Search results for " surface"

showing 10 items of 2838 documents

Influences of Chemical Functionalities on Crystal Structures and Electrochemical Properties of Dihydro-benzoxazine Dimer Derivatives

2021

Dihydro-1,3,2H-benzoxazine dimer derivatives or dihydro-benzoxazine dimers are a class of compounds typically prepared by ring-opening reactions between dihydro-benzoxazines and phenols. Dihydro-benzoxazine dimers act as chelating agents for several transition and rare-earth cations. To better understand the chelating properties, it is necessary to examine their structural features and electrochemical characteristics thoroughly. However, the electrochemical properties of dihydro-benzoxazine dimers have not been tremendously examined. Herein, eight derivatives of dihydro-benzoxazine dimers possessing different substituents on the benzene ring and the tertiary-amine nitrogen were synthesized …

crystal structureCrystallographyHydrogen bondGeneral Chemical EngineeringDimerHirshfeld surfaceIntermolecular forceCrystal structureCondensed Matter PhysicsRedoxInorganic ChemistryCrystalelectrochemical propertychemistry.chemical_compoundCrystallographychemistryQD901-999General Materials SciencebenzoxazineCyclic voltammetryMethyleneCrystals
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Crystal structure of (2E)-3-[4-(dimethylamino)phenyl]-1-(thiophen-2-yl)prop-2-en-1-one

2017

In the title chalcone-thio­phene derivative, the dihedral angle between the aromatic and the thio­phene rings is 11.4 (2)°. In the crystal, mol­ecules are linked by C—H⋯O and C—H⋯S weak inter­actions along [100], forming rings of R22(8) graph-set motif, by C—H⋯O weak inter­actions along [010], forming C(6) chains, and by weak H(meth­yl–group)⋯Cg(thio­phene ring) inter­actions into dimers; the crystal packing resembles a herringbone arrangement when viewed along [100]. A mol­ecular docking calculation of the title compound with the neuraminidase enzyme was carried out.

crystal structureCrystallographyin silico evaluationStereochemistryChemistryThio-General ChemistryCrystal structureDihedral angle010402 general chemistry010403 inorganic & nuclear chemistryCondensed Matter Physicschalcone thiophene derivative01 natural sciencesResearch Communications0104 chemical sciencesCrystallographyQD901-999Hirshfeld surface analysisGeneral Materials Sciencechalcone thio­phene derivativeActa Crystallographica Section E Crystallographic Communications
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Crystal structure and Hirshfeld surface analysis of 3-octyl-4-oxo-2,6-bis(3,4,5-trimethoxyphenyl)piperidinium chloride

2018

The title compound was synthesized by a one-pot Mannich condensation reaction. In the crystal, centrosymmetric dimers are linked into layers parallel to (011) by N—H⋯Cl and C—H⋯Cl hydrogen bonds. A Hirshfeld surface analysis indicates that O—H (20.5%) inter­actions make the largest contribution to the crystal packing.

crystal structureCyclohexane conformationCrystal structure010403 inorganic & nuclear chemistryRing (chemistry)01 natural sciencesMedicinal chemistryChlorideResearch CommunicationsCrystalchemistry.chemical_compoundMannich reactionmedicineHirshfeld surface analysisGeneral Materials ScienceBenzeneMannich reactionCrystallography010405 organic chemistryHydrogen bondChemistryGeneral ChemistryCondensed Matter Physics0104 chemical sciencesQD901-999piperidine-4-onemedicine.drugActa Crystallographica Section E Crystallographic Communications
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Crystal structure and Hirshfeld surface analysis of poly[[bis[μ4-N,N′-(1,3,5-oxadiazinane-3,5-diyl)bis(carbamoylmethanoato)]nickel(II)tetrapotassium]…

2021

The complex nickel(II) anion comprises a pseudomacrocyclic hydrazide-based ligand with an L shape. In the crystal, such anions are connected with the potassium cations and the water solvent mol­ecules, forming a three-dimensional polymeric framework, which is stabilized by an extensive system of hydrogen bonds.

crystal structureCyclohexane conformationshape analysischemistry.chemical_elementCrystal structure010402 general chemistryRing (chemistry)01 natural sciencesResearch Communicationspseudomacrocyclic ligandchemistry.chemical_compoundtemplate reactionSHAPE analysisAmidehirshfeld surface analysisHirshfeld surface analysisGeneral Materials ScienceCrystallography010405 organic chemistryHydrogen bondnickel(ii) complexGeneral ChemistryCondensed Matter Physicsnickel(II) complex3. Good health0104 chemical sciencesTemplate reactionNickelCrystallographychemistryQD901-999Hydratehydrazide-based ligand
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Crystal structure, Hirshfeld surface analysis and HOMO–LUMO analysis of (E)-4-bromo-N′-(4-methoxybenzylidene)benzohydrazide

