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1.
Reaction of cyclometalated platinum(II) precursor [Pt(C^N)Cl(dmso)], 1, C^N = N(1), C(2′)-chelated deprotonated 2-phenylpyridine and dmso = dimethylsulfoxide, with 1 equivalent of triphenyl phosphine, PPh3, or 1,3,5-triaza-7-phosphaadamantane, PTA, gave the complex [Pt(C^N)Cl(PPh3)], 2, or [Pt(C^N)Cl(PTA)], 3, respectively. On the basis of careful multinuclear NMR spectroscopy, supported by a number of 2D NMR experiments, structures of the complexes 2 and 3 in solution were determined to be neutral four coordinate. The X-ray crystallography indicated that the solid-state structure of complex 3 comprised a common square-planar geometry around platinum(II). Cytotoxicity of the complexes 2 and 3 was studied in three human cancer cell lines derived from ovarian carcinoma (CH1), lung carcinoma (A549), and colon carcinoma (SW480).  相似文献   

2.
The reaction between 2,5-bis(trimethylsilylethynyl)thiophene and Co2(CO)8 or Co2(CO)6(X), (X = dppa, dppm), gave rise to the formation of substituted ethynylcobalt complexes containing one or two Co2(CO)6 or Co2(CO)4(X) units, 2-[Co2(CO)4(X){μ22-(SiMe3)C2}]-5-(Me3SiCC)C4H2S (X = 2CO (1), dppa (3) or dppm (4)) and 2,5-[Co2(CO)4(X){μ22-SiMe3C2}]2C4H2S (X = 2CO (2), dppa (5) or dppm (6)). Desilylation of the non-metallated and metallated alkynes in 3, 4 and 6 occurred on treatment with KOH and tetrabutylammonium fluoride to give 2-[Co2(CO)4(μ-X){μ22-SiMe3C2}]-5-(CCH)C4H2S (X = dppa (7), dppm (8)) and 2,5-[Co2(CO)4(μ-dppm){μ22-HC2}]2C4H2S (9), respectively. Crystals of 6 suitable for single-crystal X-ray diffraction were grown and the molecular structure of this compound is discussed. A comparative electrochemical study of all these complexes is presented by means of the cyclic and square-wave voltammetry techniques.  相似文献   

3.
The known complexes [Cp2Fe2(μ-SEt)2(MeCN)2](PF6)2 (1) and Cp2Fe2(μ-SEt)2(CN)2 (2) are prepared to investigate their reactivity. The reaction of complex 2 with equimolar amounts of MeOTf yields a monomethylation product [Cp2Fe2(μ-SEt)2(CN)(CNMe)](OTf) (3). Dimethylation of complex 2 by 2 equiv. MeOTf gives a complex [Cp2Fe2(μ-SEt)2(CNMe)2](OTf)2 (4). Complex 1 containing two labile MeCN ligands reacts with several bidentate phosphine ligands, such as dppm, dppa, and dppf, to afford complexes [Cp2Fe2(μ-SEt)2(dppm)](PF6)2 (5), [Cp2Fe2(μ-SEt)2(dppa)](PF6)2 (6), and [Cp2Fe2(μ-SEt)2(dppf)](PF6)2 (7), respectively. The spectroscopic, electrochemical, and reactivity studies of iron-sulfur core complexes are performed. The structures of complexes 1-7 were confirmed by X-ray crystallography.  相似文献   

4.
Reactions of the trinuclear iron cluster [Fe3Cp2(CO)3(μ-CO)(μ3-CO)(μ3-CF3C2CF3)] (1) with the bis(phosphino) ligands dppm and dppe give different results: dppe yields mainly the hexanuclear compound (2) in which two tri-iron cluster units are linked by the diphosphine, although a trinuclear derivative (3) with a chelating dppe ligand is also obtained as a minor product, whereas dppm displaces carbonyl to give complexes containing exclusively a single tri-iron unit, though the phosphine may be either dangling (4) or chelating (5). The complexes 2-5 have been characterised by elemental analyses and from their IR and NMR spectra, supplemented in the case of 2 by a single crystal X-ray diffraction analysis.  相似文献   

