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1.
Ümran Uygun Nuri Öztürk Çağri Çirak Deniz Türköz Semiha Bahçeli 《Journal of inclusion phenomena and macrocyclic chemistry》2006,54(3-4):187-192
New Hofmann-ethanedithiol-type clathrates, M(1,2-Ethanedithiol)Ni(CN)4·Benzene (M=Cd,Co), have been obtained in the powdered form. By vibrational spectroscopy of these two new compounds, it is exhibited that their structures are similar to those of the other Hofmann-type clathrates. 相似文献
2.
Süleyman Özçeli Hakan Sezgin 《Journal of inclusion phenomena and macrocyclic chemistry》2003,45(3-4):185-190
New Hofmann-diaminohexane(dahxn)-type clathrates of the form M(1,6-dahxn)Ni(CN)4.G (M = Co, Ni or Cd; G = chlorobenzene, 1,2-, 1,3 or 1,4-dichlorobenzene) were prepared inpowder form and their infrared spectra are reported. The spectral data suggest that these compounds are similar in structure to those of the Hofmann-diam-type clathrates. Their structure consists of planar polymeric layers, {M–Ni(CN)4}, formedfrom Ni(CN)4 anions coordinated to the bridging 1,6-diaminohexane molecules bound directly to the metal (M). The M atoms are bound to four N atoms of the CN ions and, the Ni atoms are surrounded by four C atoms of the CN groups in a square-planar layer. 相似文献
3.
IR spectra of Mn(en)M(CN)4·2C6H6 (M=Cd or Hg), and IR and Raman spectra of Cd(en)M(CN)4·2C6H6 (M=Cd or Hg) clathrates are reported. The spectral features suggest that the first two compounds are similar in structure to the later two Td-type clathrates. 相似文献
4.
J. Cernák J. Skorsepa J. Chomic I. Potocnák J. Hoppan 《Journal of Thermal Analysis and Calorimetry》1994,41(1):91-98
Two new tetracyano complexes of the composition MnenNi(CN)4 and MnenCd(CN)4 were prepared and identified. Their struture and properties were investigated by IR and UV-VIS spectroscopy, X-ray powder diffraction and by measuring magnetic moments. The results were confronted with the structure and properties of the compounds CdenNi(CN)4 and CdenCd(CN)4. The results of this study show a considerable similarity between these groups of compounds. The thermal behaviour of all the examined compounds was investigated derivatographically. The following order of thermal stability of the investigated complexes was observed: Cd?Cd(215°C)相似文献
5.
ERGÜN KASAP SÜLEYMAN ÜZCELÍK 《Journal of inclusion phenomena and macrocyclic chemistry》1997,28(3):259-267
IR spectra of M(1,4-diaminobutane)Ni(CN)4° 1.5C6H6 (M = Mn, Fe, or Co), and IR and Raman spectra of M(1,4-diaminobutane)Ni(CN)4° 1.5C6H6 (M = Ni or Cd) clathrates are reported. The spectral features suggest that the compounds are similar in structure to the Hofmann-dabn-type clathrates. 相似文献
6.
Ergün Kasap Ziya Kantarci 《Journal of inclusion phenomena and macrocyclic chemistry》1994,20(1):33-41
IR spectra of Mn(NH3)2M(CN)4·2C6H6 (M=Cd or Hg), and IR and Raman spectra of Cd(NH3)2M(CN)4·2C6H6 (M=Cd or Hg) are reported. The spectral data suggest that the former two compounds are similar in structure to the latter two Td-type clathrates. 相似文献
7.
CELAL BAYRAK MEHMET ÇİVİ YASEMİN KUTUCU 《Journal of inclusion phenomena and macrocyclic chemistry》2006,55(3-4):303-307
Infrared spectra of Mn(NH3)2M(CN)4·2C6H5NH2 (M = Zn, Cd or Hg) are reported. The spectral data suggest that these compounds are similar in structure to Hofmann-Td-type clathrates. 相似文献
8.
