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1.
2.
Mixed-ligand hydride ReH2(NO)L(PPh3)2 complexes [L=P(OEt)3 or PPh(OEt)2] were prepared by allowing the ReH2(NO)(PPh3)3 species to react with an excess of phosphite. Treatment of ReH2(NO)L(PPh3)2 hydrides with an equimolar amount of aryldiazonium cations ArN2+ gives the mono-aryldiazene [ReH(ArNNH)(NO)L(PPh3)2]BPh4 complexes (Ar=C6H5, 4-CH3C6H4), while treatment with an excess of ArN2+ yields bis(aryldiazene) [Re(ArNNH)2(NO)L(PPh3)2](BPh4)2 derivatives. Binuclear [{ReH(NO)L(PPh3)2}2(μ-HNNArArNNH)](BPh4)2 and [{Re(4-CH3C6H4NNH)(NO)L(PPh3)2}2(μ-HNNArArNNH)](BPh4)4 complexes (ArAr=4,4′-C6H4C6H4, 4,4′-C6H4CH2C6H4) were also prepared. The reaction of the triphenylphosphine ReH2(NO)(PPh3)3 complex with aryldiazonium cations was studied and led exclusively to mono-aryldiazene [ReH(ArNNH)(NO)(PPh3)3]BPh4 and [{ReH(NO)(PPh3)3}2(μ-HNNArArNNH)](BPh4)2 derivatives. The complexes were characterised spectroscopically (IR, NMR) using the 15N-labelled derivatives. The aryldiazenido [ReH(C6H5N2){PPh(OEt)2}4]BPh4 complex was prepared by allowing trihydride ReH3[PPh(OEt)2]4 to react with phenyldiazonium tetrafluoroborate. A reaction path involving the aryldiazene [ReH2(C6H5NNH){PPh(OEt)2}4]+ intermediate was also proposed.  相似文献   

3.
Palladium-catalyzed amination reactions of aryl halides have undergone rapid development in the last 12 years, largely driven by the implementation of new classes of ligands. Biaryl phosphanes have proven to provide especially active catalysts in this context. This Review discusses the application of these catalysts in C-N cross-coupling reactions in the synthesis of heterocycles and pharmaceuticals, in materials science, and in natural product synthesis.  相似文献   

4.
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The synthesis of a new series of 2,6-bis(imino)pyrazinyl ligands, [ArNCPyzCNAr] where the aryl groups Ar = naphtyl, 2,6-dimethylphenyl, 2,6-diisopropylphenyl, 2,4,6-trimethylphenyl, and their iron(II) complexes is described starting from monoacetylpyrazine.  相似文献   

6.
The treatment of phenylmercury(II) acetate with several pyrimidine-2-thiones (RpymSH) results in the formation of the corresponding pyrimidine-2-thionato complexes [PhHg(RpymS)]. The crystal structure of [PhHg(4,6-Me2pymS)] shows a nearly lineal coordination environment for the mercury atom, with the ligand using the exocyclic sulfur atom to bind the metal; a weak interaction between mercury and one of the heterocyclic nitrogens is also observed. Vibrational and 1H, 13C and 199Hg NMR spectroscopic data of the complexes are discussed and related to the structure.  相似文献   

7.
Two novel diamine dioxime ligands, 4,7‐diaza‐3,8‐diethyldecane‐2,9‐dione bis oxime (3) and 4,9‐diaza‐3,10‐diethyldodecane‐2,11‐dione bis oxime (5), were synthesized in order to develop new brain perfusion imaging agents, based on 99mTc(V)‐complexes. The synthesis involved condensation of 2‐hydroxyimino‐3‐pentanone with appropriate diamine in protic solvent which afforded the bis imine adducts. Subsequent reduction of imine functional groups yielded a diastereoisomeric mixture of 3 and 5. UV–visible, IR, 1H NMR, 13C NMR and elemental analysis were used to characterize the structures of the synthesized compounds. 99mTc‐complexes of both diamine dioximes were prepared and radiolabeling conditions optimized to give the maximum yield. Physicochemical parameters of the labeled complexes as well as and their biodistribution in rats were investigated. Both compounds (3 and 5) formed 99mTc‐complexes with a net charge of zero, determined by electrophoresis. The resultant lipophilic 99mTc‐complexes of 3 and 5 were readily formed at pH ~9.0 within 10 min at room temperature with yields of 90% and 95%, respectively. The 99mTc‐3 complex was found to be stable within 1 h, while 99mTc‐5 was stable for a few hours. A significant brain uptake of 99mTc‐3 (2.1% injected dose) and 99mTc‐5 (1.8% injected dose) complexes, 2 min after injection, is in accordance with their lipophilicity. The present study suggests that both ligands are promising candidates as new 99mTc‐based brain‐imaging agents. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