5.
Density functional theory (DFT) calculations have been carried out on four novel dicoordinated lead compounds PbL2 where L is an N-heterocyclic ylidene or a five-membered cyclic ylidene (1Pb, 2Pb, 4Pb, 5Pb) and for a plumbylene-coordinated carbone CL2 (3Pb). The theoretically predicted equilibrium geometries and the first and second proton affinities of 1Pb?C5Pb are reported. Geometry optimizations have also been carried out for the complexes with one and two BH3 ligands 1Pb(BH 3 )?C5Pb(BH 3 ) and 1Pb(BH 3 ) 2 ?C5Pb(BH 3 ) 2 , and for the transition metal complexes 1PbW(CO) 5 ?C5PbW(CO) 5 and 1PbNi(CO) 3 ?C5PbNi(CO) 3 . The results suggest that the molecules 1Pb, 2Pb and 4Pb possess properties which identify them as divalent Pb(0) compounds (plumbylones). This comes to the fore by the theoretically predicted second PAs which are very large for a lead compound and (for 1Pb and 4Pb) by the BDE of the second BH3 ligand. Compound 3Pb should be considered as a plumbylene-coordinated divalent C(0) compound (carbone) which has a very high second PA of 195.1?kcal/mol. The geometry optimization of 5Pb gives an equilibrium structure which identifies the molecules as divalent Pb(II) compound, i.e., as a plumbylene.  相似文献   

6.
Two isomeric NS2-macrocycles incorporating a xylyl group at ortho (o -L) and meta (m -L) positions were employed and their copper complexes (1?C5) were prepared and structurally characterized. The copper(II) nitrate complexes [Cu(L)(NO3)2] (1: L = o -L, 2: L = m -L) for both ligands were isolated. In each case, the copper center is five-coordinated with a distorted square pyramidal geometry. Despite the overall geometrical similarity, 1 and 2 show the different ligand conformation due to the discriminated packing pattern. Reaction of o -L with copper(II) perchlorate afforded complex 3 containing two independent complex cations [Cu(o -L)(H2O)(DMF)(ClO4)]+ and [Cu(o -L)(H2O)(DMF)]2+; the coordination geometry of the former is a distorted octahedron while the latter shows a distorted square pyramidal arrangement. In the reactions of copper(I) halides (I or Br), o -L gave a mononuclear complex [Cu(o-L)I] (4) with a distorted tetrahedral geometry, while m -L afforded a unique exodentate 2:1 (ligand-to-metal) complex [trans-Br2Cu(m-L)2] (5) adopting a trans-type square-planar arrangement.  相似文献   

7.
The reactions of N-(2(diphenylphosphino) benzylidene) (phenyl) methanamine, Ph2PPhNHCH2-C5H4N, 1 and N-(2-(diphenylphosphino) (benzylidene) (thiophen-2-yl) methanamine, Ph2PPhNHCH2-C4H3S, 2 with MCl2(cod) and MCl(cod)Me (M = Pd, Pt; cod = 1,5-cyclooctadiene) yield the new complexes [M(Ph2PPhNHCH2-C5H4N)Cl2], M = Pd1a, Pt1b, [M(Ph2PPhNHCH2-C5H4N)ClMe], M = Pd1c, Pt 1d, [M(Ph2PPhNHCH2-C4H3S)Cl2], M = Pd2a, Pt 2b, and [M(Ph2PPhNHCH2-C4H3S)ClMe], M = Pd2c, Pt 2d, respectively. The new compounds were isolated as analytically pure crystalline solids and characterized by 31P-, 1H-NMR, IR spectroscopy, electro spray ionization-mass spectrometry (ESI-MS) and elemental analysis. The representative solid-state molecular structures of the platinum complexes 1b and 2b were determined using single crystal X-ray diffraction analysis and revealed that the complexes exhibit a slightly distorted square-planar geometry. Furthermore, the palladium complexes were tested as potential catalysts in the Heck and Suzuki cross-coupling reactions.  相似文献   

