi, A., Moliterni, A. G. G., Polidori, G., Spagna, R. SIR97: a new tool for crystal structure determination and refinement. J. Appl. Crystallogr. 1999, 32, 115–119.10.1107/S0021889898007717Suche in Google Scholar

3. Dolomanov, O. V., Bourhis, L. J., Gildea, R. J., Howard, J. A. K., Puschmann, H. OLEX2: a complete structure solution, refinement and analysis program. J. Appl. Crystallogr. 2009, 42, 339–341.10.1107/S0021889808042726Suche in Google Scholar

4. Sheldrick, G. M. A short history of SHELX. Acta Crystallogr. 2008, A64, 112–122.10.1107/S0108767307043930Suche in Google Scholar PubMed

5. Brandenbug, K., Putz, H. DIAMOND. Visual Crystal Structure Information System. Ver. 3.0c; Crystal Impact GbR: Bonn, Germany, 2005.Suche in Google Scholar

6. Brink, A., Helliwell, J. R. New leads for fragment-based design of rhenium/technetium radiopharmaceuticals agents. IUCrJ 2017, 3, 283–290.10.1107/S2052252517003475Suche in Google Scholar PubMed PubMed Central

7. Aimene, Y., Eychene, R., Mallet-Ladeira, S., Saffon, N., Winum, J. Y., Nocentini, A., Supuran, C. T., Benoist, E., Seridi, A. Novel Re(I) tricarbonyl complexes based on 2-prydiyl-1,2,3-triazole derivatives bearing a 4-amino-substituted benzenesulfonamide arm: synthesis, crystal structure, computational studies and inhibitory activity against carbonic anhydrase I, II and IX isoforms. J. Enzym. Inhib. Med. Chem. 2019, 34, 773–782.10.1080/14756366.2019.1585835Suche in Google Scholar PubMed PubMed Central

8. Zobi, F. A different spin on rhenium chemistry. synthetic approaches and perspectives of 17-electron rhenium complexes. Chem. Rev. 2010, 4, 259–265.10.2533/chimia.2010.259Suche in Google Scholar

9. Lepareur, N., Lacoeuille, F., Bouvry, C., Hindre, F., Carcion, E., Cherel, M., Noiret, N., Garin, E., Knapp, F. F. Rhenium-188 labelled radiopharmaceuticals: current clinical applications in oncology and promising perspectives. Front. Med. 2019, 6, 132 (19 pages).10.3389/fmed.2019.00132Suche in Google Scholar PubMed PubMed Central

10. Ramoba, L. V., Alexander, O. T., Visser, H. G., Manicum, A. The crystal structure of fac-tricarbonyl (1.10-phenanthroline-κ2N,N′)-(pyrazole-κN)rhenium(I)nitrate, C18H16O3N4Re. Z. Kristallogr. NCS 2020, 235, 1203–1205.10.1515/ncrs-2020-0249Suche in Google Scholar

11. Moremi, M. J., Alexander, O. T., Vatsha, B., Makgopa, K., Manicum, A. The crystal structure of fac-tricarbonyl(4,4-dimethyl-2,2-dipyridyl-k2-N,N′)(pyrazole-κN)rhenium(I)nitrate, C18H12O3N4Re. Z. Kristallogr. NCS 2020, 236, 33–35.10.1515/ncrs-2020-0458Suche in Google Scholar

12. Manicum, A. E., Schutte-Smith, M., Visser, H. G. The synthesis and structural comparison of fac-[Re (CO)3]+ containing complexes with altered β-diketone and phosphine ligands. Polyhedron 2018, 145, 80–87.10.1016/j.poly.2018.01.022Suche in Google Scholar

13. Manicum, A. E., Schutte-Smith, M., Kemp, G., Visser, H. G. Illustration of the electronic influence of coordinated β-diketone type ligands: a kinetic study. Polyhedron 2015, 85, 190–195.10.1016/j.poly.2014.08.005Suche in Google Scholar

14. Manicum, A. E., Schutte-Smith, M., Visser, H. G, Pretorius, C., Roodt, A. The crystal structure tetraethyl ammonium fac-tricarbonyl(hexafluoroacatylacenato- k2O,O′)-(nitrato-kO)rhenium(I), C16H21N2F6Re. Z. Kristallogr. NCS 2016, 231, 263–266.10.1515/ncrs-2015-0115Suche in Google Scholar

