Search results for "IDE"

showing 10 items of 55536 documents

Ion-Pair Complexation with Dibenzo[21]Crown-7 and Dibenzo[24]Crown-8 bis-Urea Receptors

2016

Synthesis and ion-pair complexation properties of novel ditopic bis-urea receptors based on dibenzo[21]crown-7 (R(1) ) and dibenzo[24]crown-8 (R(2) ) scaffolds have been studied in the solid state, solution, and gas phase. In a 4:1 CDCl3 /[D6 ]DMSO solution, both receptors clearly show positive heterotropic cooperativity toward halide anions when complexed with Rb(+) or Cs(+) , with the halide affinity increasing in order I(-) <Br(-) <Cl(-) . In solution, the rubidium complexes of both receptors have higher halide affinities compared to the caesium complexes. However, Rb(+) and Cs(+) complexes of R(2) show stronger affinities toward all the studied anions compared to the corresponding catio…

010405 organic chemistryHydrogen bondion-pair receptorscrown ethersOrganic ChemistryInorganic chemistrySupramolecular chemistrychemistry.chemical_elementHalideCooperativityGeneral ChemistryCrystal structure010402 general chemistry01 natural sciencesditopic receptorsCatalysis0104 chemical sciencesRubidiumCrystallographychemistryCaesiumbis-urea receptorsSelectivityta116Chemistry - A European Journal
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The separation of cis- and trans-1,3-cyclohexanediol isomers by copper complexation. Crystal structures of cis-1,3-cyclohexanediol and copper(II) chl…

2002

Abstract A 1:1 complex between copper(II) chloride and cis-1,3-cyclohexanediol has been synthesized and its crystal structure determined. The structure is composed of two different dinuclear [CuCl2(c-13chd)]2 units in which the copper(II) ions are surrounded by the two oxygen atoms of the diol and the two halide ions in a distorted cis-square planar arrangement in both cases. A fifth coordination site is occupied by a halide ion in one dinuclear unit for both copper ions and an O atom belonging to the adjacent CuCl2(c-13chd) moiety in the other dinuclear unit for both copper ions, thus forming a distorted square pyramidal geometry for the metals in all cases. The ability of CuCl2 to prefere…

010405 organic chemistryInorganic chemistryHalidechemistry.chemical_elementCrystal structure010402 general chemistry01 natural sciencesChlorideCopperSquare pyramidal molecular geometry0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryMaterials ChemistrymedicineCopper(II) chlorideMoietyPhysical and Theoretical ChemistryCis–trans isomerismmedicine.drugPolyhedron
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Gas phase heterogeneous partial oxidation reactions

2018

Abstract Mixed metal oxides are used as catalysts in the gas phase partial oxidation of hydrocarbons. This paper will present the principles of catalyst choice for selective oxidation reactions as well as the structural features of metal oxide catalysts. The nature of active sites in selective oxidation reactions will also be briefly discussed. We will pay special attention to several representative reactions: (1) ODH of short chain alkanes (from C1 to C4), (2) propene partial oxidation/ammoxidation on bismuth molybdate based catalysts, (3) n-butane direct oxidation to maleic anhydride on VPO type catalysts, and (4) propane direct oxidation/ammoxidation on mixed MoVTe(Sb)Nb–O catalysts. Fin…

010405 organic chemistryInorganic chemistryOxideMaleic anhydrideMolybdate010402 general chemistry01 natural sciencesRedox0104 chemical sciencesCatalysisPropenechemistry.chemical_compoundchemistryPartial oxidationAmmoxidation
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Synthesis, Crystal Structure and Magnetic Properties of Heteropolynuclear Re IV M II Complexes Based on the Robust [ReCl 5 (pyzCOO)] 2– Unit (pyzCOO …

2016

The syntheses, crystal structures and magnetic properties of four rhenium(IV) compounds of formulae NBu4[ReCl5(pyzCOOH)]·H2O (1), [ReCl5(µ-pyzCOO)M(dmphen)2]·2CH3CN [M = Ni (2) and Co (3)] and {[ReCl5(µ3-pyzCOO)]2Mn2(dmphen)3}n (4) (NBu4 = tetra-n-butylammonium cation, pyzCOOH = 2-pyrazinecarboxylic acid, dmphen = 2,9-dimethyl-1,10-phenanthroline) are reported herein. Compound 1 was obtained by the reaction of NBu4[ReCl5(dmf)] (dmf = dimethylformamide) with pyzCOOH in acetone, whereas the other complexes were obtained by the reaction of 1 with M(ClO4)2·6H2O [M = Ni (2), Co (3), Mn (4)] and dmphen in acetonitrile. Complex 1 is a mononuclear compound, 2 and 3 are neutral heterodinuclear compl…

