Startseite Crystal structure of catena-poly[hexaaquabis(μ2-3-nitrophthalate-κ2O:O′)-(μ2-1,4-bis(4-pyridylmethyl)piperazine-κ2N:N′)dimanganese(II)] dihydrate, C32H42Mn2N6O20
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Crystal structure of catena-poly[hexaaquabis(μ2-3-nitrophthalate-κ2O:O′)-(μ2-1,4-bis(4-pyridylmethyl)piperazine-κ2N:N′)dimanganese(II)] dihydrate, C32H42Mn2N6O20

  • Yin Wei-Dong , Duan Yu-Hao und Li Gui-Lian EMAIL logo
Veröffentlicht/Copyright: 11. Februar 2016

Abstract

C32H42Mn2N6O20, monoclinic, P21/c (no. 14), a = 10.200(2) Å, b = 19.893(4) Å, c = 11.3785(17) Å, b = 123.118(12)°, V = 1933.7(7) Å3, Z = 2, Rgt(F) = 0.0602, wRref(F2) = 0.1673, T = 293 K.

CCDC no.:: 1447709

The crystal structure is shown in the figure. Tables 13 contain details of the measurement method and a list of the atoms including atomic coordinates and displacement parameters.

Table 1

Data collection and handling.

Crystal:Colorless, Block, size 0.21×0.29×0.33 mm
Wavelength:Mo Kα radiation (0.71073 Å)
μ:7.45 cm−1
Diffractometer, scan mode:CCD area detector, φ and ω scans
2θmax:50.52°
N(hkl)measured, N(hkl)unique:12161, 3474
Criterion for Iobs, N(hkl)gt:Iobs > 2 σ(Iobs), 2715
N(param)refined:271
Programs:SHELX [17]
Table 2

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

AtomSitexyzUiso
H(4)4e0.96590.17670.58040.043
H(5A)4e0.96140.28160.66590.053
H(6A)4e0.82660.29840.77180.051
H(10)4e0.42150.20780.40810.041
H(11)4e0.40560.32270.38920.041
H(13)4e0.18580.32190.59130.044
H(14)4e0.20750.20750.60440.045
H(15A)4e0.16670.42160.39700.038
H(15B)4e0.28030.42780.56000.038
H(16A)4e0.57460.39490.60310.037
H(16B)4e0.54530.45940.66520.037
H(17A)4e0.34460.53730.51500.033
H(17B)4e0.23770.52500.35250.033
H(1W)4e0.36620.05070.30400.049
H(2W)4e0.49720.06920.41310.049
H(3W)4e0.04910.05410.39500.060
H(4W)4e0.03770.08720.28340.060
H(5W)4e0.30300.07490.75890.045
H(6W)4e0.16250.07140.64960.045
H(7W)4e0.04270.46150.62060.080
H(8W)4e−0.02530.42100.52030.080
Table 3

Atomic displacement parameters (Å2).

