Search results for "complexes"

showing 10 items of 875 documents

A Cation-Captured Palladium(0) Anion: Synthesis, Structure, and Bonding of [PdBr(PPh3)2]− Ligated by an N-Heterocyclic Phosphenium Cation

2009

Unsaturated N-heterocyclic phosphenium cations (uNHP) stabilize the [Pd0(PR3)2X]− anion proposed over the past decade to be the crucial but elusive intermediate in palladium-catalyzed cross-coupling reactions (X = halide). Insertion of metal into the P−Br bond of the precursor mesityl-substituted bromophosphine gives the structurally characterized Pd(0)-phosphenium complex (uNHPMes)Pd(PPh3)2Br, which features a long Pd−Br bond (2.7240(9) Å) and the shortest known Pd−P bond (2.1166(17) Å). The reaction is proposed to proceed by an associative pathway involving a Pd-bromophosphine complex that undergoes P-to-Pd bromide transfer. peerReviewed

palladium-phosphine complexespalladium-fosfiini -kompleksit
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Structural and electronic elucidation of a N-heterocyclic silylene vanadocene adduct

2017

The solid and solution state structure of the vanadium(II) N‐ heterocyclic silylene (NHSi) complex, [(SiIPr)V(Cp)2] (1) is reported ( SiIPr: 1,3‐bis(2,6‐diisopropylphenyl)‐1,3‐diaza‐2‐silacyclopent‐4‐ en‐2‐ylidene). The electronic structure of 1 is probed using combination of magnetic measurements, EPR spectroscopy and computational studies. The V–Si bond strength and complex forming mechanism between vanadocene and NHSi ligand is elucidated using computational methods.   peerReviewed

piiVanadiumchemistry.chemical_elementElectronic structure010402 general chemistryPhotochemistry01 natural sciencesvanadiiniAdductlaw.inventionInorganic Chemistrychemistry.chemical_compoundlawcoordination complexesElectron paramagnetic resonanceta116010405 organic chemistryChemistryLigandBond strengthSilylenesiliconkompleksiyhdisteetVanadocene0104 chemical sciencesCrystallographyvanadiumDalton Transactions
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Host-guest interactions between DMpillar[5]arene and fluorescent imidazolium salts

pillar[n]arenes imidazolium salts host-guest complexesSettore CHIM/06 - Chimica Organica
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Non-conventional synthesis and photophysical studies of platinum(ii) complexes with methylene bridged 2,2′-dipyridylamine derivatives

2019

Methylene bridged 2,2′-dipyridylamine (dpa) derivatives and their metal complexes possess outstanding properties due to their inherent structural flexibility. Synthesis of such complexes typically involves derivatization of dpa followed by coordination on metals, and may not always be very efficient. In this work, an alternative synthetic approach, involving the derivatization step after – rather than prior to – coordination of dpa on metal center, is proposed and applied to synthesis of a number of platinum(II) complexes with substituted benzyldi(2-pyridyl)amines. Comparison with the more conventional synthetic route reveals greater efficiency and versatility of the proposed approach. The …

platinachemistry.chemical_element010402 general chemistry01 natural sciencesInorganic ChemistryMetalchemistry.chemical_compoundGlassy matrixPolymer chemistrycoordination complexesplatinumMethyleneDerivatizationta116kemiallinen synteesiphotochemistry010405 organic chemistrykompleksiyhdisteet0104 chemical scienceschemistryvisual_artvisual_art.visual_art_mediumvalokemiaPhosphorescenceLuminescencePlatinumchemical synthesisDalton Transactions
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Homoleptic Pnictogen-Chalcogen Coordination Complexes

2012

The synthesis and structural characterization of dicationic selenium and tellurium analogues of the carbodiphosphorane and triphosphenium families of compounds are reported. These complexes, [Ch(dppe)][OTf]2 [Ch = Se, Te; dppe = 1,2-bis(diphenylphosphino)ethane; OTf = trifluoromethanesulfonate], are formed using [Ch]2+ reagents via a ligand-exchange protocol and represent extremely rare examples of homoleptic pnictogen → chalcogen coordination complexes. The corresponding arsenic compounds were also prepared, [Ch(dpAse)][OTf]2 [Ch = Se, Te; dpAse = 1,2-bis(diphenylarsino)ethane], exhibiting the first instance of an arsenic → chalcogen dative bond. The electronic structures of these unique c…

pnictogen-chalcogen complexespniktogeeni-kalkogeeni -kompleksit
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Ethylene polymerization with FI complexes having novel phenoxy‐imine ligands: Effect of metal type and complex immobilization

