Search results for "Ordination"

showing 10 items of 1367 documents

Defect-Free Chemical Functionalization of Magnetic Monolayers Based on Coordination Polymers

2018

<p>Chemical functionalization has demonstrated to be a powerful approach to tailor the physical and chemical properties of two-dimensional (2D) materials, to increase their processability and</p> <p>stability, to add new functionalities and, even, to create new 2D materials. However, this post synthetic method – which involves the anchoring of molecules on the surface of an exfoliated 2D crystal – inevitably leads to defective materials, which lack long-range structural order. If defect-free functionalized monolayers are required, a radically new approach needs to be developed. Here we present a pre-synthetic method based on coordination chemistry that affords the isolatio…

chemistry.chemical_classificationchemistry.chemical_compoundMembraneMaterials scienceFerrocenechemistryLigandMonolayerMoleculeSurface modificationNanotechnologyPolymerCoordination complex
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Electrochemical production of initiators for polymerization processes

2007

The most important technological interest in initiator production lies, in the electrosynthesis of complex catalytic systems, i. e. coordination compounds and Ziegler-Natta catalysts, although the choice of olefins to be polymerized with these electrosynthesized complexes is still limited to ethylene and to very few other monomers.

chemistry.chemical_classificationchemistry.chemical_compoundMonomerAnionic addition polymerizationchemistryPolymerizationCationic polymerizationReversible addition−fragmentation chain-transfer polymerizationIonic polymerizationElectrosynthesisCombinatorial chemistryCoordination complex
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Coordination Chemistry in the Solid: Study of the Incorporation of CuII into Cyclam-Containing Hybrid Materials

2001

chemistry.chemical_classificationchemistry.chemical_compoundchemistryCyclamPolymer chemistryAnalytical chemistryGeneral ChemistryGeneral MedicineHybrid materialCatalysisCoordination complexAngewandte Chemie
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ChemInform Abstract: Applications and Stereoselective Syntheses of P-Chirogenic Phosphorus Compounds

2016

Phosphorus compounds bearing chirality on the P-center are usually qualified as P-chirogenic or P-stereogenic. This chemical class concerns natural products, agrochemistry, molecular materials, biology and pharmacy, although it is certainly in coordination chemistry and in asymmetric catalysis using chiral transition metal complexes that P-chirogenic phosphorus compounds are the most used. The chiral phosphine ligands and their uses in asymmetric metal-catalyzed reactions have been widely reviewed in literature. However, an overview covering the applications as well as the stereoselective syntheses of all classes of phosphorus compounds has not yet been provided. This review reports the bes…

chemistry.chemical_classificationchemistry.chemical_compoundchemistryPhosphorusEnantioselective synthesischemistry.chemical_elementOrganic chemistryStereoselectivityGeneral MedicineMolecular materialsChirality (chemistry)PhosphineCoordination complexChemInform
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<strong>Synthesis and Platinum (II) Complexes of Different Polyazacyclophane Receptors</strong>

2015

During the last years, research on coordination chemistry of platinum has aroused great interest due to their potential biological applications. Herein, we report the interaction of PtCI42- with different polyazacyclophanes containing a pyridine unit as aromatic spacer. Formation of complexes has been studied by 1H and 195Pt NMR spectroscopy. Analysis of the recorded spectra of D2O solutions containing L and PtCl42- in a 1:1 molar ratio at acidic pH shows the evolution with time of the 1H and 195Pt signals. Different crystal structures have been solved by X-ray diffraction analysis. At acidic pHs, the metal ion is coordinated by the central amino group of the macrocyclic cavity and three ch…

chemistry.chemical_classificationchemistry.chemical_elementCrystal structureNuclear magnetic resonance spectroscopyChlorideCoordination complexMetalCrystallographychemistry.chemical_compoundchemistryBromidevisual_artPyridinemedicinevisual_art.visual_art_mediumPlatinummedicine.drugProceedings of MOL2NET, International Conference on Multidisciplinary Sciences
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Cu(II), Ni(II) and Zn(II) mononuclear building blocks based on new polynucleating azomethine ligand : Synthesis and characterization

2017

Five new mononuclear complexes formed by the polynucleating ligand 2-[1-(3,5-dimethyl)pyrazolyl]-2-hydroxyimino-N′-[1-(2-pyridyl)ethylidene]acetohydrazide (HL): [Ni(L)(HL)]ClO4·2CH3OH (1), [Ni(L)2]·CH3OH (2), [Zn(L)(HL)]ClO4·2CH3OH (3), [Zn(L)2]·CH3OH (4) and [Cu(L)2]·CH3OH (5) were synthesized and characterized by elemental analysis, mass-spectrometry, IR-spectroscopy and X-ray analysis. The complexes reveal distorted octahedral N4O2 coordination arrangement formed by both protonated and deprotonated (1, 3) or two deprotonated ligand molecules (2, 4, 5). The presence of non-coordinated oxime and pyrazole groups resulted in the formation of extensive systems of hydrogen bonds in the crystal…

chemistry.chemical_classificationkemia010405 organic chemistryStereochemistryLigandHydrogen bondligandsProtonationliganditPyrazole010402 general chemistryOximechemistry01 natural sciencesMedicinal chemistry0104 chemical sciencesCoordination complexInorganic Chemistrychemistry.chemical_compoundDeprotonationchemistryMaterials ChemistryMoleculePhysical and Theoretical Chemistryta116
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Spin Switching with Triazolate-Strapped Ferrous Porphyrins

