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1.
Post-transition elements react with ligands, triphenylphosphine sulphide or selenide (Ph3PS or Ph3PSe), tri-p-tolylphosphine sulphide or selenide (T3PS or T3PSe) and 1,3-trimethylenebis-(diphenylphosphine sulphide or selenide) (PDPS or PDPSe) in suitable organic solvents forming complexes of compositions: MX2. L(M = Zn, X = I, L = all except Ph3PS: M = Cd, X = I, L = T3PS, T3PSe, M = Hg, L = T3PSe, X = Cl, Br, I); ZnI2·2Ph3PS, Hg(NO3)2·2Ph3PS, CdBr2·3T3PSe and 3Hg(NO3)2·4Ph3PSe. All these have been characterized through elemental analyses, ir spectra (4000−200 cm−1) and molar conductance (nitrobenzene). Complexes are essentially nonelectrolytes. Tetrahedral structures have been assigned to all except a 1 : 3 complex which has been assigned a bridged octahedral structure.  相似文献   

2.
Summary The analytical, molar conductance and spectroscopic studies of new complexes of copper(I) and copper(II) with bis(—phosphine chalcogenides), Ph2P(E)(CH2)n-P(E)Ph2(L-L) are reported. The complexes are of the types: (a) [CuX(L-L)](X, n, E: Cl, 2–4, Br, 2, S; Cl, Br, 1, Se); (b) [Cu2X2(L-L)] (X, n, E: Cl, Br, 2, 3, Se) and (c) [CuCl2(L-L)] (n, E: 2, 3, S). Possible structures have been derived.  相似文献   

3.
Summary Reactions of 1,1-methylene bis(diphenylphosphine oxide or sulphide) (dpmO2 or dpmS2) and 1-(diphenylphosphinoethyl)-2-diphenylphosphine sulphide (dpePS) with dihalodicarbonylruthenium(II) in EtOH gave 1:1 (L:M) complexes of stoichiometry: Ru(CO)2X2L2 (L = dpmO2, dpmS2 or dpePS; X = Cl or Br), which were characterized by elemental analysis and i.r. spectroscopy. The spectra reveal that: (a) the carbonyls occupy octahedral cis-positions, and (b) dpmS2 shows a higher coordination shift than does dpePS, probably due to the better Lewis basicity of the Ph2P moiety as compared to the Ph2P(S) moiety in the ligands. Cis-octahedral geometries are inferred from these studies.  相似文献   

4.
Summary The reactions of divalent nickel and copper salts with the Schiff base derived from 2-(2-aminophenyl)benzimidazole and benzaldehyde, L, yield complexes of general formulae [CuL2X2] (X=Cl, Br, or ClO4), [CuL(SO4)], [CuL(SO4)] · 4H2O, and NiLX2 (X=Cl, Br, or NCS).All the complexes have been characterized by elemental analyses, magnetic measurements, e.s.r. electronic and i.r. spectral studies. The results show that the Schiff base acts as bidentate ligand through the pyridine-like imine nitrogen of imidazole ring and the azomethine nitrogen. Tentative structures of the complexes are suggested.  相似文献   

5.
Summary The ligating behaviour of the normally tridentate but potentially tetradentate ligand 3-hydroxyimino-2-butanone-1-benzoylhydrazone (LH2) towards CuII and NiII ions has been investigated. The ligand reacts in either its keto or enol form, depending on the pH of the reaction medium. Metal complexes of the type [Cu(LH2)]X2 · H2O (X = Cl, NO3 or ClO4), [Ni(LH2)2]X2 · 2H2O (X = Cl, Br, NO3 and ClO4), Cu(L) and Ni(L) have been isolated and characterised by spectral (u.v-vis., i.r. and e.p.r.) and magnetic susceptibility measurements. Location of the bonding sites and the probable structures of the complexes has also been discussed. The reactions of Cu(L) and Ni(L) with pyridine have also been examined.  相似文献   