8.
The reaction of [Co2(CO)6(dppm)] (1) with the ethynyl substituted triarylamines [N(C6H4-4-C??CSiMe3)(C6H4Me-4)2] (2) or [N(C6H4-4-C??CSiMe3)2(C6H4Me-4)] (3) affords [{Co2(CO)4(dppm)}{??-(Me3SiC2-4-C6H4)N(C6H4Me-4)2}] (4) or a mixture of [Co2{??-Me3SiC2-4-C6H4N(C6H4-4-C??CSiMe3)(C6H4Me-4)}(CO)4(dppm)] (5) and [{Co2(CO)4(dppm)}2{??-(Me3SiC2-4-C6H4)2N(C6H4Me-4)}] (6), respectively. A combination of electrochemical measurements in different electrolytes, and IR and NIR spectroscopic studies of these compounds, which feature both organometallic and organic redox active groups, indicates that the cluster centres are oxidised at significantly less positive potentials than the triarylamine moieties. Reaction of 6 with one or two equivalents of [Fe(??-C5H4COMe)Cp]PF6 gives [6][PF6] n (n?=?1, 2), which are best described in terms of cluster-localised oxidation processes. Despite the presence of the substantial differences in the first and second cluster based oxidations in 6 (up to 220?mV in CH2Cl2/0.1?M [NBu4][BAr 4 F ]), there is little ground state delocalisation between the cluster centres through the triarylamine bridge. The stabilisation of [6]+ with respect to disproportionation can be attributed to electrostatic effects.  相似文献   

9.
By interaction of trimethylplatinum(IV) iodide with phenyl-containing β-diketonates, the volatile monomeric complexes of trimethylplatinum(IV) based on benzoyltrifluoroacetone (Hbtfa) and benzoylacetone (Hbac) of the composition (CH3)3Pt(btfa)H2O (I) and (CH3)3Pt(bac)Py (II) are obtained. Synthesis of the complexes is described; data of elemental analysis and IR spectra are reported; thermal characteristics are studied by thermogravimetry. For the first time, a single crystal X-ray diffraction study of complexes (I), (II), and the initial tetrameric complex [(CH3)3PtI]4 (III) is performed.  相似文献   

10.
A number of stannylene complexes with different M: Sn ratios were obtained using various metals and substituents at the tin atom. The structures of the complexes were examined. A reaction of CpMn(CO)2THF with (Ph4As)+(SnCl3)? gave the ionic complex [Ph4As]+[CpMn(CO)2SnCl3]? (I). The action of C6F5MgBr on the complex C5H5Mn(CO)(NO)SnCl3 produced C5H5Mn(CO)(NO)Sn(C6F5)3 (II). Replacement of the Cl ions in the complex [CpFe(CO)2]2SnCl2 by phenylacetylenide groups gave rise to the neutral complex [CpFe(CO)2]2Sn(C≡CPh)2 (III). A reaction of (Dppm)PtCl2 (Dppm is 1,1-bis(diphenylphosphino)methane) with SnCl2 · 2H2O in the presence of diglyme yielded the ionic complex [η3-CH3O(CH2)2O(CH2)2OCH3)SnCl]+[(η 2-Dppm)Pt(SnCl3)3]? (IV). Transmetalation in a reaction of [(Dppe)2CoCl][SnCl3] · PhBr (Dppe is 1,2-bis(diphenylphosphino)ethane) with (Dcpd)PtCl2 (Dcpd is dicyclopentadiene) in the presence of SnCl2 afforded the ionic complex [Pt(Dppe)2]3[Pt(SnCl3)5]2 (V). Structures I–V were identified by X-ray diffraction. In these structures, the formally single bonds between the atoms of transition metals M (Mn, Fe, and Pt) and Main Group heavy elements (Sn and P) having vacant d orbitals are appreciably shortened. The M-Sn bond length in complexes II and III are virtually independent of the substituents at the tin atom and the Pt-Sn bond length in complexes IV and V is virtually independent of the Pt: Sn ratio.  相似文献   

