Search results for "salen ligand"

showing 9 items of 9 documents

Heterobimetallic single-source precursors for MOCVD. Synthesis and characterization of volatile mixed ligand complexes of lanthanides, barium and mag…

1999

Several heterobimetallic complexes of general formula [(M 1 Q) m M 2 (dik) n ], where (M 1 Q) is Cu(salen) or Ni(salen) and M 2 (dik) n is a lanthanide tris(β-diketonate) or an alkali-earth element bis(β-diketonate) with more or less fluorinated diketonato(-) ligands, have been prepared and structurally characterized. Some of them were submitted to thermal and mass spectrometry analyses, and to isothermal vacuum sublimation tests, in view of their potential use as MOCVD single-source precursors for the deposition of heterobimetallic materials. The study stresses upon the influence of the nature of the diketone. of the M 2 cation, and of chemical modification of the salen ligand on the therm…

DiketoneLanthanideMagnesiumInorganic chemistryGeneral Physics and AstronomyChemical modificationchemistry.chemical_elementBariumCrystal structurechemistry.chemical_compoundchemistrySalen ligandPolymer chemistryThermal analysisLe Journal de Physique IV
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Dichlorovanadium (IV) complexes with salen‐type ligands for ethylene polymerization

2008

Vanadium complexes with tetradentate salen‐type ligands were first time explored in ethylene polymerizations. The effects of the vanadium complex structure, the alkyl aluminum cocatalysts type (EtAlCl2, Et2AlCl, Et3Al, and MAO), and the polymerization conditions (Al/V molar ratio, temperature) on polyethylene yield were explored. It was found that EtAlCl2 in conjunction with investigated vanadium complexes produced the most efficient catalytic systems. It was shown, moreover, that the structural changes of the tetradentate salen ligand (type of bridge which bond donor nitrogen atoms and type of substituent on aryl rings) affected activity of the catalytic system. The complexes containing li…

polyethylenesalen ligandZiegler‐Natta polymerizationvanadium complexcatalystJournal of Polymer Science. Part A : Polymer Chemistry
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Phosphasalen group IV metal complexes: synthesis, characterization and ring opening polymerization of lactide.

2020

International audience; We report the synthesis of a series of Zr and Ti complexes bearing phosphasalen which differs from salen by the incorporation of two P atoms in the ligand backbone. The reaction of phosphasalen proligands (1a-1c)H2 with Zr(CH2Ph)4 led to different products depending on the nature of the N,N-linker in the ligand. In case of ethylene-linked phosphasalen, octahedral Zr complex 2a formed as a single stereoisomer in trans geometry. With the phenylene linker, it was shown by dynamic NMR spectroscopy that complex 2b exists as a mixture of trans and cis-β isomers in solution, both enantiomers (Δ and Λ) of the cis-β isomer being in fast equilibrium with respect to the NMR tim…

010402 general chemistryLIGANDS SYNTHESIS01 natural sciencesRing-opening polymerizationCoordination complexInorganic ChemistryINDIUM COMPLEXESOctahedral molecular geometry[CHIM]Chemical SciencesSALALEN COMPLEXESCYCLIC ESTERSCOORDINATION CHEMISTRYZIRCONIUM COMPLEXES; COORDINATION CHEMISTRY; SALALEN COMPLEXES; LIGANDS SYNTHESIS; INDIUM COMPLEXES; SALEN LIGANDS; CYCLIC ESTERS; INITIATORS; CATALYSIS; ALUMINUMchemistry.chemical_classification010405 organic chemistryLigandCATALYSISCationic polymerizationNuclear magnetic resonance spectroscopyALUMINUM0104 chemical sciencesCrystallographychemistrySALEN LIGANDSAlkoxy groupINITIATORS[CHIM.OTHE]Chemical Sciences/OtherIsomerizationZIRCONIUM COMPLEXESDalton transactions (Cambridge, England : 2003)
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Dichlorovanadium (IV) complexes with salen-type ligands for ethylene polymerization

2008

Vanadium complexes with tetradentate salen-type ligands were first time explored in ethylene polymerizations. The effects of the vanadium complex structure, the alkyl aluminum cocatalysts type (EtAlCl2, Et2AlCl, Et3Al, and MAO), and the polymerization conditions (Al/V molar ratio, temperature) on polyethylene yield were explored. It was found that EtAlCl2 in conjunction with investigated vanadium complexes produced the most efficient catalytic systems. It was shown, moreover, that the structural changes of the tetradentate salen ligand (type of bridge which bond donor nitrogen atoms and type of substituent on aryl rings) affected activity of the catalytic system. The complexes containing li…

Schiff basePolymers and PlasticsArylOrganic ChemistrySubstituentVanadiumchemistry.chemical_elementSolution polymerizationchemistry.chemical_compoundchemistryPolymerizationSalen ligandPolymer chemistryMaterials ChemistryMolar mass distributionJournal of Polymer Science Part A: Polymer Chemistry
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Bidentate [N, N] nickel complexes with salen type ligands for polymerization of methyl methacrylate