Three complex compounds with the compositions Cu(NH3)3Ni(CN)4 (CuA), Zn(NH3)3Ni(CN)4 (ZnA), and Cd(NH3)3Ni(CN)4 (CdA) were prepared and identified. Their structures were examined by the methods of infrared spectroscopy and X-ray powder diffraction and compared with one another. The thermal stabilities and stoichiometries of thermal decomposition were investigated with a derivatograph. It follows from the results that the thermal stability increases in the sequence CuA < ZnA < CdA.
Zusammenfassung Drei Komplexverbindungen der Zusammensetzung Cu(NH3)3Ni(CN)4 (CuA), Zn(NH3)3Ni(CN)4 (ZnA) und Cd(NH3)3Ni(CN)4 (CdA) wurden dargestellt und identifiziert. Die Strukturen der Verbindungen wurde infrarotspektroskopisch und röntgendiffraktometrisch untersucht und miteinander verglichen. Die thermische Stabilität und die Stöchiometrie der thermischen Zersetzung wurden mittels eines Derivatographen untersucht. Die thermische Stabilität nimmt in der Reihenfolge CuA < ZnA < CdA zu.
Cu(NH3)3Ni(CN)4 (CuA), Zn(NH3)3Ni(CN)4 (ZnA) Cd(NH3)3Ni(CN)4 (CdA). , . . , CuA相似文献
9.
10.
Heterobimetallic hexanuclear cyano-bridged complexes, [{Fe(Tp)(CN)3}4{M(MeCN)(H2O)2}(2)].10H2O.2MeCN [M = Ni (1), Co (2), Mn (3); Tp = hydrotris(1-pyrazolyl)borate], have been synthesized in H2O-MeCN solution. Complexes 1-3 are isostructural and hexanuclear with [{Fe(Tp)(CN)3}4{M(MeCN)(H2O)2}2] units linked by hydrogen bonds to form a 2D-structure in the solid state. Complex 1 is a canted antiferromagnet that undergoes a field-induced spin-flop-like transition at approximately 1 T and 2 K. At 4.45 K 1 has a transition to paramagnetic state of noninteracting S = 4 magnetic clusters. However, 2 and 3 show antiferromagnetic intracluster coupling. Facile loss of solvent from 2 alters the local symmetry resulting in changing the intracluster interaction from antiferro- to ferromagnetic. 相似文献
11.
Şenay Yurdakul M. Tahir Güliüoğlu 《Journal of inclusion phenomena and macrocyclic chemistry》2001,40(3):231-237
Infrared spectra of M(piperidine)2Ni(CN)4.0.5G (M=Co, Ni or Cu;G= chlorobenzene, 1,2-dichlorobenzene or 1,3-dichlorobenzene; M=Co or Ni;G=1,4-dichlorobenzene) compounds are reported. The piperidine molecules inthe host permit the inclusion of bulky guest molecules. The spectral featuressuggest that the compounds are similar in structure to the Hofmann-type clathrates. 相似文献
12.
T. R. Sertbakan S. Sağlam A. Özbay S. Özçelik 《Journal of inclusion phenomena and macrocyclic chemistry》2004,49(3-4):235-240
New Hofmann-diaminododecane-type clathrates of the form M(1,12-diaminododecane) Ni(CN)4?G (M = Co, Ni or Cd; G = toluene, m-xylene, o-xylene or p-xylene) have been prepared in powder form and their infared spectra are reported. The spectral data suggest that the host–guest frame-works of these compounds are similar in structure to other Hofmann-diam-type clathrates. 相似文献
13.
