Search results for "Crystal engineering"

showing 10 items of 68 documents

Supramolecular chemistry of metalloporphyrins

2009

International audience

010405 organic chemistryChemistrySupramolecular chemistryreviewNanotechnologyGeneral Chemistry010402 general chemistryCrystal engineering01 natural sciencessupramolecular chemistry0104 chemical sciences[ CHIM.OTHE ] Chemical Sciences/Other[CHIM.OTHE]Chemical Sciences/OtherapplicationComputingMilieux_MISCELLANEOUSmetalloporphyrin
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A polar/π model of interactions explains face-to-face stacked quinoid rings: a case study of the crystal of potassium hydrogen chloranilate dihydrate

2015

International audience; The nature of interactions between face-to-face staggered stacked quinoid rings with pi-systems, observed with a short inter-ring centroid. centroid distance, is analyzed by experimental and theoretical methods. Charge density studies based on X-ray diffraction and DFT calculations, complemented by impedance spectroscopy, were employed to define the electronic and structural characteristics of the quinoid rings responsible for their interactions within the crystal packing. The crystal packing is mainly stabilized by strong electrostatic interactions between the K+ cation and the hydrogen chloranilate anion. The proximity and orientation of the stacked quinoid rings i…

010405 organic chemistryHydrogen bondChemistryStackingCharge densityGeneral ChemistryElectronic structure010402 general chemistryCondensed Matter PhysicsElectrostaticsCrystal engineeringpi-interactions ; chloranilic acid ; X-ray charge density ; periodic DFT ; intermolecular interaction01 natural sciences0104 chemical sciencesIon[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistryCrystalCrystallography[CHIM.CRIS]Chemical Sciences/CristallographyGeneral Materials Science
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Solution Conformation and Self‐Assembly of Ferrocenyl(thio)ureas

2016

Conformations and (dis)assembly processes of ureas and thioureas are of fundamental importance in supramolecular chemistry, anion binding, or crystal engineering, both in solution and in the solid state. For sensing and switching processes a redox-active unit, such as the ferrocene/ferrocenium couple, is especially suitable. Here, self-assembly processes of redox-active ferrocenyl(thio)ureas FcNHC(X)NHR [X = O, R = Fc (1), Ph (2), 1-naphthyl (3), Me (4), Et (5); X = S, R = Fc (6), 1-anthracenyl (7)] through hydrogen bonds – both in the solid state and in THF and CH2Cl2 solution – are reported. Special emphasis is placed on the impact of nonclassical intramolecular NH···Fe hydrogen bonds in …

010405 organic chemistryHydrogen bondStereochemistrySupramolecular chemistryThio-010402 general chemistryCrystal engineering01 natural sciencesRedox0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundCrystallographyFerrocenechemistryIntramolecular forceAnion bindingEuropean Journal of Inorganic Chemistry
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Anion-Exchange Properties of Trifluoroacetate and Triflate Salts of N-Alkylammonium Resorcinarenes

2016

The synthesis of N-benzyl- and N-cyclohexylammonium resorcinarene trifluoroacetate (TFA) and triflate (OTf) salt receptors was investigated. Solid-state analysis by single-crystal X-ray diffraction revealed that the N-alkylammonium resorcinarene salts (NARSs) with different upper substituents had different cavity sizes and different affinities for anions. Anion-exchange experiments by mixing equimolar amounts of N-benzylammonium resorcinarene trifluoroacetate and N-cyclohexylammonium resorcinarene triflate, as well as N-benzylammonium resorcinarene triflate and N-cyclohexylammonium resorcinarene trifluoroacetate showed that the NARS with flexible benzyl groups preferred the larger OTf anion…

AnionsModels MolecularsaltsPhenylalanineElectrospray ionizationInorganic chemistrySalt (chemistry)Benzylammonium CompoundsCrystallography X-Ray010402 general chemistryCrystal engineeringchemistry01 natural sciencesBiochemistryIonDioxanesX-rayPolymer chemistryTrifluoroacetic AcidAnion bindingta116N-AlkylammoniumMesylateschemistry.chemical_classificationanion-exchangeIon exchange010405 organic chemistryChemistryOrganic ChemistryGeneral ChemistryResorcinarene3. Good health0104 chemical sciencesCalixarenesTrifluoromethanesulfonateChemistry: An Asian Journal
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New acridinium trifluoromethanesulfonate stacks induced in the presence of organotin(IV) complexes

2013

Abstract Three new crystalline architectures based on acridinium trifluoromethanesulfonate salts [C13H10N]+[CF3SO3]– have been isolated as single crystals from the reaction of the dimeric hydroxo di-n-butylstannane trifluoromethanesulfonato complex [n-Bu2Sn(OH)(H2O)(CF3SO3)]2 (1) with acridine (C13H9N, Acr), in dichloromethane at room temperature. When an equimolar mixture of anthracene (C14H10, Ant) and acridine is initially used, the crystallization of a sandwich-type arrangement occurs, leading to the intercalation of one molecule of anthracene between two acridium trifluoromethanesulfonate salt molecules. In the three X-ray structures reported, the crystal packing involves the contribut…

AnthraceneHydrogen bondStereochemistryGeneral Chemical EngineeringIntercalation (chemistry)General ChemistryCrystal engineeringMedicinal chemistrylaw.inventionchemistry.chemical_compoundchemistrylawAcridineMoleculeCrystallizationTrifluoromethanesulfonateComptes Rendus Chimie
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Organotin(IV) trifluoromethanesulfonates chemistry: Isolation and characterization of a new di-n-butyl derivative presenting a Sn3O3 core