11.
Four new coordination complexes of palladium(II) and platinum(IV) starting from bis(dimethylthiocarbamoyl)sulphide (L1) and bis(diethylthiocarbamoyl)disulphide (L2) were synthesized and characterized in solid state by elemental analysis, infrared and electronic spectroscopy as well as thermal analysis (TG/DTA). The complexes were formulated on the basis of experimental data as [Pd(Me2NCS2)2] (1), [Pt(Me2NCS)2SCl4]·3H2O (2), [Pd(Et2NCS2)2] (3) and [Pt(Et2NCS)2S2Cl4]·4H2O (4), respectively. TG experiments revealed the nature of complex species as hydrated (2 and 4) or anhydrous (1 and 3). Thermal decomposition of coordinated organic ligands occurs in one or two exothermic stages, the final residue being in all cases the free metal (Pd or Pt).  相似文献   

12.
The enantioselective interactions between chiral tetra-amidic receptors and nucleosides have been investigated by the ESI-IT-MS and ESI-FT-ICR-MS methodologies. Configurational effects on the CID fragmentation of diastereomeric [M H 2 ?H?A]?+ aggregates (A?=?2'-deoxycytidine dC, citarabine (ara-C) were found to be mostly offset by isotope effect in [S X 2 ?H?A]?+ (X?=?H, D) differently from the results obtained on the analogues (A?=?cytidine C and gemcitabine G). This result points the involvement of two different nucleoside/tetraamide isoforms. The structural differences of the [M H 2 ?H?A]?+ (A?=?C and G) complexes vs. the [M H 2 ?H?A]?+ (dC and ara-C) ones is fully confirmed by the kinetics of their uptake of the 2-aminobutane enantiomers, measured by FT-ICR mass spectrometry. Indeed, uptake of the 2-aminobutane enantiomers by [M H n ?H?A]?+ (n?=?1,2; A?=?dC and ara-C) complexes is reversible, while that by [M H n ?H?A]?+ (n?=?1,2; A?=?C and G) is not. The most encouraging result concerning the measured fragmentation and kinetic differences between C and ara-C, that are just epimers, indicates the possibility to subtly modulate the non-covalent drug/receptor interactions, through the electronic properties of the 2'-substituent on the nucleoside furanose ring, and furthermore on its three-dimensional position.  相似文献   

13.
A new asymmetric N,N′-bis(substituent)oxamide ligand, N-phenolato-N′-(3-dimethylaminopropyl)oxamide (H3pdmapo), and two of its binuclear Cu(II) complexes with different terminal ligands, namely [Cu2(pdmapo)(phen)(H2O)](ClO4) (1) and [Cu2(pdmapo)(bpy)(CH3OH)](ClO4) (2), where phen = 1,10-phenanthroline and bpy = 2,2′-bipyridine, have been synthesized and characterized. The crystal structures of both complexes have been determined by single-crystal X-ray diffraction. Both structures contain binuclear Cu(II) cationic complexes with pdmapo3? ligands. The asymmetric pdmapo3? ligands bridge two Cu(II) atoms in the cis conformation and the Cu···Cu separations through the oxamide bridge are 5.2046(18) and 5.207(2) Å for complexes 1 and 2, respectively. The coordination environments of the two Cu(II) atoms in each binuclear complex are different. The copper occupying the inner site of the pdmapo3? ligand is four-coordinated in a CuN3O distorted square-planar environment, while the other is five-coordinated in a square pyramid geometry. In complex 1, O–H···O and C–H···O hydrogen bonds link the complex into a one-dimensional chain. In complex 2, O–H···O hydrogen bonds link the molecules to form a dimer, together with two types of strong ππ interactions, giving a two-dimensional network structure. The cytotoxicities and DNA-binding properties of H3pdmapo and the two complexes were studied. The experimental evidence suggests that the ligand binds to DNA via a groove binding mode, while the binuclear complexes bind intercalatively to DNA.  相似文献   