AtomSitexyzU11U22U33U12U13U23
Mn(1)4e0.31485(6)0.08228(3)0.51672(6)0.0170(3)0.0247(3)0.0285(3)−0.0014(2)0.0104(3)−0.0006(2)
N(1)4e0.3154(3)0.1956(2)0.5064(3)0.032(2)0.027(2)0.039(2)−0.002(1)0.021(2)0.001(1)
N(2)4e0.3838(3)0.4475(1)0.4572(3)0.017(1)0.021(2)0.029(2)−0.001(1)0.011(1)−0.001(1)
N(3)4e0.6815(4)0.2133(2)0.8333(4)0.034(2)0.050(2)0.045(2)−0.004(2)0.018(2)−0.019(2)
O(1)4e0.5488(3)0.0711(1)0.6812(3)0.016(1)0.050(2)0.035(2)−0.006(1)0.010(1)−0.004(1)
O(2)4e0.7892(3)0.0334(1)0.8228(3)0.029(2)0.041(2)0.036(2)0.008(1)0.013(1)0.012(1)
O(3)4e0.7147(3)0.0273(1)0.5238(3)0.016(1)0.031(1)0.038(2)−0.005(1)0.013(1)−0.006(1)
O(4)4e0.9644(3)0.0419(1)0.5986(3)0.027(2)0.038(2)0.076(2)−0.007(1)0.034(2)−0.012(1)
O(5)4e0.6825(4)0.1679(2)0.9067(4)0.080(3)0.063(2)0.068(2)−0.013(2)0.056(2)−0.018(2)
O(6)4e0.6225(4)0.2688(2)0.8205(4)0.060(2)0.063(2)0.077(3)0.017(2)0.035(2)−0.018(2)
C(1)4e0.6932(4)0.0761(2)0.7410(4)0.021(2)0.031(2)0.023(2)−0.003(2)0.010(2)−0.004(1)
C(2)4e0.7617(4)0.1369(2)0.7127(4)0.013(2)0.030(2)0.021(2)−0.001(1)0.001(1)−0.001(1)
C(3)4e0.8376(4)0.1284(2)0.6420(4)0.016(2)0.027(2)0.026(2)−0.002(1)0.007(2)−0.000(1)
C(4)4e0.9133(4)0.1828(2)0.6254(4)0.027(2)0.036(2)0.042(2)−0.006(2)0.018(2)0.001(2)
C(5)4e0.9097(5)0.2458(2)0.6761(5)0.039(2)0.031(2)0.050(3)−0.011(2)0.017(2)0.001(2)
C(6)4e0.8316(5)0.2559(2)0.7405(5)0.037(2)0.026(2)0.052(3)−0.005(2)0.016(2)−0.007(2)
C(7)4e0.7601(4)0.2016(2)0.7584(4)0.026(2)0.033(2)0.032(2)−0.001(2)0.010(2)−0.005(2)
C(9)4e0.8405(4)0.0610(2)0.5837(4)0.021(2)0.031(2)0.028(2)−0.004(2)0.012(2)−0.001(2)
C(10)4e0.3727(5)0.2310(2)0.4451(4)0.039(2)0.027(2)0.047(2)−0.003(2)0.030(2)−0.003(2)
C(11)4e0.3635(5)0.3003(2)0.4331(4)0.040(2)0.030(2)0.041(2)−0.005(2)0.028(2)0.000(2)
C(12)4e0.2914(4)0.3363(2)0.4869(4)0.020(2)0.028(2)0.028(2)−0.005(1)0.011(2)−0.001(2)
C(13)4e0.2338(5)0.2999(2)0.5523(5)0.044(2)0.030(2)0.051(3)−0.000(2)0.037(2)−0.000(2)
C(14)4e0.2475(5)0.2309(2)0.5599(5)0.043(2)0.033(2)0.050(3)−0.002(2)0.034(2)0.003(2)
C(15)4e0.2715(5)0.4113(2)0.4757(5)0.029(2)0.027(2)0.042(2)−0.004(2)0.022(2)−0.005(2)
C(16)4e0.5438(4)0.4418(2)0.5850(4)0.022(2)0.026(2)0.031(2)0.000(2)0.007(2)0.003(2)
C(17)4e0.3429(4)0.5196(2)0.4348(4)0.022(2)0.024(2)0.033(2)0.002(1)0.011(2)0.001(2)
O(7W)4e0.4003(3)0.0782(1)0.3719(3)0.032(2)0.033(2)0.035(2)−0.000(1)0.018(1)−0.002(1)
O(8W)4e0.0547(3)0.0924(1)0.3648(3)0.028(2)0.038(2)0.038(2)−0.000(1)0.009(1)0.002(1)
O(9W)4e0.2536(3)0.0824(1)0.6712(3)0.019(1)0.042(2)0.027(1)−0.003(1)0.012(1)0.002(1)
O(10W)4e0.0144(4)0.4205(2)0.6082(3)0.037(2)0.068(2)0.039(2)−0.004(1)0.012(2)−0.000(1)

Source of material

A mixture of Mn(OAc)2·4H2O (0.025 g, 0.10 mmol), 3-nitro-1,2-benzenedicarboxylic acid (0.2 mmol, 42.2 mg), 1,4-bis(4-pyridylmethyl)piperazine (0.027 g, 0.10 mmol), EtOH (4 mL) and H2O (3 mL) was placed in a 23 mL Teflon-lined autoclave at 393 K for 4 days, then cooled to room temperature and obtained colourless block crystals in ca. 79% yield. Elemental analysis calcd. (%) for C16H21N3O10Mn: C, 40.92; H, 4.61; N, 8.92. Found: C, 40.86; H, 4.50; N, 8.93. Selected IR (KBr, cm−1): 2800–3600(m), 1639(w), 1597(m), 1563(s), 1523(m), 1452(w), 1433(m), 1340(m), 1304(m), 1232(w), 1158(w), 1145(w), 1068(s), 1000(m), 920(m), 847(m), 825(s), 802(w), 779(w), 755(w), 713(m), 695(s), 665(w).