15. Warsink, S., Riekert, K., Janse Van Rensburg, J. M., Venter, J. A., Otto, S., Botha, E., Roodt, A. Kinetic-mechanistic and solid-state study of the oxidative addition and migratory insertion of iodomethane to [Rhodium(S,O-BdiPT or N,O-ox)(CO)(PR1R2R3)] complexes. Eur. J. Inorg. Chem. 2018, 2018, 3615–3625.10.1002/ejic.201800293Suche in Google Scholar

Received: 2021-01-29
Accepted: 2021-03-04
Published Online: 2021-03-17
Published in Print: 2021-07-27

© 2021 Wesley K. Komane 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. New Crystal Structures
  3. Crystal structure of poly[(μ2-aqua-tetraaqua-(μ3-glutarato-κ4O,O′:O′:O′′)-(μ5-glutarato-κ6O:O,O′:O′:O′′:O′′′)distrontium(II)], C10H22O13Sr2
  4. The crystal structure of acetato-κ1O-{(2-(2-(2-aminophenoxy)ethoxy)phenyl)(4-oxo-4-phenylbut-2-en-2-yl)amido-κ2N,N′,O}copper(II), C26H26CuN2O5
  5. Crystal structure of dimethanolato-k2O:O-bis(1-((2-methyl-1H-benzo[d]imidazol-1-yl)methyl)-1H-benzo[d][1,2,3]triazole-κN)-bis(thiocyanato-κN)dicopper(II), C34H32Cu2N12O2S2
  6. Crystal structure of poly[diaqua-bis(μ2-3-(pyrimidin-5-yl)benzoato-κ2N:O)cobalt(II)] dihydrate, [Co(C11H11O2N2)2(H2O)2]
  7. Crystal structure of bis(3,3-dimethyl-1-phenylbut-1-en-2-yl)(trimethylsilyl)amido-k1N)zinc(II), Zn(C15H24NSi)2
  8. Crystal structure of catena-poly[(μ2-methanolato-κ2O:O)-(μ2-1-((2-methyl-1H-benzo[d]imidazol-1-yl)methyl)-1H-benzo[d][1,2,3]triazole-κ2N:N′)-(thiocyanato-κ1N)copper(II)] 0.25 hydrate, C17H16CuN6OS ⋅ 0.5H2O
  9. The crystal structure of 2-amino-5-nitroanilinium iodide monohydrate, C6H8IN3O2
  10. The crystal structure of 3-amino-5-carboxypyridin-1-ium perchlorate monohydrate, C6H9ClN2O7
  11. Crystal structure of 7-hydroxy-2,4-dimethoxy-9,10-dihydrophenanthrene from Arundina graminifolia, C16H16O3
  12. Crystal structure of 6,6′-((1E, 1′E)-(((1R, 2R)-1,2-diphenylethane-1,2-diyl) bis(azanylylidene))bis(methanylylidene))bis(2-ethylphenol), C32H32N2O2
  13. The crystal structure of 2-amino-5-carboxypyridin-1-ium iodide monohydrate, C6H9IN2O3
  14. The crystal structure of 2-(3,5-difluorophenyl)-2,3-dihydro-1H-naphtho[1,8-de][1,3,2]diazaborinine, C16H11BF2N2
  15. Crystal structure of bis{(2-pyridinyl)-1-phenyl-1-isopropylmethanolato-κ2N,O}nickel, C30H32N2NiO2
  16. Crystal structure of poly[(m3-3-carboxyadamantane-1-carboxylato-κ3O:O′:O″)-(phenanthroline-κ2N,N′)sodium(II)], C24H23N2NaO4
  17. Crystal structure of 2-phenylethynyl-1,3,6,8-tetramethylBOPHY (BOPHY = bis(difluoroboron)-1,2-bis((1H-pyrrol-2-yl)methylene)hydrazine), C22H20B2F4N4
  18. Crystal structure of 4-tert-butyl-2-N-(2-pyridylmethyl)aminophenol, C16H20N2O
  19. The crystal structure of (3Z,3′Z)-4,4′-((1,4-phenylenebis(methylene))bis(azanediyl))bis(pent-3-en-2-one), C18H24N2O2