8.
Summary. A series of new substituted bis(benzoyl) peroxides has been synthesised from their corresponding acid chlorides in high yield. The reactions were carried out in aqueous sodium peroxide solution and butanone in the presence of 0.5% stearyltrimethylammonium chloride (STAC) at a temperature below 15°C. STAC improved the purity, and the fast addition improved the yield of the peroxides. Mass spectral analysis of substituted bis(benzoyl) peroxides using EI has been carried out for accurate mass determinations.Present address: Boron Molecular Ltd. PO Box 756, Noble Park, VIC, Australia 3174Author to receive any questions about mass spectral analysis  相似文献   

9.
Six novel ionic phosphine ligands with a cobaltocenium backbone, 1,1′-bis(dicyclohexylphosphino) cobaltocenium hexafluorophosphate () (1a), 1,1′-bis(di-iso-propylphosphino) cobaltocenium hexafluorophosphate () (2a), 1,1′-bis(di-tert-butylphosphino) cobaltocenium hexafluorophosphate () (3a), and the monophosphine ligand (Cc+ = cobaltocenium; R = Cy, 1b; R = i-Pr, 2b; R = t-Bu, 3b) were synthesized and characterized by elemental analysis, spectroscopy, and X-ray diffraction techniques. These ligands are air-stable and useful for Suzuki coupling reactions in the ionic liquid 1-butyl-3-methylimidazolium hexafluorophosphate (), enabling high catalytic activity.  相似文献   

10.
A one pot, multi-component CuAAC reaction has been developed for the generation of alkyl, benzyl or aryl substituted bi and tridentate pyridyl-1,2,3-triazole ligands from their corresponding halides, sodium azide and alkynes in excellent yields. The ligands have been fully characterized by elemental analysis, HR-ESMS, IR, 1H and 13C NMR and in the ferrocenyl substituted cases the structures were confirmed by X-ray crystallography. Additionally, we have examined the coordination chemistry of these ligands and found that a variety of geometrically diverse Cu(II) and Ag(I) complexes, including interesting tri and tetrasilver complexes, can be formed.  相似文献   

11.
The reaction between Fe[C5H4CH(pz)2]2 (pz = pyrazolyl ring) and two equivalents of Re(CO)5Br in refluxing toluene produces Fe[C5H4CH(pz)2Re(CO)3Br]2 (1) in high yield. A similar reaction with a ligand/rhenium ratio of slightly greater than one yields mainly 1 and a low yield of Fe[C5H4CH(pz)2Re(CO)3Br][C5H4CH(pz)2] (2). The compound H2C(pz)2Re(CO)3Br (3) was prepared by the reaction of H2C(pz)2 and Re(CO)5Br. Compounds 1 and 2 show a reversible oxidation at ca. 0.9 V (Ag/AgCl) that can be assigned to the oxidation of the ferrocene moiety and one irreversible oxidation at ca. 1.4 V assigned to the oxidation of the rhenium metal center. The solid-state structures of 1 · CH3NO2, 1 · 2CH3NO2, 1 · 2CH3CN and 2 · 1/2Et2O · 1/2C3H6O have been determined, with 1 · 2CH3NO2 and 1 · 2CH3CN being isomorphous. All four are organized into supramolecular structures by the interactions of the acidic hydrogens of the pyrazolyl and methine groups with either the bromine atoms or carbonyl ligand oxygen atoms, and in 2 the lone pairs on the uncomplexed bis(pyrazolyl)methane units.  相似文献   