M.Tahir Güllüo?lu?enay Yurdakul 《Journal of Molecular Structure》2002,641(1):93-100
New Hofmann-type complexes and clathrates of the forms M(piperidine)2Ni(CN)4 and M(piperidine)2Ni(CN)4·1.5G (M=Cd, Co, Ni or Cu; G=benzene) were prepared in powder form and their infrared and Raman spectra are reported. The spectral features suggest that these compounds are similar in structure to the Hofmann-type clathrates except for the copper compounds. The complex and clathrate of Cu have different spectral features in comparison with its analogues due to the Jahn-Teller effect. 相似文献
14.
《Journal of Coordination Chemistry》2012,65(5):794-800
The first Hofmann-DMF-type complexes Zn(DMF)2M(CN)4 (M = Ni (1), Pd (2), Pt (3)) have been synthesized by solution diffusion and characterized structurally by single-crystal X-ray diffraction. The structure consists of 2-D corrugated sheets stacking along the a-axis in an ABAB packing mode without interpenetration. The octahedral Zn ions and square-planar M ions occupy special positions of 2/m site symmetry. The DMF, except for six methyl H atoms, lies on a crystallographic mirror plane; the DMF molecules coordinate to axial sites of Zn on both sides of the sheet. The framework of 1 begins to collapse with loss of coordinated DMF. 相似文献
15.
On the refluxing ofM(II) oxalate (M=Mn, Co, Ni, Cu, Zn or Cd) and 2-ethanolamine in chloroform, the following complexes were obtained: MnC2O4·HOCH2CH2NH2·H2O, CoC2O4·2HOCH2CH2NH2, Ni2(C2O4)2·5HOCH2CH2NH2·3H2O, Cu2(C2O4)2·5HOCH2CH2NH2, Zn2(C2O4)2·5HOCH2CH2NH2·2H2O and Cd2(C2O4)2·HOCH2CH2NH2·2H2O. Following the reaction ofM(II) oxalate with 2-ethanolamine in the presence of ethanolammonium oxalate, a compound with the empirical formula ZnC2O4·HOCH2CH2NH2·2H2O1 was isolated. The complexes were identified by using elemental analysis, X-ray powder diffraction patterns, IR spectra, and thermogravimetric and differential thermal analysis. The IR spectra and X-ray powder diffraction patterns showed that the complexes obtained were not isostructural. Their thermal decompositions, in the temperature interval between 20 and about 900°C, also take place in different ways, mainly through the formation of different amine complexes. The DTA curves exhibit a number of thermal effects. 相似文献
16.
Soldatov D. V. Logvinenko V. A. Dyadin Yu. A. Lipkowski J. Suwinska K. 《Journal of Structural Chemistry》1999,40(5):757-771
The title compounds form an iso structural series and are isomorphic with other [MPy4X2]-2Py clathrates (XRD, KM4 diffractometer, cell parameters and space group Ccca from 17–80 reflections). In the clathrate
[NiPy4(NCO)2]-2Py studied in detail (XRD, CAD-4 diffractom eter, λCuKα, Ω/2θ scan mode, θmax = 78‡, 990 strong reflections, 104 parameters, R = 0.053), the host molecule has 222 symmetry, and the twofold axes run along
the coordination bonds. The transoctahedral environment of nickel consists of six nitrogen atoms of four pyridine and two
isocyanate ligands. The coordination polyhedron is slightly distorted due to changes in the bond lengths. The molecule has
a propeller conformation. The guest molecules lie in the cavities of the crystal structure in conformity with the van der
Waals type of packing. The host complex [NiPy4(NCO)2] (XRD, CAD-4 diffractometer, 4615 strong reflections, 560 parameters, R-0.037) crystallizes in the triclinic crystal system
(space group P1) with two independent asymmetric molecules in the unit cell. The molecular structure is analogous to that
in the ciathrate phase, but the coordination angles are severely distorted; one of the molecules acquires a distorted propeller
conformation, and the other, a centrosvmmetric conformation, which is less favorable. While being structurally identical,
the [MPy4(NCO)2]-2Py clathrates differ heavily in the properties. The first four complexes dissociate to host complexes, and their thermal
stability changes in the sequence Mn< Fe< Co< Ni; the Cu and Zn clathrates decompose in one step to dipyridine complexes with
decomposition of host complexes. Decomposition of the Cd ciathrate follows one of these patterns depending on conditions.