Discussion

Interest in coordination polymers is rapidly increasing in recent years not only owing to their versatile intriguing architectures and topologies [1, 2] but also for their potential applications in a variety of areas, including catalysis, gas storage/separations, fluorescent sensing, nonlinear optics, electronic, and magnetic devices etc. [3–5]. The mixed-ligands strategy by the judicious choice of various organic linkers, for example, the combination of rigid aromatic benzenedicarboxylic acid and its derivatives and N-donor ligands, has been proven to be high-efficient for the construction of novel coordination polymers because of having strong coordination ability and diverse coordination modes. Recently, the subtle control over the structures and functional properties of coordination polymers can be implemented by using various functionalized benzene-carboxylates, for example, 3-nitrophthalate acid (NbdcH2) [6–9]. Our group chose the 3-nitrophthalate acid as organic bridging ligands to self-assemble and produced versatile 1D, 2D and 3D metal-organic framework with the diverse properties [10–14]. Though the nitro group does not participate in coordination, NbdcH2 may provide the potential to construct unpredictable and interesting network structures due to the existence of an electron-withdrawing nitro-group on the aromatic backbone. In the title compound we use 3-nitrophthalate as a main ligand, and 1,4-bis(4-pyridylmethyl)piperazine (bpmp) as coligand to construct a new coordination polymer not only because bpmp has twisted conformation, also its four nitrogen atoms may improve the structures and properties of coordination polymers [15, 16].

The title structure is a 1D coordination polymer with dinuclear units. The asymmetry unit contains one crystallographic Mn(II) ion, one completely deprotonated 3-Nbdc dianion, a half bpmp molecule, three coordinated water and one free water, as shown in the figure (A: 1 − x, −y, 1 − z; B: 1 − x, 1 − y, 1 − z). The Mn(II) ion is six-coordinated with a distorted octahedral [MnNO5] geometry, which is coordinated by four oxygen atoms in the equatorial plane, three oxygen atoms from three coordination water molecules and one carboxylate oxygen atom from one 3-Nbdc anion, and one nitrogen atom from one bpmp coligand and another oxygen atom from one 3-Nbdc anion at the axial positions. The Mn—O bond distances fall in the range of 2.090(3)–2.249(3) Å, the Mn—N bond length is 2.257(3) Å, respectively. The adjacent Mn(II) centers are bridged by the 3-Nbdc ligands with two carboxyl groups adopting a monodentate coordination mode to form binuclear units with the Mn⋯Mn separation of 5.1670(12) Å. The binuclear units are interlinked together with bpmp coligands to form a one-dimensional chain coordination polymer with the Mn⋯Mn distance of 17.093(4) Å across bpmp ligands. As the existence of the coordinated water and free water molecules, there exist multitudinous H-bond interactions: (a) between coordinated water molecules and carboxylate O atoms (O(7W)—H(1W)⋯O(2): d = 2.981(4) Å; O(7W)—H(1W)⋯O(1): d = 3.130(4) Å; O(7W)—H(2W)⋯O(3): d = 2.871(4) Å; O(8W)—H(3W)⋯O(4): d = 2.728(4) Å; O(8W)—H(3W)⋯O(3): d = 3.090(4) Å; O(9W)—H(6W)⋯O(4): d = 2.715(4) Å); (b) between the coordinated and uncoordinated water molecules (O(8W)—H(4W)⋯O(10W): d = 2.729(4) Å); (c) between the coordinated water ligands and the bpmp N atom (O(9W)—H(5W)⋯N(2): d = 2.826(4) Å); (d) between the uncoordinated water molecule and one carboxylate O atom (O(10W)—H(7W)⋯O(2): d = 2.819(4) Å; O(10W)—H(8W)⋯O(2): d = 2.917(4) Å). Individual chains are interlinked forming a three-dimensional supramolecular structure via H-bond interactions.


Corresponding author: Li Gui-Lian, College of Chemistry and Chemical Engineering, LuoYang Normal University, Luoyang, Henan 471022, P. R. China, e-mail:

Acknowledgements:

This work was supproted by the Foundation of Science and Technology of Henan Province (grant no. 112102310638).

