Search results for "CONDENSED MATTER"

showing 10 items of 13918 documents

Organotin(IV) selenate derivatives – Crystal structure of [{(Ph 3 Sn) 2 SeO 4 } ⋅ CH 3 OH] n

2021

Abstract Crystallization of [(Ph3Sn)2SeO4] ⋅ 1.5H2O in methanol leads to the formation of [{(Ph3Sn)2SeO4} ⋅ CH3OH] n (1) which constitutes a new specimen of organotin(IV) selenate derivatives. In the solid state, complex 1 is arranged in polymeric zig-zag chains, composed of alternating Ph3Sn and SeO4 groups. In addition, pendant Ph3Sn ⋅ CH3OH moieties are branched along chains according to a syndiotactic organization and via Sn-O-Se connections. From a supramolecular point of view, intermolecular hydrogen bonds established between the selenate groups (uncoordinated oxygen) and the hydroxyl functions (CH3OH) of the pendant groups link the chains together.

crystal structure010405 organic chemistryMetals and AlloysGeneral ChemistryCrystal structureorganotin(iv)010402 general chemistryCondensed Matter Physics01 natural sciencesSelenate3. Good health0104 chemical scienceschemistry.chemical_compoundCrystallographyChemistrychemistryMaterials Chemistryinorganic chain[CHIM.CRIS]Chemical Sciences/Cristallography[CHIM]Chemical Sciences[CHIM.COOR]Chemical Sciences/Coordination chemistryseleniumsn-o-se moietyQD1-999
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Crystal structure of 2-[chloro(4-methoxyphenyl)methyl]-2-(4-methoxyphenyl)-5,5-dimethylcyclohexane-1,3-dione

2016

One of the methyl groups and the 4-meth­oxy­phenyl substituent are in axial positions and the chloro­(4-meth­oxy­phen­yl)methyl substituent is in the equatorial position of the cyclo­hexane ring which adopts a chair conformation. The packing features inversion-symmetric dimeric units and strands along [100] and [010] established by weak C—H⋯O and C—H⋯Cl contacts.

crystal structure010405 organic chemistryStereochemistryCyclohexane conformationSubstituentweak C—H⋯O and C—H⋯Cl inter­actionsGeneral ChemistryCrystal structureMeth-010402 general chemistryCondensed Matter PhysicsRing (chemistry)01 natural sciencesResearch Communications0104 chemical sciencesweak C—H...O and C—H...Cl interactionsHexanelcsh:Chemistrychemistry.chemical_compoundchemistrylcsh:QD1-999General Materials ScienceActa Crystallographica Section E: Crystallographic Communications
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Crystal structure of 3-(tri-phenyl-phosphoranyl-idene)-2,5-di-hydro-furan-2,5-dione tetra-hydro-furan monosolvate.

2018

The title pseudo-polymorph of 3-(triphenylphosphoranylidene)-2,5-dihydrofuran-2,5-dione crystallizes with a tetrahydrofuran solvent molecule, viz. C22H17O3P·C4H8O. The succinic anhydride ring is approximately planar (r.m.s. deviation = 0.032 Å). The tetrahydrofuran molecule is disordered over two orientations about a pseudo-twofold axis with refined occupancy ratio 0.718 (4):0.282 (4). In the crystal, C—H...O hydrogen bonds link molecules of the dihydrofuran-2,5-dione derivative into chains parallel to the b axis and arranged into layers stacked along [100] alternating with hydrogen-bonded tetrahydrofuran layers.

crystal structure02 engineering and technologyCrystal structure010403 inorganic & nuclear chemistryRing (chemistry)01 natural sciencesCrystalchemistry.chemical_compoundFuranpseudopolymorphGeneral Materials ScienceCrystallographybiologytetrahydrofuran solvateHydrogen bondSuccinic anhydrideGeneral Chemistry021001 nanoscience & nanotechnologyCondensed Matter Physicsbiology.organism_classification0104 chemical sciencesCrystallographychemistryQD901-999Tetra0210 nano-technologyylidDerivative (chemistry)Acta crystallographica. Section E, Crystallographic communications
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Crystal structure of bis(2-aminoanilinium) hydrogen phosphate

2016

In the title compound, the hydrogen phosphate anions are linked by O—H⋯O hydrogen bonds into chains parallel to [100]. The inorganic anionic chains and the organic cations are linked by N—H⋯O and N—H⋯N hydrogen bonds, forming a two-dimensional supra­molecular network extending parallel to (001).

crystal structure2-aminoaniliniumChemistryHydrogen bondInorganic chemistryGeneral ChemistryCrystal structure010402 general chemistry010403 inorganic & nuclear chemistryCondensed Matter PhysicsHydrogen phosphate2-amino­anilinium01 natural sciencesResearch Communications0104 chemical scienceslcsh:ChemistryCrystalCrystallographylcsh:QD1-999hydrogen bondssupra­molecular networkGeneral Materials Sciencehydrogen phosphatesupramolecular networkActa Crystallographica Section E Crystallographic Communications
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Effect of conjugated system extension on structural features and electron-density distribution in charge–transfer difluoroborates