14.
Human serum albumin (HSA) primarily functions as a transport carrier for a vast variety of natural ligands and pharmaceutical drugs. In the present study, three structurally related cationic Pt(II) complexes ([Pt(ppy)(dppe)]CF3CO2: 1, Pt(bhq)(dppe)]CF3CO2: 2, and [Pt(bhq)(dppf)]CF3CO2: 3) were used to evaluate their interaction with HSA under different experimental setups, using UV–Vis absorption spectroscopy, fluorescence and circular dichroism techniques. The spectroscopic results suggest that upon binding to HSA, the Pt(II) complexes could effectively induce structural alteration of the protein. The complexes can bind to HSA with the binding affinities of the following order: 3 > 2 > 1. Also, thermodynamic parameters of binding between these complexes and HSA indicated the existence of entropy-driven spontaneous interaction which primarily dominated with the hydrophobic forces. Also, docking simulation study revealed the binding details of these complexes on HSA. Complex 3 with highest binding affinity for HSA indicates lowest denaturing effect on this protein. The low denaturation properties of 3 appear important in the terms of lower susceptibility of this platinum complex for possible development of deleterious side effects.  相似文献   

15.
Reaction of [VO(OPr i )3] (1) with [O(CH2CH2OH)2] in 1:1 molar ratio in anhydrous benzene yield glycol-modified precursor, [VO{OCH2CH2OCH2CH2O}{OPr i }] (2). Further reactions of (2) with internally functionalized oximes in anhydrous benzene yield heteroleptic complexes of the type [VO{OCH2CH2OCH2CH2O}{ON=C(R)(Ar)}] (3–8) {where R=CH3, Ar=C4H3O-2 (3), C4H3S-2 (4), C5H4N-2 (5); and when R=H, Ar=C4H3O-2 (6), C4H3S-2 (7), C5H4N-2 (8)}. All these derivatives have been characterized by elemental analyses, molecular weight measurements and spectroscopic techniques. The crysoscopic molecular weight measurement as well as FAB mass study suggests dimeric nature of (2). However, FAB mass spectrum of (4), and the crysoscopic molecular weight measurements of (3), (4), (5) and (6) indicate the monomeric behavior of the oximato derivatives (3–8). Hexa-coordination around vanadium(V) has been proposed for both monomeric and dimeric derivatives. Sol–gel transformations of (1), (2) or (4) to vanadia [(a), (b) or (c), respectively] have been carried out at low sintering temperature (600 °C). The XRD patterns of (a), (b) or (c) indicate formation of a single orthorhombic phase in all the three cases. The SEM images suggest grain like [for (a) and (b)] and rod like [for (c)] morphology of the crystallites. IR, Raman spectra as well as EDX analyses indicate formation of pure vanadia. Absorption spectra of the vanadia (b) and (c) suggest energy band gaps of 2.53 and 2.65 eV, respectively.  相似文献   

16.
Inclusion complexation of methylalkyl viologens(C1CnV2+; n = 7–10, 12) withmono-6-O-(2-sulfonato-6-naphthyl)-β-CD (1)and mono-6-O-(2-naphthyl)-β-CD (2) werestudied by steady-state and time-resolved fluorescencespectroscopies and compared with the binding of theviologens with native β-CD investigated by induced circulardichroism. The viologens form bimodal complexes with1 and 2, in which the bipyridinium group of theviologens is placed on the primary side (type I complex) andsecondary side (type II complex) of β-CD cavity, while thegroup is predominantly on the secondary side in complexeswith native β-CD. The microscopic binding constantsKI and K II were calculated from theanalysis of fluorescence data. The formation of the type Icomplexes with 1 and 2 appears to be largely dueto the charge–transfer interaction between the bipyridinium andnaphthyl groups in the complexes. This work shows thatthe location of the bipyridinium group in β-CDcomplexes and in the type II complexes of the viologens with1 and 2 depends little on the length of alkyl chainof the viologens.  相似文献   