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Received: 2015-4-3
Accepted: 2016-1-15
Published Online: 2016-2-11
Published in Print: 2016-3-1

©2016 Yin Wei-Dong et al., published by De Gruyter.

This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.

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  37. Crystal structure of catenapoly[diaqua-(μ24,4′-bipyridine)-κ2N:N′)-bis(2,6-difluorobenzoate)-κO)nickel(II)] ethanol monosolvate, C28H30F4N2O8Ni
  38. Crystal structure of 2-(9H-fluoren-9-ylidene)hydrazine-1-carbothioamide, C14H11N3S
  39. Crystal structure of 2-(4-methoxyphenyl)-2,3-dihydro-1H-perimidine, C18H16N2O
  40. Crystal structure of catena-poly[diaquabis(μ2-3-carboxybenzene-1,2-dicarboxylato-1:2κ2O:O′)-(μ2-1,4-bis(2-ethylbenzimidazol-1-ylmethyl)-benzene-1:1′κ2N:N′)dizinc(II)], [Zn2(C26H26N4)(C9H4O6)2(H2O)2]
  41. Crystal structure of diaquabis(phenoxyacetato-κ2O,O′)-zinc(II), C16H18O8Zn
  42. Crystal structure of 4-(1H-imidazol-1-yl)-6-pyrimidinylferrocene, C17H14FeN4
  43. Crystal structure of [2-(4-methoxyphenyl)pyrazine-κ2C,N) chlorido[N,N′-bis-(2,6-diisopropyl-phenyl)imidazol-2-ylidene-κC)] palladium(II), C38H45ClN4OPd
  44. Crystal structure of 2-(4-acetyl-2,6-dimethyl-phenyl)-5,6-dichloro-isoindole-1,3-dione, C18H13Cl2NO3
  45. Crystal structure of 4,4′-bipyridin-1-ium 3,3′,5′-tricarboxy-[1,1′-biphenyl]-2-carboxylate, (C26H18N2O8)
  46. Crystal structure of catena-poly[diaqua-μ2-4,4′-biphenyl-4,4′-diyldipyridine-κ2N:N′-bis(5-carboxy-2,6-dimethylpyridine-3-carboxylato-κO)nickel(II)] dihydrate, C40H40N4O12Ni
  47. Crystal structure of poly-[μ2-4,4′-bipyridine-κ2N:N′−μ3-thiophene-2,3-di-carboxylato-κ4O,O′, O′′:O′′′ -cadmium(II)]
  48. Crystal structure of hexaaquamanganese(II) bis(3-carboxythiophene-2-carboxylate) C12H18MnO14S2
  49. Crystal structure of 4-(3-(pyridin-3-yl)-1H-1,2,4-triazol-5-yl)benzoic acid, C14H10N4O2
  50. Crystal structure of (E)-2-(benzo[d]thiazol-2-yl)-3-(pyridin-3-yl)acrylonitrile)
  51. Crystal structure of catena-poly[2,2′-bipyridinyl-6,6′-dicarboxylato-κ4N,N′,O,O′)-(μ2-2,2′-bipyridinyl-6′-carboxyl-6-carboxylato-κ5N,N′,O,O′:O′′)samarium(III)] monohydrate, C24H13N4O8Sm · H2O
  52. Crystal structure of catena-poly[bis(μ2-4-(3-(pyridin-3-yl)-1H-1,2,4-triazol-5-yl)benzoato)-κ2N:O)copper(II)] dihydrate, C28H22N8O6Cu
  53. Crystal structure of catena-poly[tetraaqua-(μ2-4,4′-bipyridine-k2N:N′)-zinc(II)] fumarate tetrahydrate, C14H26N2O12Zn
  54. Crystal structure of triaqua-(1,10-phenanthroline)-(dihydrogen-3,3′,3′′-(2,4,6-trioxo-1,3,5-triazinane-1,3,5-triyl)tripropanoato) cobalt(II)dihydrogen-3,3′,3′′-(2,4,6-trioxo-1,3,5-triazinane-1,3,5-triyl)tripropanoate, C72H82Co2N16O42
  55. Crystal structure of poly[dibromido-(μ2–4,4′-bis-(pyrid-4-yl)biphenyl-κ2N:N′)lead(II)], C22H16N2PbBr2