6.
Reaction of alkali metal halides (MX) with methylenediphosphine oxides and various related compounds in nonaqueous solutions leads to the formation of complex compounds. The compositions, properties, and stabilities of these compounds, which have been studied in detail in acetonitrile, are determined by the nature of the cations and anions of the alkali metal halides. Formation of neutral complexes with the composition [MX · L] and cationic complexes with the composition [ML]+ has been established. The most characteristic representative of complexes of the first type is [NaI · L]; in the complexes studied, L=R2P(O)CH2P(O)R2 (R=Bu, BuO, or Ph), Ph2P(O)CH2P(O) (OC2H5)CH2P(O)Ph2 and (p-OCH3C6H4)2P(O)CH2P(O)(C6H4CF3-p)2. Compound [LiL]+ is characteristic of complexes of the second type; the compounds containing Ph3P(O), Ph2P(O)CH2P(O)Ph2, and Ph2P(O)CH2P(O)(OC2H5)CH2P(O)Ph2 as ligands have been studied. Stability constants of the complexes [NaI · L] and [LiL]+ have been determined by measuring the dependence of the electrical conductivity of solutions of the alkali metal halides in acetonitrile on the concentration of the ligands. The complex-forming power of phosphine oxides increases with increase in the number of P=O groups. Stabilities of the complexes [NaI · L] with ligands with identical structure decrease with increase in the electronegativity of the substituents on the phosphorus atoms.  相似文献   

7.
Summary Diacetyldihydrazone (DADH) forms only six-coordinate complexes with iron(II), cobalt(II), nickel(II) and zinc(II). In M(DADH)2X2 (M=Fe, X=Br or I; M=Co, X=I; M=Ni, X=Cl, Br or NCS) the ligand is chelating in the [M(DADH)3]2+ cations, while in M(DADH)2X2 (M=Co, X=Cl or Br; M=Ni, X=Cl or Br) the ligand is probably bridging and bidentate. Diacetylbismonomethylhydrazone (DAMH), by contrast, forms predominantly tetrahedral complexes M(DAMH)X2 (M=Fe or Co, X=Cl or Br; M=Ni, X=Br; M=Co, X=NCS; M=Zn, X=Cl, Br or NCS) and some octahedral complexes M(DAMH)2X2 (M=Co, X=NCS; M=Ni, X=Br). The i.r. spectra, electronic spectra and magnetic moments of the complexes are discussed.  相似文献   

8.
Summary Some copper(II) complexes of 2-amino-1,3,4-thiadiazole (atz) and 2-ethylamino-1,3,4-thiadiazole (eatz) have been prepared and studied by electronic, i.r. and e.p.r. spectra and by magnetochemical and conductometric methods. The CuX2 · atz (X=Cl, Br) and CuCl2 · eatz complexes are presumably six-coordinate with bridging ligand molecules and asymmetrically bridging halide ions, while the CuX2 · 2 atz (X=Cl, Br) complexes probably have a flattened tetrahedral N2X2 moiety with apical interactions. The CuBr2 · 5/3 eatz · 2/3 MeOH and Cu(OAc)2 · L (L=atz or eatz) complexes have subnormal magnetic moments (1.53-1.40 B.M.). The acetato-complexes have a dimeric structure with bridging acetato-groups, copper-copper interactions and apical ligand molecules. The ligands bond principally through the amine nitrogen atom and, when bridging, also through one ring-nitrogen.  相似文献   