010405 organic chemistryInorganic chemistrychemistry.chemical_elementCrystal structureRhenium010402 general chemistry01 natural sciences0104 chemical sciencesIonInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryFerromagnetismIntramolecular forceDimethylformamideAcetonitrileSpin cantingEuropean Journal of Inorganic Chemistry
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Synthesis, reactivity and structural studies of selenide bridged carboranyl compounds.

2006

Reaction of the lithium salt Li[1-R-1,2-closo-C(2)B(10)H(10)] with selenium under mild conditions, followed by hydrolysis gave the diselenide compound (1-Se-2-R-1,2-closo-C(2)B(10)H(10))(2) in contrast to the well-reported mercapto compounds 1-SH-2-R-1,2-closo-C(2)B(10)H(10) obtained using a similar synthetic procedure. Details for the preparation and X-ray structural characterisation of the new compounds (2-Me-1,2-closo-C(2)B(10)H(10))(2)Se, (1-Se-2-R-1,2-closo-C(2)B(10)H(10))(2) (R = Me, Ph, ) are specified. To further explore the mechanism of the dimerization reaction, the complex [Au(1-Se-2-Me-1,2-closo-C(2)B(10)H(10))(PPh(3))] was synthesized, confirming the existence of the intermedia…

010405 organic chemistryLigandInorganic chemistrychemistry.chemical_elementNuclear magnetic resonance spectroscopy010402 general chemistry01 natural sciencesMedicinal chemistry0104 chemical sciencesInorganic ChemistryDiselenidechemistry.chemical_compoundChalcogenchemistrySelenideReactivity (chemistry)Cyclic voltammetrySeleniumDalton transactions (Cambridge, England : 2003)
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Synthesis of 1,3-bis(trimethylcyclam) and 1,3-bis(trimethylcyclen) substituted benzenes

2009

Pd-catalyzed amination of 1,3-dibromobenzene with N,N',N''-trimethylcyclam and N,N',N''-trimethylcyclen provided corresponding 1,3-bis(tetraazamacrocyclic) derivatives of benzene in 25-32% yields. The dependence of the products yields on the phosphine ligand applied (BINAP, DavePHOS) as well as on the stoichiometry of starting compounds was established. Scope and limitations for the synthesis of N-phenyl and N-(3-bromophenyl) derivatives of trimethylcyclam and trimethylcyclen were demonstrated.

010405 organic chemistryLigandPd catalysis[CHIM.ORGA]Chemical Sciences/Organic chemistryOrganic Chemistryamination[CHIM.ORGA] Chemical Sciences/Organic chemistry010402 general chemistry01 natural sciences0104 chemical sciencesAnalytical Chemistryaryl halideschemistry.chemical_compoundchemistrytetraazamacrocycles[ CHIM.ORGA ] Chemical Sciences/Organic chemistryOrganic chemistryBenzenePhosphineStoichiometryAminationComputingMilieux_MISCELLANEOUSBINAP
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PdII-mediated integration of isocyanides and azide ions might proceed via formal 1,3-dipolar cycloaddition between RNC ligands and uncomplexed azide

2016

Reaction between equimolar amounts of trans-[PdCl(PPh3)2(CNR)][BF4] (R = t-Bu 1, Xyl 2) and diisopropylammonium azide 3 gives the tetrazolate trans-[PdCl(PPh3)2(N4t-Bu)] (67%, 4) or trans-[PdCl(PPh3)2(N4Xyl)] (72%, 5) complexes. 4 and 5 were characterized by elemental analyses (C, H, N), HRESI+-MS, 1H and 13C{1H} NMR spectroscopies. In addition, the structure of 4 was elucidated by a single-crystal X-ray diffraction. DFT calculations showed that the mechanism for the formal cycloaddition (CA) of N3− to trans-[PdCl(PH3)2(CNMe)]+ is stepwise. The process is both kinetically and thermodynamically favorable and occurs via the formation of an acyclic NNNCN-intermediate. The second step of the fo…