12.
The reaction of three positional isomer ligands of bis(1,2,4-triazol-1-ylmethyl)benzene and Co(NCS)2 gives three coordination polymers [Co(obtz)2(NCS)2] n (1), [Co(mbtz)2(NCS)2] n (2), and {[Co(bbtz)2(NCS)2]?·?2DMF} n (3). Polymers 1 and 2 are comprised of similar 1-D double chains. In 1, each chain forms π–π stacking interactions with four adjacent chains (two above and two below) to extend to a 3-D supramolecular network. Polymer 3 is a neutral 2-D (4,4) network. The dangling NCS? inserts into the window of adjacent layers in a mutual relationship and result in a 2-D?→?3-D polythreaded network in 3. The thermal stability and the diffuse reflectance UV-Vis spectroscopy of 1, 2, and 3 were measured.  相似文献   

13.
New Mannich bases bis(thiosemicarbazide methyl) phosphinic acid H3L1 and bis(1-phenylsemicarbazide methyl) phosphinic acid H3L2 were synthesized from condensation of phosphinic acid and formaldehyde with thiosemicarbazide and 1-phenylsemicarbazide, respectively. Monomeric complexes of these ligands, of general formula K2[CrIII(L n )Cl2], K3[FeII(L1)Cl2], K3[MnII(L2)Cl2], and K[M(L n )] (M = Co(II), Ni(II), Cu(II), Zn(II) or Cd(II); n = 1, 2) are reported. The mode of bonding and overall geometry of the complexes were determined through IR, UV-Vis, NMR, and mass spectral studies, magnetic moment measurements, elemental analysis, metal content, and conductance. These studies revealed octahedral geometries for the Cr(III), Mn(II), and Fe(II) complexes, square planar for Co(II), Ni(II), and Cu(II) complexes and tetrahedral for the Zn(II) and Cd(II) complexes. Complex formation via molar ratio in DMF solution has been investigated and results were consistent to those found in the solid complexes with a ratio of (M : L) as (1 : 1).  相似文献   

14.
Zinc complexes with pyrimidine-2-thionato ligands with the general formula [Zn(RpymS)2] can be easily obtained by electrochemical oxidation of a zinc anode in a cell containing an acetonitrile solution of the appropriate thione (RpymSH, R = 4,6-Me2,5-Et; 4-CF3 and 4,6-CF3,Me). When 2,2′-bipyridine (bipy) or 1,10-phenanthroline (phen) were added to the cell, the corresponding adducts [Zn(RpymS)2L] were also obtained (L = bipy, phen). All of the compounds have been characterized by microanalysis, mass spectrometry, IR spectroscopy and, for compounds that were sufficiently soluble, by 1H and 13C NMR spectroscopy. The compounds [Zn(4,6-Me2,5-EtpymS)2(MeOH)] (4), [Zn(4-CF3pymS)2(phen)] (7) and [Zn(4,6-CF3,MepymS)2(bipy)] (9) were also characterized by X-ray diffraction. The structures of all of these complexes consist of discrete molecules. In complex 4, the pyrimidine-2-thionato acts as an S,N bidentate chelating ligand. The coordination number for Zn is five and the fifth position is occupied by an oxygen atom from a methanol molecule. In 7 and 9, the coordination number for the metal centre is four. In these cases the thionato ligands show a monodentate behaviour, using the exocyclic sulfur to bind the zinc atom.  相似文献   

15.
The Friedländer condensation of 3-aminothieno[2,3-b]pyrazine-2-carboxaldehyde with either methyl ketones or carbocyclic and heterocyclic ketones leads to a family of new bidentate ligands containing a pyridothienopyrazine coordinating unit. Complexation with [Ru(bpy)2Cl2] affords the corresponding six-coordinated Ru(II) complexes. The structures were analyzed by 1H NMR spectroscopy, which shows shielding effects reflecting significant interligand π-stacking interaction in the complexes. The photophysical properties of the ligands and their metallic complexes have been also examined.  相似文献   