  56. Crystal structure of catena-poly[diaqua-bis(μ2-5-carboxy-2-(pyridin-4-yl)benzoato-κ2O:N)-cobalt(II)]dihydrate, C26H24N2O12Co
  57. Crystal structure of 5-(4-pyridyl)pyrimidine–4,4′-bipyridine–1,3,5-benzenetriol–water (1:1:1:1), C25H23N5O4
  58. Crystal structure of 5-hydroxy-4-((4-hydroxyphenyl)imino)naphthalen-1(4H)-one monohydrate, C16H11NO3 · 0.5H2O
  59. Crystal structure of 2-amino-N-(4-methoxyphenyl)benzamide, C14H14N2O2
  60. Crystal structure of (2,5-dihydroxyphenyl)-(4-hydroxy-3,5-dimethoxyphenyl)methanone, C15H14O6
  61. Crystal structure of dichlorido[bis(2-hydroxyethyl)5′-([2,2′:6′,2′′-terpyridin]-4′-yl)-[1,1′:3′,1′′-terphenyl]-4,4′′-dicarboxylato]zinc(II), C39H31Cl2N3O6Zn
  62. Crystal structure of bis[4-(3-carboxy-6-fluoro-1-(4-fluorophenyl)-4-oxo-1,4-dihydroquinolin-7-yl)piperazin-1-ium] benzene-1,4-dicarboxylate (C20H18F2N3O3)2(C8H4O4), C48H40F4N6O10
  63. Crystal structure of (2,5-dihydroxyphenyl)-(4-methoxyphenyl)methanone, C14H12O4
  64. Crystal structure of photochromic 1-(2-methyl-5-phenyl-3-thienyl-2-[2-methyl-5-(4-ethoxylphenyl)-3-thienyl] 3,3,4,4,5,5-hexafluoro-cyclopent-1-ene, C29H22F6OS2
  65. Crystal structure of poly[diaquabis(μ2-biphenyl-2,4′-dicarboxylato-κ2O:O′)tris(μ2-1,1′-biphenyl-4,4′-diylbis(1H-imidazole)-κ2N:N′)dicobalt(II)] monohydrat, C82H64N12O11Co2
  66. Crystal structure of 2-amino-4-(3,4-difluorophenyl)-5-oxo-5,6,7,8-tetrahydro-4H-chromene-3-carbonitrile, C16H12N2O2F2
  67. Crystal structure of poly[(di-μ2-aqua-κ2O:O)bis(μ5-oxalato-1:2κ2O1; 1κ1O2; 3:4:5κ3O3; 3κ1O4)(μ4-oxalato-1:2κ2O1; 2:3κ2O2; 3:4κ2O3; 4:1κ2O4)dizinc(II)disodium(I)]
  68. Crystal structure of tetraethylammonium hexachloridotantalate(V), C8H20Cl6NTa
  69. Crystal structure of (E)-2,4-dibromo-6-(((2-nitrophenyl)imino)methyl)phenol, C13H8Br2N2O3
  70. The crystal structure of 6-chloro-2,4-diphenylquinoline
  71. Crystal structure of (E)-2-(((1,10-phenanthrolin-5-yl)imino)methyl)-5-methylphenol monohydrate, C20H15N3O·H2O
  72. Crystal structure of tris(3-(2-pyridyl)pyrazole)zinc(II)tetrachlorido zincate(II), C24H21Cl4N9Zn2
  73. Crystal structure of 4-chloro-N,N-diethyl-6-(piperidin-1-yl)-1,3,5-triazin-2-amine, C12H20ClN5
  74. The crystal structure of 4-allyl-5-benzyl-2,4-dihydro-3H-1,2,4-triazol-3-one, C12H13N3O
  75. Crystal structure of diethyl 2-(((2-(pyridin-3-ylthio)phenyl)amino)methylene)malonate, C19H20N2O4S
  76. Crystal structure of fac-tricarbonyl(2-(isopropylimino)methyl-5-methylphenolatido-κ2N,O)(pyridine-κN)rhenium(I), C19H19N2O4Re
  77. Crystal structure of 1,3,6,8-tetrakis(p-tolylthio)pyrene, C44H34S4
  78. Crystal structure of catena-poly-(diaqua-(μ2-1,2-bis(4-pyridyl)ethene-κ2N:N′)-(4-methylphthalato-κ2O,O′)-cobalt(II)trihydrate, C21H26CoN2O9