010405 organic chemistryLigandStereochemistryIsocyanidechemistry.chemical_elementGeneral Chemistrypalladium complexes010402 general chemistry01 natural sciencesMedicinal chemistryCatalysisCycloadditionazides0104 chemical sciencesIonchemistry.chemical_compoundisocyanideschemistry13-Dipolar cycloadditionPotential energy surfaceMaterials ChemistryAzideta116PalladiumNew Journal of Chemistry
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A three-coordinate iron–silylene complex stabilized by ligand–ligand dispersion forces

2016

The structural and bonding properties of a three-coordinate N-heterocyclic silyene (NHSi) complex of the iron(II) amide [Fe{N(SiMe3)2}2] are reported. Computational studies reveal that dispersion forces between the amido SiMe3 substituents and the isopropyl substituents on the NHSi ligand significantly enhance the stability of the complex, along with Fe-to-Si π-backbonding.

010405 organic chemistryLigandStereochemistrySilylene010402 general chemistry01 natural sciencesLondon dispersion forcebonding0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundchemistryComputational chemistryAmideheterocyclic silyene complexesta116IsopropylDalton Transactions
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On the magneto-structural role of the coordinating anion in oxamato-bridged copper(ii) derivatives

2019

We herein present the synthesis, spectroscopic analysis, description of the crystal structures and magnetic properties of four new complexes of the formula [{Cu(opba)(H2O)1.2}{Cu(dmphen)(SCN)}2]·dmf (1), [{Cu(opba)}2{Cu(dmphen)Cl}4]·1.5dmf·2.5dmso (2), [{Cu(opba)}2{Cu(dmphen)Br}4]·dmf·2.3dmso (3) and [{Cu(opba)}{Cu(dmphen)(dca)}2]n (4) [H4opba = N,N′-1,2-phenylenebis(oxamic acid), dmphen = 2,9-dimethyl-1,10-phenanthroline and dca = dicyanamide anion]. 1 is a neutral tricopper(II) complex where an inner [Cu(opba)]2− fragment adopts a bis-bidentate coordination mode towards two outer [Cu(dmphen)(NCS)]+ units. 2 and 3 are bis-trinuclear species where two oxamato-bridged [Cu(opba){Cu(dmphen)X}2…

010405 organic chemistryLigandchemistry.chemical_elementCrystal structureAtmospheric temperature range010402 general chemistry01 natural sciencesCopperMagnetic susceptibility0104 chemical sciencesIonInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryAntiferromagnetismDicyanamideDalton Transactions
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Deprotonation of Benzoxazole and Oxazole Using Lithium Magnesates

2005

International audience; The first deprotonations of oxazole and benzoxazole using lithium magnesates are described. The reactions occurred in tetrahydrofuran at room temperature using 1/3 equiv of lithium tributylmagnesate. As 2-lithiooxazole and 2-lithiobenzoxazole, lithium tri(2-oxazolyl)magnesate and lithium tri(2-benzoxazolyl)magnesate very rapidly and completely isomerized to the more stable 2-(isocyano)enolate and 2-(isocyano)phenolate type structures, respectively, a result shown by NMR analysis. The isolation of 2-substituted oxazoles and benzoxazoles in medium to good yields after electrophilic trapping was interpreted in two ways:  (1) the equilibration between the open and closed…

010405 organic chemistryLithium bromide[CHIM.ORGA]Chemical Sciences/Organic chemistryOrganic Chemistrychemistry.chemical_element[CHIM.THER]Chemical Sciences/Medicinal Chemistry[CHIM.MATE]Chemical Sciences/Material chemistry[CHIM.CATA]Chemical Sciences/CatalysisBenzoxazole[CHIM.INOR]Chemical Sciences/Inorganic chemistry010402 general chemistryPhotochemistry01 natural sciencesMedicinal chemistry0104 chemical scienceschemistry.chemical_compoundDeprotonationchemistryIntramolecular forceElectrophile[CHIM]Chemical SciencesLithium[CHIM.RADIO]Chemical Sciences/RadiochemistryTetrahydrofuranOxazole
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