9.
Reactions of SnCl2 with the complexes cis‐[PtCl2(P2)] (P2=dppf (1,1′‐bis(diphenylphosphino)ferrocene), dppp (1,3‐bis(diphenylphosphino)propane=1,1′‐(propane‐1,3‐diyl)bis[1,1‐diphenylphosphine]), dppb (1,4‐bis(diphenylphosphino)butane=1,1′‐(butane‐1,4‐diyl)bis[1,1‐diphenylphosphine]), and dpppe (1,5‐bis(diphenylphosphino)pentane=1,1′‐(pentane‐1,5‐diyl)bis[1,1‐diphenylphosphine])) resulted in the insertion of SnCl2 into the Pt? Cl bond to afford the cis‐[PtCl(SnCl3)(P2)] complexes. However, the reaction of the complexes cis‐[PtCl2(P2)] (P2=dppf, dppm (bis(diphenylphosphino)methane=1,1′‐methylenebis[1,1‐diphenylphosphine]), dppe (1,2‐bis(diphenylphosphino)ethane=1,1′‐(ethane‐1,2‐diyl)bis[1,1‐diphenylphosphine]), dppp, dppb, and dpppe; P=Ph3P and (MeO)3P) with SnX2 (X=Br or I) resulted in the halogen exchange to yield the complexes [PtX2(P2)]. In contrast, treatment of cis‐[PtBr2(dppm)] with SnBr2 resulted in the insertion of SnBr2 into the Pt? Br bond to form cis‐[Pt(SnBr3)2(dppm)], and this product was in equilibrium with the starting complex cis‐[PtBr2(dppm)]. Moreover, the reaction of cis‐[PtCl2(dppb)] with a mixture SnCl2/SnI2 in a 2 : 1 mol ratio resulted in the formation of cis‐[PtI2(dppb)] as a consequence of the selective halogen‐exchange reaction. 31P‐NMR Data for all complexes are reported, and a correlation between the chemical shifts and the coupling constants was established for mono‐ and bis(trichlorostannyl)platinum complexes. The effect of the alkane chain length of the ligand and SnII halide is described.  相似文献   

10.
Summary The preparation, structural study and chemical behaviour of new cationic, monoanionic and dianionic tetracoordinate nickel(I) complexes of the types: [NiL4][BPh4] (L=PPh3, AsPh3 or SbPh3), [PR4][NiX2L2] (X=Cl, Br or I; L=PPh3, AsPh3 or SbPh3 and [PR4]+=PPh4, Ph3PCH2Ph or Ph3PEt) and [PR4]2[NiX3L] (X=Cl, Br or I; L=PPh3 and [PR4]+=PPh4 or PPh3CH2Ph) are described.  相似文献   

11.
Palladium and platinum dihalides react with dl-selenomethionine (sem), yielding the complexes [M(sem)X2](M=Pd,X=Cl or Br;M=Pt,X=Cl) and, in the presence of N,N-dimethylformamide (dmf), the species [M(sem)X2]·dmf (M=Pd, X=I; M=Pt, X=Cl, Br or I). The complexes were characterized by i.r. and proton n.m.r. spectroscopy and by thermogravimetric analysis, and their properties were compared with those of the dl-methionine analogues [M(Met)Cl2] and [Pt(Met)Cl2]·dmf. On the basis of n.m.r. data in deuteriated dimethyl sulfoxide, the platinum complexes undergo ligand rearrangement to form [Pt(sem)2]2+ moieties whereas the solvent does not seem to interact with the palladium coordination sphere, which contains the chelated N, Se ligand.  相似文献   

12.
1,3-Dimethyl-2-imidazolidinone (dimethylethylene urea, DMEU) and 1,3-di- methyl-3,4,5,6-tetrahydro-2(IH)-pyrimidinone (dimethylpropylene urea, DMPU) adducts of the type Ph3SnX·L (X = Cl, Br and I), Ph3PbX·L (X = Br, I), 3Ph3PbCl·2DMEU and 2Ph3PbCl · DMPU have been prepared and characterized. Assignments are made for ν(CO) and ν(CN) frequencies in the IR, and for skeletal frequencies observed in both the IR and Raman spectra in the range 400 to 100 cm?1 Infrared measurements show that the adducts are bound through the carbonyl oxygen, and are highly dissociated in dichloromethane solution. 1H and 119Sn or 207Pb NMR measurements reveal that ligand exchange, fast on the NMR time scale, occurs in solution. Coordination of the ligand causes a large upfield shift in the 119Sn or 207Pb resonances, but Ph3MI · L have shifts similar to those for the parent iodides, indicating almost complete dissociation. Thermodynamic parameters are reported for the dissociation of Ph3SnX · DMPU (X = Cl, Br) in CH2Cl2 solution.  相似文献   