The results are compared with those for other known systems. Synthetic procedures are given.
Translated fromZhurnal Strukturnoi Khimii, Vol. 40, No. 5, pp. 935–953, September–October, 1999. 相似文献
17.
Cobalt bis(oxalato)nickelate pentahydrate, Co[Ni(C2O4)2]5H2O and cadmium bis(oxalato)nickelate tetrahydrate, Cd[Ni(C2O4)2]4H2O have been synthesized and characterized by elemental analysis, reflectance and IR spectral studies. Thermal decomposition
studies (TG, DTG and DTA ) in air showed that both the compound of cobalt and cadmium produced the oxide, MNiOx (x=3 for M=Co; x=2 for M=Cd ) at 325 and 360°C respectively. DSC studies in nitrogen attributed only the mixture of both the metal at the end.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
18.
Sevgi Bayari Celal Bayrak Ziya Kantarci 《Journal of inclusion phenomena and macrocyclic chemistry》2000,38(1-4):23-35
IR spectra of Mn(adenine)2M(CN)4.C6H6 (M=Cd or Hg), andIR and Raman spectra of Cd(adenine)2M(CN)4.C6H6(M=Cd or Hg) are reported. The spectral data suggest thatthe host frameworks of these compounds are similarto those of the Hofmann-Td-type and the adeninecoordination is via N(10). 相似文献
19.
Maliarik M Nagle JK Ilyukhin A Murashova E Mink J Skripkin M Glaser J Kovacs M Horváth A 《Inorganic chemistry》2007,46(11):4642-4653
The new crystalline compounds Tl2Ni(CN)4 and Tl2Pd(CN)4 were synthesized by several procedures. The structures of the compounds were determined by single-crystal X-ray diffraction. The compounds are isostructural with the previously reported platinum analogue, Tl2Pt(CN)4. A new synthetic route to the latter compound is also suggested. In contrast to the usual infinite columnar stacking of [M(CN)4]2- ions with short intrachain M-M separations, characteristic of salts of tetracyanometalates of NiII, PdII, and PtII, the structure of the thallium compounds is noncolumnar with the two TlI ions occupying axial vertices of a distorted pseudo-octahedron of the transition metal, [MTl2C4]. The Tl-M distances in the compounds are 3.0560(6), 3.1733(7), and 3.140(1) A for NiII, PdII, and PtII, respectively. The short Tl-Ni distance in Tl2Ni(CN)4 is the first example of metal-metal bonding between these two metals. The strength of the metal-metal bonds in this series of compounds was assessed by means of vibrational spectroscopy. Rigorous calculations, performed on the molecules in D4h point group symmetry, provide force constants for the Tl-M stretching vibration constants of 146.2, 139.6, and 156.2 N/m for the NiII, PdII, and PtII compounds, respectively, showing the strongest metal-metal bonding in the case of the Tl-Pt compound. Amsterdam density-functional calculations for isolated Tl2M(CN)4 molecules give Tl-M geometry-optimized distances of 2.67, 2.80, and 2.84 A for M = NiII, PdII, and PtII, respectively. These distances are all substantially shorter than the experimental values, most likely because of intermolecular Tl-N interactions in the solid compounds. Time-dependent density-functional theory calculations reveal a low-energy, allowed transition in all three compounds that involves excitation from an a1g orbital of mixed Tl 6pz-M ndz2 character to an a2u orbital of dominant Tl 6pz character. 相似文献
20.
Hitherto unknown anhydrous GUINER patterns show that all these hexagonal compounds – except CdTiF6 (LiSbF6-structure type) – are isostructural with VF3. 相似文献