  20. Crystal structure of (morpholine-1-carbodithioato-κ2-S,S′)bis(triphenylphosphine-κ-P)gold(I), C41H38AuNOP2S2
  21. Crystal structure of 1,4-bis(4-bromobenzyl)-4-(4-chlorophenyl)-1,4-dihydropyridine-3-carbonitrile, C26H19Br2ClN2
  22. The crystal structure of fac-tricarbonyl (N′-benzoyl-N,N-diphenylcarbamimidothioato-κ2S,O)-(pyrazole-κN)rhenium(I) — methanol (1/1) C26H23O4N4SRe
  23. The crystal structure of Ba2Mn(SeO3)2Cl2 containing 1[Mn(SeO3)2Cl2]4− chains
  24. Crystal structure of 3,3′,3″-((1E,1′E,1″E)-((nitrilotris(ethane-2,1-diyl))tris(azaneylylidene)) tris(methaneylylidene))tris(4-hydroxy-1-naphthaldehyde) monohydrate, C42H36N4O6·H2O
  25. The crystal structure of 4-(6-acetyl-5-methyl-4,7-dihydrotetrazolo[1,5-a]pyrimidin-7-yl)benzonitrile, C14H12N6O
  26. Crystal structure of benzo[d][1,3]dioxol-5-yl-2-(6-methoxynaphthalen-2-yl)propanoate, C21H18O5
  27. The crystal structure of ethyl 5-methyl-7-(4-(phenylthio)phenyl)-4,7-dihydrotetrazolo[1,5-a]pyrimidine-6-carboxylate, C20H19N5O2S
  28. Crystal structure of N′,N‴-((propane-2,2-diylbis(1H-pyrrole-5,2-diyl))bis(methaneylylidene))-di(isonicotinohydrazide)– water – dimethylformamide (1/4/2), C25H24N8O2·4H2O·2C3H7NO
  29. Synthesis and crystal structure of 4-(2,4-dinitrophenoxy)benzaldehyde, C13H8N2O6
  30. The crystal structure of 1-dodecylpyridin-1-ium bromide monohydrate, C17H32BrNO
  31. Crystal structure of (E)-amino(2-(4-(dimethylamino)benzylidene)hydrazineyl)methaniminium nitrate, C10H16N6O3
  32. Crystal structure of (E)-(2-((1H-pyrrol-2-yl)methylene)hydrazineyl)(amino)methaniminium nitrate monohydrate, C6H12N6O4
  33. The crystal structure of hexakis(1-propylimidazole-κ1N)copper(II) dichloride, C36H60Cl2CuN12
  34. The crystal structure of bis{(μ2-3,3-dimethyl-1-phenylbut-1-en-2-yl)((dimethylamino)dimethylsilyl)amido-κ3N,N′:N′}dilithium, C32H54Li2N4Si2
  35. The crystal structure of methyl 4-(1H-naphtho[1,8-de][1,3,2]diazaborinin-2(3H)-yl)benzoate, C18H15BN2O2
  36. Crystal structure of (E)-N-(1-((2-chlorothiazol-5-yl)methyl)pyridin-2(1H)-ylidene)-2,2,2-trifluoroacetamide, C11H7ClF3N3OS
  37. Crystal structure of N′, N‴-((propane-2,2-diylbis(1H-pyrrole-5,2-diyl))bis (methaneylylidene))di(picolinohydrazide) – water – methanol (1/1/1), C25H24N8O2·H2O·CH3OH
  38. Crystal structure of 3-(2-chloro-benzyl)-7-[4-(2-chloro-benzyl)-piperazin-1-yl]-5,6,8-trifluoro-3H-quinazolin-4-one, C26H21Cl2F3N4O
  39. Crystal structure of N1,N2-bis(2-fluorobenzyl)benzene-1,2-diamine,C20H18F2N2
  40. The crystal structure of 2-(benzo[d][1,3]dioxol-5-yl)-2,3-dihydro-1H-naphtho[1,8-de][1,3,2]diazaborinine, C17H13BN2O2
  41. The crystal structure of 6,6′-((1E,1′E)-hydrazine-1,2-diylidenebis(methaneylylidene)) bis(2-bromo-4-nitrophenol) — dimethylsulfoxide (1/2), C14H8Br2N4O6⋅2(C2H6OS)