2012

Abstract Reaction of the dimeric hydroxo di-n-butylstannane trifluoromethanesulfonato complex [n-Bu2Sn(OH)(H2O)(CF3SO3)]2 (1) with a mixture of anthracene (C14H10, Ant) and phenazine (C12H8N2, Phz) in dichloromethane at room temperature yielded the novel di-n-butyltin(IV) trifluoromethanesulfonate salt {[n-Bu2Sn(H2O)]2O·n-Bu2Sn(OH)2}(CF3SO3)2 (2), together with the co-crystallization of phenazinium trifluoromethanesulfonate salts ([C12H9N2][CF3SO3], PhzH) collected in the solid state in two distinct self-assembled architectures, 3 and 4, showing π–π stacking interactions, and involving the intercalation of free molecules of phenazine and anthracene, respectively. Complex 2 is a cationic tri…

AnthraceneHydrogen bondStereochemistryPhenazineSupramolecular chemistryCrystal engineeringInorganic Chemistrychemistry.chemical_compoundCrystallographyTrigonal bipyramidal molecular geometrychemistryMaterials ChemistryMoleculePhysical and Theoretical ChemistryTrifluoromethanesulfonateInorganica Chimica Acta
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Self-assembly of 1- and 2-Dimensional Multicompartmental Arrays via the 2-Aminopyrimidine H-Bonding Motif and Selective Guest Inclusion

2000

Abstract The H-bond mediated self-assembly of aminopyrimidine substituted anthracene derivatives 4 and 5, respectively, generate 1- and 2-dimensional multicompartmental arrays in the solid state as revealed by X-ray crystallographic analysis. The derived ‘pigeon-hole’ lattice is defined by syn-coplanar positioning of anthracene moieties at a distance of ca. 7 A, allowing the formation of selective clathrate-type inclusion entities with guests of appropriate shape and size, in particular phenazine, which presents both structural and interactional complementarity. These data provide insight into the interplay of the different structural and interactional features of the molecular components t…

AnthraceneStereochemistryHydrogen bondOrganic ChemistryPhenazineSupramolecular chemistrySolid-stateCrystal engineeringBiochemistrychemistry.chemical_compoundCrystallographychemistryDrug DiscoverySelf-assemblyTetrahedron
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Aurophilicity as a cofactor in crystal engineering. Dicyanoaurate(I) anion as a building block in a novel Co(II)–Au(I) bimetallic assembly

2002

A 2D grid-shaped cyanide-bridged Co(II)–Au(I) bimetallic coordination polymer, [Co(DMF)2{Au(CN)2}2], has been prepared from the [Au(CN)2]2 building block; sheets associate pair-wise by aurophilic interactions and the compound exhibits zeolite-like properties. Lloret Pastor, Francisco, Francisco.Lloret@uv.es

AurophilicityStereochemistryCoordination polymerZeolite-like propertiesUNESCO::QUÍMICACrystal engineering010402 general chemistryCrystal engineering01 natural sciencesAurophilicity:QUÍMICA [UNESCO]CatalysisCofactorIonchemistry.chemical_compoundMaterials ChemistryBimetallic stripAurophilicity ; Crystal engineering ; Bimetallic ; Zeolite-like propertiesBimetallicbiologyUNESCO::QUÍMICA::Química inorgánica010405 organic chemistryChemistryMetals and AlloysGeneral ChemistryBlock (periodic table):QUÍMICA::Química inorgánica [UNESCO]3. Good health0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCrystallographyCeramics and Compositesbiology.protein
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Malonic acid: A multi-modal bridging ligand for new architectures and properties on molecule-based magnets

2003

Abstract In this work, we show how the design of one-, two- and three-dimensional materials can strongly benefit from the use of crystal engineering techniques, which can give rise to structures of different shapes, and how these differences can give rise to different properties. We will focus on the networks constructed by assembling malonate ligands and metal centres. The idea of using malonate (dianion of propanedioic acid, H 2 mal) is that they can give rise to different coordination modes with the metal ions bind. Extended magnetic networks of dimensionalities 1 (1D), 2 (2D) and 3 (3D) can be chemically constructed from malonato-bridged metallic complexes. These coordination polymers b…

ChemistryHydrogen bondInorganic chemistryStackingSupramolecular chemistryBridging ligandGeneral MedicineMalonic acidCrystal engineeringInorganic Chemistrychemistry.chemical_compoundCrystallographyMalonateMaterials ChemistryPhysical and Theoretical ChemistryMolecule-based magnets
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Coordinating and hydrogen bonding ability of a bifunctional 2D paddle-wheel copper(II) coordination polymer

2015

abstract A new copper(II) complex of formula {[Cu 2 (H 2 btc) 2 (dmf) 2 ] 4dmf} n (1)[H 4 btc = 1,2,4,5-benzenetetracarb-oxylic acid, dmf = dimethylformamide] has been synthesised and its structure determined by X-raydiffraction. The structure displays a new square grid of ‘‘paddle-wheel’’ tetracarboxylate-bridgeddicopper(II) units with an intradimer copper–copper separation of 2.619(2) A. The dmf molecules areretained through weak axial coordinative bonds and hydrogen bonding interactions with the carboxylicgroups of the porous neutral network of 4 4 net topology. The magnetic behaviour of 1 corresponds to astrong antiferromagnetic coupling within each dicopper(II) unit (J = 343 cm 1 with …

ChemistryHydrogen bondLigandCoordination polymerInorganic chemistryCrystal engineeringInorganic Chemistrychemistry.chemical_compoundCrystallographyPaddle wheelMaterials ChemistryMoleculeCarboxylatePhysical and Theoretical ChemistryBifunctionalPolyhedron
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