13.
Summary Some cobalt(II), nickel(II), copper(II) and copper(I) complexes of 2-mercapto-5-methyl-1,3,4-thiadiazole (mttz) and 2,5-bis(methylmercapto)-1,3,4-thiadiazole (bmttz) have been prepared and studied by conductometric and magnetochemical methods and by electronic and i. r. spectroscopy. The complexes CoX2 · 2L (L=mttz, X=Cl, Br or I; L=bmttz, X=Br or I), CoCl2 · bmttz are pseudotetrahedral, and the complexes NiX2 · mttz (X=Cl or Br), NiCl2 · 1.3 bmttz, NiBr2 · 1.5 bmttz are pseudooctahedral. The complex Co3(OAc)2 · 4(mttz-H) · 2H2O has an undefinite constitution. The polynuclear complexes CuCl2 · 1.3 mttz and CuBr2 · 1.2 mttz contain presumably pseudotetrahedral chromophores, the chloride having a subnormal magnetic moment. The CuX2 · 2 bmttz (X=Cl, Br or NO3) complexes have a six coordination with bridging ligand molecules. In the CuX · 2 mttz (X=Cl, Br or ClO4) complexes the anions are coordinated, while in the CuClO4 · 2 bmttz complex the perchlorate anion is ionically bonded.  相似文献   

14.
Some palladium(II) halide complexes with 2,5-dimethyl- (DTZ), 2-amino- (ATZ), 2-amino-5-methyl- (MATZ), 2-ethylamino- (EATZ) and 2-mercapto-5-methyl-1,3,4-thiadiazole (MTTZ) have been prepared and studied: PdX2 · 2L (L = DTZ, ATZ, MATZ : X = Cl, Br, I; L = EATZ: X = Br, I; L = MTTZ: X = I), PdCl2 · 2.5EATZ, PdCl2 · 3MTTZ, PdBr2 · 1.5MTTZ and PdX2 · L (L = DTZ, ATZ, MATZ, EATZ: X = Cl, Br; L = MTTZ: X = Cl(H2O), Br). In the PdX2 · 2L, PdCl2 · 2.5EATZ and PdCl2 · 3MTTZ complexes the palladium ions are cis-(2X, 2L)-coordinated, the coordination sites being Nring for DTZ, NR2 for ATZ, MATZ, EATZ and C = S for MTTZ. PdBr2 · 1.5MTTZ may be formulated as cis[PdBr2-2L] · [PdBr2 · L]. In the PdX2 · L complexes the ligand very likely acts as bidentate by using a ring-nitrogen atom as the second coordination site.  相似文献   

15.
Summary Two ditertiaryarsines,o-phenylenebis(diphenylarsine), (pdpa) ando-phenylenebis(di-p-tolylarsine), (pdta) yield some new complexes of palladium(II) and platinum(II). These are: square planar M(pdta)X2 · nCH2Cl2, [M = Pd, X = Cl, Br or NCS; M = Pt, X = Cl]; [Pt(A-A)2] X2 · nCH2Cl2, [(A-A) = pdta, X = Cl, NCS or ClO4; (A-A) = pdpa, X=ClO4] and [M2(A-A)2(NCS)2] (ClO4)2 · nCH2Cl2, [M = Pd, (A-A) = pdta; M = Pt, (A-A) = pdpa]; distorted octahedral M(pdta)2-X2nCH2Cl2, [M = Pd, X = I; M = Pt, X = Br or I] and [Pd(pdta)2(H2O)2](ClO4)2, and five coordinate [M(A-A)2X] ClO4 · nCH2Cl2, [M = Pd, Pt, (A-A) = pdta, X = I; M = Pt, (A-A) = pdpa, X = Br or I]. The [M2(A-A)2(NCS)2] (ClO4)2 · nCH2Cl2 complexes are novel in the sense that they contain bridging thiocyanate together with ionic perchlorate. The stereochemical assignments have been made on the basis of i.r. and u.v. spectra as well as conductance data.  相似文献   

16.
Ru(III), Rh(III), Pt(IV) and Ir(III) complexes of 2-furfural thiosemicarbazone as ligand have been synthesised. These complexes have the composition [M(ligand)2X2]X (M = Ru(III) Rh(III) and Ir(III) X = Cl and Br) and [Pt(ligand)2 X2] X2 (X = Cl, Br and 1/2SO4). The deprotonated ligand forms the complexes of the formulae M(ligand-H)3 and Pt(ligand-H)3Cl. All these complexes have been characterized by elemental analysis, magnetic measurements, electronic and infrared spectral studies. All the complexes are six-coordinate octahedral.  相似文献   