2019

Fe(III) porphyrins bridged with 1,2,3-triazole ligands were synthesized. Upon deprotonation, the triazolate ion coordinates to the Fe(III) ion, forming an overall neutral high-spin Fe(III) porphyrin in which the triazolate serves both as an axial ligand and as the counterion. The second axial coordination site is activated for coordination and binds p-methoxypyridine, forming a six-coordinate low-spin complex. Upon addition of a phenylazopyridine as a photodissociable ligand, the spin state of the complex can be reversibly switched with ultraviolet and visible light. The system provides the basis for the development of switchable catalase- and peroxidase-type catalysts and molecular spin sw…

chemistry.chemical_classificationkemiallinen synteesiSpin states010405 organic chemistryLigandkompleksiyhdisteet010402 general chemistry01 natural sciencesPorphyrin0104 chemical sciencesIonCatalysisInorganic Chemistrychemistry.chemical_compoundCrystallographyDeprotonationchemistrycoordination complexesPhysical and Theoretical ChemistryCounterionta116chemical synthesisVisible spectrumInorganic Chemistry
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The Influence of the Amide Linkage in the FeIII-Binding Properties of Catechol-Modified Rosamine Derivatives

2015

The two new fluorescent ligands RosCat1 and RosCat2 contain catechol receptors connected to rosamine platforms through an amide linkage and were synthesized by using microwave-assisted coupling reactions of carboxyl- or amine-substituted rosamines with the corresponding catechol units and subsequent deprotection. RosCat1 possesses a reverse amide, whereas RosCat2 has the usual oriented amide bond (HNCO vs. CONH, respectively). The ligands were characterized by means of NMR spectroscopy, mass-spectrometry, and DFT calculations and X-ray crystallography studies for RosCat1. The influence of the amide linkage on the photophysical properties of the fluorescent ligands was assessed in different …

chemistry.chemical_classificationligand designCatecholChemistryStereochemistryOrganic ChemistryChemistry (all)Quantum yieldGeneral ChemistryNuclear magnetic resonance spectroscopyamideCatalysisCoupling reactionCoordination complexCrystallographychemistry.chemical_compoundironSettore CHIM/03 - Chimica Generale E InorganicaAmidePeptide bondChelationcoordination modemass spectrometry
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Ruthenium(II) meso-tetra-(benzo-15-crown-5)-porphyrinates: synthesis and spectroscopic investigation

2007

The synthesis of novel ruthenium(II) meso-tetra-(benzo-15-crown-5)-porphyrinates, meso-[( B 15 C 5)4 Por ] Ru ( CO )( MeOH ) (1) and meso-[( B 15 C 5)4 Por ] Ru ( L )2 (2)-(4) (meso-[( B 15 C 5)4 Por ]2-= 5,10,15,20-tetrakis-(benzo-15-crown-5)-porphyrinato-dianion; L = pyridine (py), pyrazine (pyz), 4,4′-bipyridyl (4,4′-bpy)), where CO and MeOH , or two N -donor ligands are axially coordinated to the central metal, are reported. The metalation of the free ligand performed by the reaction of Ru 3( CO )12 with meso-[( B 15 C 5)4 Por ] H 2 in 1,2,4-trichlorobenzene (TCB, bp = 215°C), gives (1) in a high yield. The synthesis of (2)-(4) involves the decarbonylation of (1) with trimethylamine N …

chemistry.chemical_classificationmetalloporphyrinsPyrazineLigandMetalationInorganic chemistryDecarbonylation[ CHIM.COOR ] Chemical Sciences/Coordination chemistrychemistry.chemical_elementGeneral ChemistryMedicinal chemistryRutheniumchemistry.chemical_compoundchemistry15-Crown-5Pyridine[CHIM.COOR]Chemical Sciences/Coordination chemistryrutheniumCrown etherComputingMilieux_MISCELLANEOUS
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Chemical transformations of a crystalline coordination polymer: a multi-stage solid–vapour reaction manifold

2013

In its crystal structure the one-dimensional coordination polymer [Ag4(O2C(CF2)2CF3)4(TMP)3]n (1) (TMP = 2,3,5,6-tetramethylpyrazine) adopts a zig-zag arrangement in which pairs of silver(I) centres bridged by two fluorocarboxylate ligands are linked alternately via one or two neutral TMP ligands. This material can reversibly absorb/desorb small alcohols (ROH) in single-crystal-to-single-crystal transformations, despite the lack of porosity in the crystals, to yield a related material of formula [Ag4(O2C(CF2)2CF3)4(TMP)3(ROH)2]n (1-ROH). The absorption process includes coordination of the alcohol to silver(I) centres and, in the process, insertion of the alcohol into one-quarter of the Ag–O…

chemistry.chemical_compoundCrystallographychemistryLigandCoordination polymerHydrogen bondDesorptionInorganic chemistryMoleculeGeneral ChemistryCrystal structureCarboxylateDissociation (chemistry)Chem. Sci.
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