Synthesis and crystal structures of heterobimetallic Fe-Cd, Fe-Zn, and Fe-In complexes containing hemilabile phosphorus/oxygen and silicon/oxygen bridging ligands
暂无分享,去创建一个
[1] M. Nieuwenhuyzen,et al. Cadmium iodide complexes with dimethylsulphoxide, and their crystal structures , 1992 .
[2] A. Habtemariam,et al. Reactions of sterically hindered organozinc and organocadmium compounds containing functional silicon centres. Crystal structures of Zn[C(SiMe3)2(SiMe2OCOCF3)]2 and Cd[C(SiMe3)2(SiMe2OMe)]2 , 1992 .
[3] W. Setzer,et al. Synthesis and complexation studies of mesocyclic and macrocyclic polythioethers. 9. Crystal and molecular structure of (1,4,7,10,13-pentathiacyclopentadecane)cadmium(II) perchlorate hydrate: a seven-coordinate cadmium , 1992 .
[4] M. Knorr,et al. Occurrence of a µ-SiF interaction in bimetallic trifluorosilyl complexes , 1992 .
[5] M. Knorr,et al. Synthesis of dppm-stabilized Si–Fe–M (M = Zn, Cd, Hg or Tl) complexes and crystal structure of a heterotetranuclear Fe2Cd2 complex (dppm = Ph2PCH2PPh2) , 1992 .
[6] K. Peters,et al. Contributions to the chemistry of silicon-sulphur compounds—LX. Synthesis, molecular structure and properties of the dimeric cadmium(II) bis(tri-tert-butoxysilanethiolate) (t-C4H9O)3SiS2Cd2 , 1992 .
[7] M. Knorr,et al. Synthesis and reactivity of bimetallic alkoxysilyl complexes. Crystal structure of [cyclic][Fe(CO)3{.mu.-Si(OMe)2(OMe)}(.mu.-dppm)Rh(CO)] (dppm = Ph2PCH2PPh2): a complex with a .mu.2-.eta.2-SiO bridge between iron and rhodium , 1991 .
[8] P. Braunstein. Interplay between bridging groups and metal-metal bonds in heterometallic clusters , 1991 .
[9] N. C. Norman,et al. Synthetic and structural studies on organoiron-indium complexes , 1991 .
[10] U. Schubert,et al. Synthesis and structure of bimetallic allyl, alkoxysilyl complexes [Fe{Si(OMe)3}(CO)3(.mu.-dppm)M(.eta.3-2-RC3H4)] M = Pd, Pt; R = H, Me) and of [Fe{.mu.-Si(OMe)2(OMe)}(CO)3(.mu.-dppm)Pd(SnPh3)], a Sn-Pd-Fe-Si chain complex with a .mu.2-.eta.2-SiO bridge , 1991 .
[11] E. Lindner,et al. Coordination chemistry and catalysis with hemilabile oxygen-phosphorus ligands , 1991 .
[12] A. Habtemariam,et al. Some unusual organo-zinc and -mercury compounds. The crystal structures of the compounds [(HOMe2Si)(Me3Si)2C]2Zn, [(MeOMe2Si)(Me3Si)2C]2Zn, and [(MeOMe2Si)(Me3Si)2C]2Hg , 1991 .
[13] U. Schubert,et al. Synthesis and reactivity of phosphine-substituted hydrido silyl complexes mer-[FeH(SiR3)(CO)3{Ph2P(CH2)nPPh2}](n= 1 or 4), mer-[FeH{Si(OMe)3}(CO)3(PPh2H)] and mer-[FeH{Si(OMe)3}(CO)3{Ph2PCH2C(O)Ph}]. Synthesis of bimetallic complexes and crystal structure of mer-[(Ph3P)Cu(µ-dppm)Fe{Si(OMe)3}(CO)3] , 1991 .
[14] L. Lindoy,et al. Metal-ion selectivity by macrocyclic ligands. Part 2. The interaction of ZnII, CdII and HgII with pyridinyl-derived N3O2 macrocycles; X-Ray structures of one zinc and two cadmium endomacrocyclic complexes and of one zinc and one mercury exomacrocyclic complex , 1991 .
[15] R. C. Mehrotra,et al. Crystal and molecular structure of the dimeric complex [{Cd[Zr2(OPri)9](η-Cl)}2] , 1991 .
[16] J. Atwood,et al. Synthetic and structural studies on Group 13 complexes containing the M(CO)3(η-C5H5) fragment (M = Cr or Mo). Part 2. Complexes [InClx{M(CO)3(η-C5H5)}2]n–(x= 1, n= o; x= 2, n= 1) , 1991 .
[17] M. Knorr,et al. Occurrence of an η2‐μ2‐SiO Bridge in Bimetallic Complexes. Synthesis of dppm‐Stabilized Si‐Fe‐M (M = Rh, Cu, Hg) Complexes and Crystal Structure of Fe(CO)3(Si(OMe)3)(μ‐dppm)Cu(AsPh3) (dppm = Ph2PCH2PPh2). , 1991 .
[18] C. Rossi,et al. Metal complexes of the antiinflammatory drug piroxicam , 1990 .