2008

Otrzymano kompleksy niklu [N,N]NiBr2, które po aktywacji związkiem glinoorganicznym zastosowano w polimeryzacji metakrylanu metylu (MMA). Dwukleszczowe ligandy [N,N] uzyskano zastępując w ligandach salenowych grupy hydroksylowe podstawione do pierścieni fenylowych różnymi grupami alkoksylowymi (OMe lub OCH2C6H5). Metyloalumoksan (MAO) okazał się skutecznym aktywatorem kompleksów niklu w polimeryzacji MMA. Same kompleksy bez aktywatora nie wykazywały żadnej aktywności. Stwierdzono, że aktywność badanych układów katalitycznych rośnie ze wzrostem stosunku molowego Al/Ni. W wyniku polimeryzacji w stosowanych warunkach otrzymano poli(metakrylan metylu) (PMMA) z przewagą triad syndiotaktycznych c…

methylalumoxanemetyloalumoksanmetakrylan metylupolymerizationzmodyfikowany ligand salenowynickel complexmodified salen ligandpolimeryzacjakompleks niklumethyl methacrylatePolimery
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A comparative study on the polymerization of 1-octene promoted by vanadium and titanium complexes supported by phenoxyimine and salen type ligands

2013

Polymerizations of 1-octene were carried out in the presence of vanadium and titanium complexes bearing salen-type or phenoxyimine ligands activated with various co-catalysts. Vanadium complexes turned out active only in conjunction with MAO, whereas the titanium ones were active in combination with Al(i-Bu)3/Ph3CB(C6F5)4. The activity of all catalysts was moderate or low and it was dependent on the ligand type: bis(phenoxyimine) complexes were more active than the salen ones. Both vanadium and titanium catalytic systems produced poly(1-octene)s possessing atactic structures with [mmmm] sequences in the range from 12 to 56 % at room temperature. A temperature decrease to 0.5 °C for the reac…

TitaniumMaterials sciencePolymers and PlasticsLigandOrganic Chemistrychemistry.chemical_elementVanadiumVanadiumChain transferZiegler-Natta polymerizationCatalysischemistry.chemical_compoundchemistryPolymerizationSalen ligandSalen ligandPhenoxyimine ligandPolymer chemistry1-octeneMaterials ChemistryOrganic chemistry1-OcteneTitaniumJournal of Polymer Research
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Ethylenebis(5-chlorosalicylideneiminato)vanadium dichloride immobilized on MgCl2 -based supports as a highly effective precursor for ethylene polymer…

2009

Ethylenebis(5-chlorosalicylideneiminato)vanadium dichloride supported on MgCl2(THF)2 or on the same carrier modified by EtnAlCl3−n, where n = 1–3, was used in ethylene polymerization in the presence of MAO or a common alkylaluminium compounds as a cocatalyst. The support type alter vanadium loading and also change the characteristic of the catalytic active sites. Et2AlCl is the best activator for a catalyst which has been immobilized on a nonmodified support, whereas the systems which contain a carrier which has been modified by an organoaluminium compound reveal the highest activity in conjunction with MAO. That difference, together with different temperature effects on polymerization effi…

Schiff basePolymers and PlasticsMagnesiumOrganic ChemistryVanadiumchemistry.chemical_elementSolution polymerizationPolyethyleneCatalysischemistry.chemical_compoundPolymerizationchemistrySalen ligandPolymer chemistryMaterials ChemistryJournal of Polymer Science Part A: Polymer Chemistry
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A dinuclear rhodium(III) complex with the N,N′-ethylenebis(salicylideneiminato) (salen) ligand in a bridging bis-bidentate mode of coordination. Crys…

1990

In this communication we describe the synthesis and crystal structure of the complex [{Rh(η 2 -(C 6 H 4 )PPh 2 )(η 2 -P(o-ClC 6 H 4 )Ph 2 )} 2 (salen)]-(SbF 6 ) 2 , showing the bridging configuration of the salen ligand

DenticitySchiff baseStereochemistrychemistry.chemical_elementCrystal structureRhodiumInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryMetal salen complexesSalen ligandX-ray crystallographyMaterials ChemistryMoleculePhysical and Theoretical ChemistryInorganica Chimica Acta
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Ethylenebis(5‐chlorosalicylideneiminato)vanadium dichloride immobilized on MgCl2‐based supports as a highly effective precursor for ethylene polymeri…

2009

Ethylenebis(5‐chlorosalicylideneiminato)vanadium dichloride supported on MgCl2(THF)2 or on the same carrier modified by EtnAlCl3−n, where n = 1–3, was used in ethylene polymerization in the presence of MAO or a common alkylaluminium compounds as a cocatalyst. The support type alter vanadium loading and also change the characteristic of the catalytic active sites. Et2AlCl is the best activator for a catalyst which has been immobilized on a nonmodified support, whereas the systems which contain a carrier which has been modified by an organoaluminium compound reveal the highest activity in conjunction with MAO. That difference, together with different temperature effects on polymerization effi…

polyethylenesalen ligandZiegler‐Natta polymerizationsupportvanadium complexJournal of Polymer Science. Part A : Polymer Chemistry
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