17.
Summary Cobalt(II) and nickel(II) complexes of 4-amino-6-methyl-5-oxo-3-phenylamino-1,2,4-triazine (ATAZ), MX2(ATAZ)2 · 2 H2O (M = Co or Ni; X = Cl, Br, I or NCS), have been isolated. The electronic spectra, magnetic moments and i.r. spectra of the compounds have been studied.Pseudo-octahedral environments are proposed for the complexes: [MX2(ATAZ)2]. 2 H2O (M = Ni or Co; X = Cl or Br) and [CoI2(ATAZ)2(H2O)2], and apseudo-tetrahedral structure for [NiX2(ATAZ)2] · 2 H2O (X = I or NCS) and [Co(NCS)2-(ATAZ)2] · 2 H,O. However, [CoX2(ATAZ)2]. 2 H2O (X = Cl or Br) give acetone solutions containing tetrahedral cobalt(II).  相似文献   

18.
The [Pd(cod)(cotl)]ClO4 complex (cod = cycloocta-1,5-diene; cotl = cyclooctenyl, C18H13 ) undergoes substitutions with new Schiff base ligands containing benzimidazole L [L = 2-(2-N-n-propylidenephenyl)benzimidazole (L1); 2-(2-N-i-propylidenephenyl)benzimidazole (L2); 2-(2-N-n-butylidenephenyl)benzimidazole (L3); 2-(2-N-i-butylidenephenyl)benzimidazole (L4)]. Facile displacement of cod by L occurs to produce complexes of the type [Pd(cotl)L]ClO4· nMe2CO (n= 0; L = L1, L2 or L3; n= 2, L = L4). Dihalobridge complexes of the type [Pd(cotl)X]2(X = Cl or Br) undergo halogen-bridge cleavage with L1–L4 to give mononuclear complexes of the type Pd(cotl)LX · nH2O (n= 2, X = Cl, L = L1; n= 0, X = Br, L = L1; n= 0, X = Cl, L = L2; n= 0, X = Cl or Br, L = L3; n= 0, X = Cl, L = L4; n= 2, X = Br, L = L4) and a binuclear complex [Pd(cotl)Br]2L2. The complexes were characterised by physical properties, i.r., 1H- and 13C-n.m.r. spectral techniques and by mass spectra. Probable structures have been proposed.  相似文献   

19.
Summary The addition of NPm (diphenylaminodiphenylphosphinomethane) to CuI or the addition of KI to (NPm)2CuNO3 leads to the same P-bonded CuI complex, (NPm)2CuI, presenting a trigonal geometry around the Cu atom. The reaction of this new complex (or of its chloro analogue) with a CuII salt yields dinuclear species of general formula [(NPm)Cu(-X)2Cu(NPm)] (X = Cl or I). X-ray analysis of these complexes show that they are isostructural and retain the trigonal geometry around the metal atom. The Cu···Cu distances are 2.775(1)Å for X = Cl and 2.642(1) Å for X = I. The Cu-(-X)-Cu angle is more acute for the iodide [61.48(3)°] than for the chloride [74.17(8)°] complex. These values are discussed in terms of Cu···Cu interactions induced by the electron donor ability of X and the bulk of the phosphine L.  相似文献   

20.
Summary By inhibiting the copper(II) assisted TPT (TPT = 2,4,6-tris(2-pyridyl)-1,3,5-triazine) hydrolysis, monomeric and dimeric copper(II) complexes having as general formulae Cu(TPT)X, · nH2O (X = Cl, Br, NCS, NCO or N3) and [Cu(TPT)X]2(PF6)2 · nH2O (X = Cl, Br, NCS or N3) have been synthesized and characterized by i.r., electronic and e.p.r. spectra, x-ray powder diffraction and analytical data. Spectroscopic results indicate five-coordinate geometry around the copper(II) ion, intermediate between trigonal-bipyramid and square-pyramid structures. The half-field absorption in the MS = 2 region of powdered X-band e.p.r. spectra has been observed for the dimeric species.  相似文献   

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