17.
Three new alkali-metal compounds stabilized by aryloxo groups were synthesized and fully characterized. The reactions of carbon-bridged bis(phenol)s MBMPH2 (MBMPH2 = 2,2′-methylene-bis(6-tert-butyl-4-methylphenol)) with sodium and potassium metals in tetrahydrofuran (THF) gave the desired alkali-metal complexes [MBMPNa2(THF)3]2 (1) and [(MBMPK2)2(THF)5]2 (2), respectively, in high isolated yields. A similar reaction of aminophenol [HNOH] ([HNOH] = N-p-methyl-phenyl(2-hydroxy-3,5-di-tert-butyl)benzylamine) with sodium gave the monosodium salt [HNONa(THF)]2 (3). Compounds 1-3 were well characterized, including X-ray structure determination. Compound 1 has a dimeric structure, and each sodium atom is four-coordinated with four oxygen atoms to form a distorted tetrahedron. Compound 2 has a centrosymmetric tetrameric structure. The coordination environments around the four potassium atoms are different. K1 is four-coordinated, K2 is three-coordinated, K3 is five-coordinated, whereas the coordination sphere of K4 is completed by one aryloxo oxygen atom and two oxygen atoms from two THF molecules and six carbon atoms from one arene ring of the bis(phenolate) ligand. Compound 3 has a dimeric structure, and each of the sodium atoms is four-coordinated to form a distorted tetrahedron. It was found that compounds 1-3 can efficiently initiate the ring opening polymerization of l-lactide in the absence of alcohol, yielding polymers with high molecular weights for a wide range of monomer-to-initiator ratios.  相似文献   

18.
The coordination chemistry of a rigid periodinated ligand, 2,3,5,6-tetraiodo-1,4-benzenedicarboxylic acid (H2BDC-I4), with a series of transition metal ions has been explored to afford five new coordination polymers {[M(BDC-I4)(MeOH)4](H2BDC-I4)(MeOH)2} n (M?=?ZnII for 1, CdII for 2, CoII for 3 and MnII for 4) and {[Mn(BDC-I4)(MeOH)4](DMF)} n (5). All these complexes have been characterized by elemental analysis, IR spectroscopy, thermogravimetric (TG) analysis, and X-ray crystallography. Single-crystal X-ray diffraction reveals that complexes 1?C4 are isostructural and have a one-dimensional chain structure. Upon the addition of the solvent DMF, the infinite linear chain array in 4 is converted to a 1-D wave-like chain motif in 5 with a different space group ( $ P\overline{1} $ for 4 and P21/c for 5). The difference between structures 1?C4 and 5 can be attributed to the coordination mode of carboxylate changing from trans to cis fashion. The ZnII and CdII complexes 1 and 2 display similar emissions in the solid state, which essentially are intraligand transitions.  相似文献   

19.
As the active site model of [FeFe]-hydrogenases, complexes [(μ-PDT)Fe2(CO)5]2(dppb) (PDT = SCH2CH2CH2S, dppb = Ph2PCH2CH2CH2CH2PPh2) (1) and [(μ-SCH2)2NCH2CO2Me]Fe2(CO)5(dppm) (dppm = Ph2PCH2PPh2) (2) were prepared by reactions of (μ-PDT)Fe2(CO)6 (A) or [(μ-SCH2)2NCH2CO2Me]Fe2(CO)6 (B) with dppb or dppm in the presence of the decarbonylating agent Me3NO?2H2O in MeCN at room temperature. Complex 1 was characterized by elemental analysis, IR, and 1H (31P, 13C) NMR spectroscopic techniques. In addition, the molecular structures of 1 and 2 have been confirmed by single crystal X-ray diffraction analysis. In the crystal structure of 1, two phosphorus atoms of dppb reside in a basal position of the square-pyramidal coordination sphere of the Fe2 and Fe3 atoms. However, in the crystal structure of 2, P1 atom of dppm resides in an apical position of the square-pyramidal coordination sphere of the Fe2 atom.  相似文献   

20.
Treatment of ortho-carborane, n-butyl lithium, selenium and [(p-cymene)RuCl2]2 under argon leads to complexes (p-cymene)Ru(Se2C2B10H10) (I) and (p-cymene)2Ru22-Se2C2B10H10) (II). The further reaction of 16-electron complex I with RC≡CCO2Me affords addition complexes (p-cymene)Ru(Se2C2B10H10)(RC=C-CO2Me) (III) (R = H (IIIa); CO2Me (IIIb)). These complexes were characterized by elemental analysis, mass, and NMR spectroscopy. X-ray structural analyses were performed on II and IIIa.  相似文献   

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