2011

A series of bis(phenoxy‐imine) vanadium and zirconium complexes with different types of R3 substituents at the nitrogen atom, where R3 = phenyl, naphthyl, or anthryl, was synthesized and investigated in ethylene polymerization. Moreover, the catalytic performance was verified for three supported catalysts, which had been obtained by immobilization of bis[N‐(salicylidene)‐1‐naphthylaminato]M(IV) dichloride complexes (M = V, Zr, or Ti) on the magnesium carrier MgCl2(THF)2/Et2AlCl. Catalytic performance of both supported and homogeneous catalysts was verified in conjunction with methylaluminoxane (MAO) or with alkylaluminium compounds (EtnAlCl3−n, n = 1–3). The activity of FI vanadium and zirc…

polyethylenecopolymerizationsupportsZiegler–Natta polymerizationcatalystsphenoxy‐imine complexesJournal of Polymer Science. Part A : Polymer Chemistry
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Complex species formation of Cu and Cd metal ions with polyacrylate, polymethacrylate and alginate ligands. Potentiometric investigation by ISE-H+ an…

2008

potentiometrySettore CHIM/01 - Chimica Analiticametal complexespolyelectrolyte
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Diversity of Isomerization Patterns and Protolytic Forms in Aminocarbene PdII and PtII Complexes Formed upon Addition of N,N′-Diphenylguanidine to Me…

2017

Reaction of the palladium(II) and platinum(II) isocyanide complexes cis-[MCl2(CNR)2] [M = Pd, R = C6H3(2,6-Me2) (Xyl), 2-Cl-6-MeC6H3, cyclohexyl (Cy), t-Bu, C(Me)2CH2(Me)3 (1,1,3,3-tetramethylbuth-1-yl abbreviated as tmbu); M = Pt, R = Xyl, 2-Cl-6-MeC6H3, Cy, t-Bu, and tmbu] with N,N′-diphenylguanidine (DPG) leads to DPG-derived metal-bound deprotonated acyclic diaminocarbene (ADC) species. This reaction occurs via a two-step process, involving the initial coupling of the guanidine with one of the isocyanides and leading to deprotonated monocarbene monochelated species, while the next addition grants the deprotonated bis-carbene bis-chelated metal compounds. DPG behaves as nucleophile, depr…

protolytic forms010405 organic chemistryStereochemistryIsocyanideOrganic ChemistrySubstituentchemistry.chemical_elementRegioselectivityaminocarbene complexes010402 general chemistry01 natural sciencesMedicinal chemistry0104 chemical sciencesdiversityInorganic Chemistrychemistry.chemical_compoundDeprotonationchemistryNucleophileisomerization patternsPhysical and Theoretical ChemistryGuanidineIsomerizationta116PalladiumOrganometallics
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Méthodologie de modélisation et de caractérisation des réseaux spatiaux. Application au réseau viaire de Paris

2016

International audience; Les graphes spatialisés soulèvent différentes questions qui intéressent plusieurs disciplines, depuis la biologie (veinures de feuilles, réseaux neuronaux) ou la géomorphologie (réseaux fluviaux) jusqu’aux études urbaines (réseaux de transports), sans oublier celle des réseaux d’énergie (réseaux électriques, de gaz ou de pétrole) et de télécommunication. Nous nous concentrerons ici sur les exemples apportés par les réseaux viaires. C’est à travers ceux-ci que nous définirons dans cet article d’abord un objet d’étude multi-échelle, la voie, puis cinq indicateurs liés qui permettront une lecture enrichie de la spatialité urbaine. Nous expliciterons ainsi les particular…

réseau viaire[SHS.GEO] Humanities and Social Sciences/Geography05 social sciencesGeography Planning and Development0211 other engineering and technologies0507 social and economic geography021107 urban & regional planning02 engineering and technology[SHS.GEO]Humanities and Social Sciences/Geographysystèmes complexesmorphologie urbaine[ SHS.GEO ] Humanities and Social Sciences/Geographythéorie des graphes050703 geographyanalyse spatiale
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Metal salen complexes as ethylene polymerization catalysts - effect of catalytic system composition on its activity and properties of polymerization …

2008

Zsyntetyzowano i zastosowano [po aktywacji metyloaluminoksanem (MAO) lub Et2AlCl] w charakterze katalizatorów niskociśnieniowej polimeryzacji etylenu serię salenowych kompleksów metali przejściowych różniących się rodzajem atomu centralnego (M=Ti, Zr lub V) i budową chemiczną ligandu (schemat A). Stwierdzono, że salenowe kompleksy cyrkonu są aktywne w polimeryzacji jedynie wówczas, gdy aktywator stanowi MAO, natomiast kompleksy tytanu i wanadu są aktywniejsze w przypadku gdy kokatalizatorem jest typowy związek glinoorganiczny - dietylochloroglin. Aktywność kompleksów w układzie z Et2AlCl zmienia się w szeregu V>Ti>>Zr?0, podczas gdy w odniesieniu do kompleksów aktywowanych MAO maleje ona w …

salenowe kompleksy metalipolyethyleneaktywnośćoligomerypolymerizationactivitysalen complexes of metalspost-metallocene catalystspolietylenoligomerskatalizatory postmetalocenowepolimeryzacjaPolimery
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