[19] M. Chiang,et al. The first square-planar complex of cadmium(II): Cd(OAr)2(THF)2 where OAr = 2,6-di-tert-butylphenoxide. A structure governed by two strong covalent and two weak dative bonds , 1990 .
[20] B. Neumüller. Synthese und Eigenschaften von iPr2InCl, iPrInCl2 und (iPr2InNHtBu)2 , 1989 .
[21] P. Braunstein,et al. Komplexe mit einer η2‐μ2‐SiO‐Brücke; Struktur des Zweikernkomplexes [Fe(CO)3‐{μ‐Si(OMe)2OMe}(μ‐dppm)PdCl](Fe–Pd) , 1989 .
[22] P. Braunstein,et al. β-Keto phosphines derived from ferrocene. Syntheses and structures of [Ph2PCH2C(O)(η5-C5H4)Fe(η5-C5H5)] (L1) and trans-[PdCl2L12] , 1989 .
[23] E. Molins,et al. Complexes of the pyridine-based, tridentate, sulphur-containing ligands 2,6-bis(ethylthiomethyl)pyridine, 2,6-bis(methoxycarbonylethylthiomethyl)-pyridine, and 2,6-bis(benzylthiomethyl)pyridine. Crystal structure of [2,6-bis(ethylthiomethyl)pyridine]dichlorocadmium(II) hydrate , 1989 .
[24] J. Ruiz,et al. A novel type of tetradentate uracil derivative in a dodecahedral eight-coordinate chelate complex: catena-bis (.mu.-6-amino-3-methyl-5-nitrosouracilato-N5,O4,N1,O2)cadmium(II) , 1986 .
[25] P. Braunstein,et al. Complexes with functional phosphines. Part 8. Interconversion study of [RuCl2{Ph2PCH2C(O)OEt}L2], [RuCl2(CO){Ph2PCH2C(O)OEt}L], and [RuCl2(CO)2L2][L = Ph2PCH2C(O)OEt] under CO. Synthesis and X-ray structure of mer-[RuCl3{Ph2PCH2C(O)OEt}L] , 1986 .
[26] P. Braunstein,et al. Complexes of functional phosphines. 5. Rhodium(III) and ruthenium(II) complexes of ethyl (diphenylphosphino)acetate. Synthesis, dynamic behavior, and crystal structure. Reversible carbon monoxide coordination on a ruthenium(II) complex , 1983 .
[27] D. I. Stuart,et al. An empirical method for correcting diffractometer data for absorption effects , 1983 .
[28] L. Lindoy,et al. Discrimination by structural dislocation: thermodynamic stabilities of the ZnII and CdII complexes of a serious of O2N3-donor macrocycles , 1983 .
[29] R. Srivastava,et al. Far-infrared, Raman, and phosphorus-31 nuclear magnetic resonance spectral investigation of the electronic effects in triarylphosphine complexes of cadmium(II) halides , 1981 .
[30] T. Rauchfuss,et al. Metal complexes of hemilabile ligands. Reactivity and structure of dichlorobis(o-(diphenylphosphino)anisole)ruthenium(II) , 1980 .
[31] R. Bau,et al. Crystal and molecular structure of the monoclinic form of aqua(5'-cytidine monophosphato)cadmium(II)-1.5-water , 1978 .
[32] T. Marks,et al. Metal-metal bond cleavage reactions. The crystal and molecular structure of (2,2'-bipyridyl)cadmium tetracarbonyliron, (bpy)CdFe(CO)4 , 1977 .
[33] T. Marks,et al. Metal-Metal Bond Cleavage Reactions. The Crystallization and Solid State Structural Characterization of Cadmium Tetracarbonyliron, CdFe(CO)4 , 1977 .
[34] H. Preut,et al. Single-crystal x-ray analysis of compounds with a covalent metal-metal bond. 5. Characterization of halogeno-bridged structures of three dimers of halogenobis(pentacarbonylmanganio)indium(III), [(Mn(CO)5)2In(.mu.-X)]2 (X = chlorine, bromine, iodine) , 1976 .
[35] C. Raston,et al. Crystal structure of potassium tris(acetylacetonato)cadmate(II) monohydrate , 1975 .
[36] H. Leligny,et al. Structure de CdCl2.2,5H2O , 1975 .
[37] P. Braunstein,et al. Etude spectroscopique de composés carrés plans du Pt(II) et du PD(II) avec des pyridines substituées—I. Vibrations des coorsdinats , 1974 .
[38] B. N. Storhoff. Rhenium(I) complexes of (2-cyanoethyl)diphenylphosphine , 1972 .
[39] C. Fyfe,et al. The molecular dynamics of fluxional organometallic molecules in the solid state: tetracarbonylbis(cyclooctatetraene)triruthenium(0) , 1972 .
[40] M. J. Mays,et al. Pentacarbonylmanganese complexes of indium , 1972 .
[41] D. H. Brown,et al. The preparation and far I.R. spectra of some indium trihalide complexes , 1970 .
[42] C. Calvo,et al. Crystal structure of Cd2P2O7 , 1969 .
[43] G. D. Rieck,et al. International tables for X-ray crystallography , 1962 .
[44] F. G. Mann,et al. 853. The cyanoethylation of aryl phosphines , 1952 .