16.
Treatment of a solid mixture of KBH4 with six equivalents of 3,5-diisopropylpyrazole (iPr2pzH) at 180 °C afforded KTpiPr2(iPr2PzH)3 in 53% yield. KBpiPr2 was synthesized in 56% yield by treatment of a 1:2 M ratio of KBH4 and iPr2PzH in refluxing dimethylacetamide. Treatment of MI2 (M = Ca, Sr, Ba) with two equivalents of KBp or KBpiPr2 in tetrahydrofuran afforded MBp2(THF)2 (M = Ca, 64%, M = Sr, 81%), BaBp2(THF)4 (32%), and M(BpiPr2)2(THF)2 (M = Ca, 63%; M = Sr, 61%, M = Ba, 48%) as colorless crystalline solids upon workup. These complexes were characterized by spectral and analytical techniques and by X-ray crystal structure determinations of all complexes except KBpiPr2. KTpiPr2(iPr2PzH)3 contains one κ3-N,N,N-TpiPr2 ligand and three κ1-iPr2pzH ligands, with overall distorted octahedral geometry about the K ion. The iPr2PzH nitrogen-hydrogen bonds are engaged in intramolecular hydrogen bonding to the 2-nitrogen atoms of the TpiPr2 ligand. The solid state structures of MBp2(THF)2, BaBp2(THF)4, and M(BpiPr2)2(THF)2 contain κ3-N,N,H Bp and BpiPr2 ligands, which form through metal-nitrogen bond formation to the 2-nitrogen atoms of the pyrazolyl fragments and metal-hydrogen bond formation to one boron-bound hydrogen atom per Bp ligand. SrBp2(THF)2has the shortest metal-hydrogen interactions among the series. A combination of preparative sublimations, solid state decomposition temperatures, and thermogravimetric analysis demonstrated that MBp2(THF)2, BaBp2(THF)4, and M(BpiPr2)2(THF)2 undergo solid state decomposition at moderate temperatures.  相似文献   

17.
New mono-, di- and tri-organotin(IV) derivatives containing the neutral bis(2-pyridylthio)methane ligand, [(pyS)2CH2] and tris(2-pyridylthio)methane ligand, [(pyS)3CH] have been synthesized from reaction with SnRnCl4−n (R = Me, nBu, Ph and Cy, n = 1-3) acceptors. Mono-nuclear adducts of the type {[(pyS)2CH2]RnSnCl4−n} and {[(pyS)3CH]RnSnCl4−n} have been obtained and characterized by elemental analyses, FT-IR, ESI-MS, multinuclear (1H and 119Sn) NMR spectral data. The 1H and 119Sn NMR and ESI-MS data suggest for the triorganotin(IV) derivatives a complete dissociation of the compounds in solution. The mono- and di-organotin(IV) derivatives show a greater stability in solution, and their spectroscopic data are in accordance with the existence of six-coordinated RSnCl3N2 or R2SnCl2N2 species.  相似文献   

18.
The reaction between cadmium nitrate dihydrate and benzil bis(4-methyl-3-thiosemicarbazone), LMe2H4, depends on the working conditions. In methanol the reaction gives the novel complex [Cd(LMe2H4)(NO3)2][Cd(LMe2H4)(NO3)(H2O)]NO3 · H2O (1). Its crystal structure shows the presence of two cadmium atoms with different coordination numbers, seven and eight, and the ligands acting as N2S2 neutral molecules. One cadmium has the coordination sphere completed by a bidentate nitrato group and a water molecule, whereas the other one is bonded to two bidentate nitrato groups. Both molecules are joined to one nitrate ion and to an additional water molecule by hydrogen bonds. In the presence of lithium hydroxide, the reaction leads to a binuclear complex with the ligand doubly deprotonated [Cd(LMe2H2)]2 (2). The complexes were characterized by elemental analysis, mass spectrometry, 13C and 113Cd CP/MAS NMR and, in the case of complex 1, by X-ray diffraction.  相似文献   

19.
20.
Herein we present an improved synthesis of 5,5'-diamino-2,2'-bipyridine (1) starting from the pyrrole-protected aminopyridine 4. By standard reactions 1 can easily be transformed into the imine- or amide-bridged dicatechol-bipyridine ligands L1-H4 and L2-H4. Whereas ligand L1 readily forms homodinuclear helicates [(L1)3Ti2]4-, the attempted formation of mono-, tri-, or even oligonuclear coordination compounds from this ligand did not work. However, the amide-connected ligand L2 affords mononuclear ([(L2-H4)PdCl2], [(L2-H4)3Zn]2+), dinuclear ([(L2)3Ti2]4-), and heterotrinuclear coordination compounds ([(L2)3Ti2Zn]2-).  相似文献   

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