2021

A comparative structural study of two related donor–acceptor pyridine-based BF2 complexes, namely, 3-(dimethylamino)-1,1-difluoro-1H-pyrido[1,2-c][1,3,5,2]oxadiazaborinin-9-ium-1-uide, C8H10BF2N3O (1), and 3-{(1E,3E)-4-[4-(dimethylamino)phenyl]buta-1,3-dien-1-yl}-1,1-difluoro-1H-pyrido[1,2-c][1,3,5,2]oxadiazaborinin-9-ium-1-uide, C18H18BF2N3O (2), containing a dimethylamino group and either the shortest (in 1) or the longest (in 2) charge-transfer path known until now in this family of compounds, is presented. Single-crystal X-ray diffraction analysis supported by computational investigations shed more light on these systems, indicating, among other aspects, the predominance of C—H...F cont…

crystal structureChemistrycharge transferCharge (physics)Extension (predicate logic)Crystal structureConjugated systemCondensed Matter PhysicsMolecular physicsInorganic ChemistryElectron density distributionTransfer (group theory)borininiumfluoro­boratecom­putational chemistryMaterials ChemistryPhysical and Theoretical ChemistryActa Crystallographica Section C Structural Chemistry
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Orientation of the electric field gradient and ellipticity of the magnetic cycloid in multiferroic BiFeO3

2016

This work was supported by Uniwersytet Pedagogiczny.

crystal structureCondensed Matter - Materials Sciencemagnetic cycloidMaterials scienceCondensed matter physicsMagnetic momentField (physics)Mössbauer spectroscopyMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciences02 engineering and technologyMultiferroic021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesMagnetic field0103 physical sciences:NATURAL SCIENCES:Physics [Research Subject Categories]Multiferroics010306 general physics0210 nano-technologyAxial symmetryHyperfine structureElectric field gradientPrincipal axis theorem
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Ruthenium(II) carbonyl compounds with the 4′-chloro-2,2′:6′,2′′-terpyridine ligand

2017

The RuII atoms in the crystal structures of two new potential catalyst precursors, [Ru(Tpy-Cl)(CO)2Cl][Ru(CO)3Cl3] and [Ru(Tpy-Cl)(CO)2Cl2] (Tpy-Cl = 4′-chloro 2,2′:6′,2′′-terpyridine-κ3 N), exhibit distorted octa­hedral coordination spheres.

crystal structureCoordination spherechemistry.chemical_elementCrystal structurecarbonyl ligand010402 general chemistry01 natural sciencesResearch Communicationslcsh:ChemistryMetalchemistry.chemical_compoundAtomGeneral Materials Sciencerutheniumta116010405 organic chemistryLigandGeneral Chemistryterpyridine ligandCondensed Matter Physics0104 chemical sciences3. Good healthRutheniumCrystallographylcsh:QD1-999chemistryvisual_artvisual_art.visual_art_mediumTerpyridineActa Crystallographica Section E Crystallographic Communications
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Crystal structure and magnetic properties of (tris­{4-[1-(2-meth­oxy­eth­yl)imidazol-2-yl]-3-aza­but-3-enyl}amine)­iron(II) bis­(hexa­fluorido­phosph…

2019

The title compound, [Fe(C27H41N10O3)](PF6)2, is an example of an iron(II) spin-crossover compound. In this compound, C⋯F and CH⋯F/O contacts, present between the cations and anions, extend the structure into a three-dimensional supra­molecular network.

crystal structureCrystal structure010402 general chemistry01 natural sciencesMedicinal chemistryIonResearch Communicationslcsh:Chemistrychemistry.chemical_compoundspin crossoverSpin crossoverImidazoleGeneral Materials Scienceta116010405 organic chemistryChemistryspin transitionGeneral ChemistrykompleksiyhdisteetCondensed Matter PhysicsHEXAkidetiedeMagnetic susceptibility3. Good health0104 chemical sciencesBond lengthlcsh:QD1-999Amine gas treatingActa Crystallographica Section E: Crystallographic Communications
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Crystal structure, Hirshfeld surface analysis and DFT studies of (E)-1-(4-bromophenyl)-3-(3-fluorophenyl)prop-2-en-1-one

2018

The title halogenated organic chalcone was prepared by a Claisen–Schmidt condensation reaction. A Hirshfeld surface analysis was carried out to reveal the percentage contributions of the inter­molecular inter­actions. A theoretical study was performed using the density functional theory (DFT) at B3LYP with the 6–311 G++(d,p) basis set level to compare with the experimental results of the X-ray analysis and UV–vis absorption analysis in term of the geometrical parameters, HOMO-LUMO energy gap and charge distributions.

crystal structureCrystal structure010402 general chemistry010403 inorganic & nuclear chemistryDFT01 natural sciencesResearch Communicationslcsh:ChemistryCrystalHOMO–LUMOmolecular electrostatic potentialNucleophileGeneral Materials ScienceHOMO/LUMOBasis setmol­ecular electrostatic potentialUV–visHydrogen bondChemistryHirshfeld surfaceGeneral ChemistryCondensed Matter Physics0104 chemical sciencesCrystallographylcsh:QD1-999Electrophilehalogen chalconeDensity functional theoryActa Crystallographica Section E Crystallographic Communications
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Crystal structure, Hirshfeld surface analysis and electrostatic potential study of naturally occurring cassane-type diterpenoid Pulcherrimin C monohy…

2019

Single crystal X-ray diffraction analysis and Hirshfeld surface analysis of the title compound were carried out to analyse qu­anti­tatively the inter­molecular inter­actions involved in the crystal packing. The electrostatic potential surface was generated over the Hirshfeld surface to visualize the potential active sites.

crystal structureCrystal structurecassane-type diterpenoids010402 general chemistry010403 inorganic & nuclear chemistryRing (chemistry)01 natural sciencesResearch Communicationslcsh:ChemistryCrystalchemistry.chemical_compoundFuranHirshfeld surface analysisGeneral Materials SciencebiologyHydrogen bondGeneral ChemistryCondensed Matter PhysicsCaesalpinia pulcherrimabiology.organism_classificationTerpenoid0104 chemical sciencesCaesalpinia pulcherrimapulcherrimin CCrystallographyelectrostatic potentiallcsh:QD1-999chemistryActa Crystallographica Section E Crystallographic Communications
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