  42. Selective biocatalytic synthesis and crystal structure of (2R,6R)-hydroxyketaminium chloride, C13H17Cl2NO2
  43. Crystal structure of bis{tetraaqua-[μ3-1-(4-carboxylatophenyl)-5-methyl-1H-pyrazole-3-carboxylate-κ4N,O,O′,O″] [μ2-1-methyl-1H-pyrazole-3,5-dicarboxylate-κ3N,O:O]dicobalt(II)} dihydrate, C36H44Co4N8O26
  44. Crystal structure of diethyl-2,2′-naphthalene-2,3-diylbis(oxy)diacetate, C18H20O6
  45. Synthesis and crystal structure of poly[(μ3-2-(2-carboxylatophenyl)-1H-benzo[d]imidazole-5-carboxylato-κO,O′:O′;:O″, O″′)-(μ2-1-(4-(1Himidazol-1-yl)phenyl)-1H-imidazole-κ2N:N′)cadmium(II)], C27H18CdN6O4
  46. The crystal structure of catena-poly[diaqua-bis(μ2-2-((2-(2-phenylacetyl)hydrazineylidene)methyl)benzoato-κ2O:O')zinc(II)], C32H30N4O8Zn
  47. The crystal structure of 2-(3,4-dimethoxyphenyl)-2,3-dihydro-1H-naphtho [1,8-de][1,3,2]diazaborinine, C18H17BN2O2
  48. The crystal structure of hexakis(1-ethylimidazole-κ1N)nickel(II) dichloride – 1-ethylimidazole (1/2), C40H64Cl2NiN16
  49. Crystal structure of diaqua-bis(2,4-dinitrophenolato-κ2O,O′)copper(II) 1.5 hydrate, C12H13CuN4O13.5
  50. Crystal structure of N′,N‴-((1E,1′E)-((decane-1,10-diylbis(oxy))bis(2,1-phenylene)) bis(methaneylylidene))di(isonicotinohydrazide), C36H40N6O4
  51. The crystal structure of 2-[(R)-1-(naphthalen-1-yl)ethyl]-2,3,7,7a-tetrahydro-3a,6-epoxyisoindol-1(6H)-one, C19H20NO2
  52. Synthesis and crystal structure of (1E,2E)-3-(anthracen-9-yl)-1-(4-methoxyphenyl)prop-2-en-1-one oxime, C24H19NO2
  53. Synthesis and crystal structure of (2E,2′E)-3,3′-(1,3-phenylene)bis(1-(3-bromophenyl)prop-2-en-1-one), C24H16Br2O2
  54. The crystal structure of catena-poly[bis(µ2-1,2-bis((1H-imidazol-1-yl)methyl)benzene- κ2N:N′)-bis(nitrato-κO)copper(II)], C28H28N10O6Cu
  55. Synthesis and crystal structure of the novel chiral acetyl-3-thiophene-5-(9-anthryl)-2-pyrazoline, C23H18N2OS
  56. Crystal structure of (E)-3-(dimethylamino)-1-(thiophen-3-yl)prop-2-en-1-one, C9H11NOS
  57. Crystal structure of catena-poly[aqua-(4-iodopyridine-2,6-dicarboxylato-κ3N,O,O′)-(μ2-4-amino-4H-1,2,4-triazole-κ2N:N′) copper(II)], C9H8N5O5CuI
  58. Crystal structure of cyclopropane-1,2,3-triyltris(phenylmethanone), C24H18O3
  59. Crystal structure of bis(amino(thioureido)methaniminium) terephthalate, C12H18N8O4S2
  60. A three-dimensional Eu(III) framework in the crystal structure of dimethylaminium poly[dimethylformamide-κ1N)bis(μ4-terephthalato-κ4O:O′:O′′:O′′′)europium(III)] monohydrate, C21H25EuN2O10
  61. Crystal structure of 2-methoxyphenyl 2-(6-methoxynaphthalen-2-yl)propanoate, C21H20O4
  62. The crystal structure of Hexakis(diethylamido)dimolybdenum, Mo2(NEt2)6
Heruntergeladen am 1.10.2025 von https://www.degruyterbrill.com/document/doi/10.1515/ncrs-2021-0046/html
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