  79. Crystal structure of tetraethylammonium fac-tricarbonyl(hexafluoroacetylacetonato-κ2O,O′)-(nitrato-κO)rhenium(I), C16H21O8N2F6Re
  80. Crystal structure of 3-(thiophen-2-yl)-5-(p-tolyl)-4,5-dihydro-1H-pyrazole-1-carboxamide
  81. Crystal structure of bis(1-ethyl-3-methylimidazolium) tetrabromidocadmate(II), [C6H11N2]2[CdBr4]
  82. Crystal structure of N′-(adamantan-2-ylidene)-isonicotinohydrazide, C16H19N3O
  83. Crystal structure of trans-tetraaquabis(4-(pyridin-4-ylsulfonyl)pyridine-κN)cobalt(II) diperchlorate dihydrate, C20H28Cl2CoN4O18S2
  84. Crystal structure of (Z)-4-(furan-2-yl(p-tolylamino)methylene)-3-methyl-1-p-tolyl-1H-pyrazol-5(4H)-one, C23H21N3O2
  85. Crystal structure of 2-[(4-fluorobenzyl)sulfanyl]-4-(2-methylpropyl)-6-oxo-1,6-dihydropyrimidine-5-carbonitrile, C16H16FN3OS
  86. Crystal structure of poly[octaaqua-tris(benzene-1,2,4,5-tetracarboxylato)tetralanthanum(III)] hexahydrate, C30H34La4O38
  87. Crystal structure of trans-tetraaqua-bis(4,4′-sulfonyldipyridine-κN)zinc(II) diperchlorate dihydrate, C20H28Cl2ZnN4O18S2
  88. Crystal structure of 4-nitro-thiophene-2-carboxylic acid, a structure with a Z′ = 4, C5H3NO4S
  89. Crystal structure of dirubidium trimercury(II) tetraselenide, Rb2Hg3Se4
  90. Crystal structure of 5-(adamantan-1-yl)-3-[(4-chloroanilino)methyl]-2,3-dihydro-1,3,4-oxadiazole-2-thione, C19H22ClN3OS
  91. Crystal structure of hexaaquamagnesium(II) 5,5′-bitetrazole-1,1′-diolate, C2H12N8O8Mg
  92. The crystal structure of catena-poly[(μ2-1,1′-benzene-1,4-diylbis(1H-benzimidazole-κ2N:N′)silver(I)] nitrate, C20H14N5AgO3
  93. The crystal structure of 1-(2-(4-chlorophenoxy)-4-chlorophenyl)ethanone, C14H10Cl2O2
  94. The crystal structure of 3,5-dinitro-1,3,5-oxadiazinane, C3H6N4O5
  95. Crystal structure of methyl 5-methoxy 1H-indole-2-carboxylate, C11H11NO3
  96. Crystal structure of (Z)-1-(((3-acetyl-2-hydroxyphenyl)amino)methylene)naphthalen-2(1H)-one, C19H15NO3
  97. Crystal structure of (Z)-5-(4-chlorobenzylidene)-2-thioxothiazolidin-4-one —dimethylsulfoxide (1:1), C12H12ClNO2S3
  98. Crystal structure of 5,5′-((4-(trifluoromethyl)phenyl)methylene)bis(1,3-dimethylpyrimidine-2,4,6(1H,3H,5H)-trione) – diethylamine – dichloromethane (1/1/1) C25H32Cl2F3N5O6
  99. Crystal structure of 2-(dimethylsulfanylidene)-N-(4-methoxyphenyl)-3-oxo-3-phenylpropanamide
  100. Crystal structure of (1,10-phenanthroline-κ2N,N′)bis(thiocyanato-κN)platinum(II), C14H8N4PtS2
  101. Crystal structure of di(μ2-chlorido)bis[2-(2-pyridyl)phenyl-κ2N,C1]dipalladium(II), C22H16Cl2N2Pd2
  102. Crystal structure of trans-dibromidodi(pyridine-κN)palladium(II), PdBr2(C5H5N)2
Heruntergeladen am 10.11.2025 von https://www.degruyterbrill.com/document/doi/10.1515/ncrs-2015-0050/html?lang=de
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