2018

The title Schiff base compound, C15H13BrN2O2, displays an E configuration with respect to the C=N double bond, which forms a dihedral angle of 58.06 (9)° with the benzene ring. In the crystal, the molecules are linked into chains parallel to the b axis by N—H...O and C—H...O hydrogen bonds, giving rise to rings with an R 2 1(6) graph-set motif. The chains are further linked into a three-dimensional network by C—H...π interactions. A Hirshfeld surface analysis indicates that the most important contributions to the crystal packing are from C...H (33.2%), H...H (27.7%), Br...H/H...Br (14.2%) and O...H/H...O (13.6%) interactions. The title compound has also been characterized by frontier molecu…

crystal structureDouble bondCrystal structureDihedral angle010402 general chemistryRing (chemistry)01 natural sciencesCrystalSchiff basechemistry.chemical_compoundHirshfeld surface analysisGeneral Materials ScienceHOMO/LUMOchemistry.chemical_classificationCrystallographySchiff baseintermolecular interactions010405 organic chemistryHydrogen bondGeneral ChemistryCondensed Matter Physics0104 chemical sciencesCrystallographyHOMO–LUMO calculationchemistryQD901-999Acta Crystallographica Section E Crystallographic Communications
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Crystal structure and Hirshfeld surface analysis of (E)-1-[2,2-dichloro-1-(4-nitrophenyl)ethenyl]-2-(4-fluorophenyl)diazene

2019

The dihedral angle between the 4-fluoro­phenyl ring and the nitro-substituted benzene ring of the title compound is 63.29 (8)°. In the crystal, mol­ecules are linked by C—H⋯O hydrogen bonds into chains parallel to the c axis. The crystal packing is further stabilized by C—Cl⋯π, C—F⋯π and N—O⋯π inter­actions

crystal structureHydrogen bondChemistryStackingGeneral ChemistryCrystal structureDihedral angleCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter PhysicsRing (chemistry)hydrogen bondingResearch Communications4-fluoro­phenyl ringCrystallcsh:ChemistryCrystallographylcsh:QD1-999Nitro4-fluorophenyl ringHirshfeld surface analysisGeneral Materials Sciencenitro-substituted benzene ringActa Crystallographica Section E: Crystallographic Communications
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Crystal structure and Hirshfeld surface analysis of 2-[(1,3-benzoxazol-2-yl)sulfanyl]-N-(2-methoxyphenyl)acetamide

2019

Akkurt, Mehmet/0000-0003-2421-0929; Saylam, Merve/0000-0002-7602-4565

crystal structureHydrogen bondGeneral ChemistryCrystal structureDihedral angleCondensed Matter::Mesoscopic Systems and Quantum Hall Effecthydrogen bonding010402 general chemistry010403 inorganic & nuclear chemistryCondensed Matter PhysicsRing (chemistry)01 natural sciences13-benzoxazole ring system0104 chemical scienceslcsh:ChemistryCrystaldimerschemistry.chemical_compoundCrystallographylcsh:QD1-999chemistryHirshfeld surface analysisGeneral Materials ScienceBenzeneAcetamideActa Crystallographica Section E Crystallographic Communications
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Crystal structure and Hirshfeld surface analysis of a pyridiniminium bromide salt: 1-[2-(adamantan-1-yl)-2-oxoethyl]pyridin-4-iminium bromide

2018

The asymmetric unit of the title pyridiniminium halide salt comprise of one cation and one anion. In the crystal, mol­ecules are linked by N—H⋯Br and C—H⋯O hydrogen bonds, C—H⋯π inter­actions, and π–π inter­actions into layers. The inter­molecular inter­actions in the crystal structure are qu­anti­fied by Hirshfeld surface analysis.

crystal structureKetoneStackingCrystal structureDihedral angle010402 general chemistry01 natural sciencesResearch Communicationschemistry.chemical_compoundBromideMoietyHirshfeld surface analysisGeneral Materials Sciencepyridiniminium saltchemistry.chemical_classificationCrystallography010405 organic chemistryChemistryHydrogen bondIminiumGeneral ChemistryCondensed Matter Physicshydrogen bonding0104 chemical sciencesCrystallographyQD901-999Acta Crystallographica Section E: Crystallographic Communications
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Crystal structure, Hirshfeld surface analysis and HOMO–LUMO analysis of (E)-N′-(3-hydroxy-4-methoxybenzylidene)nicotinohydrazide monohydrate

2019

The title Schiff base compound displays an E configuration with respect to the C=N double bond. The pyridine and benzene rings subtend a dihedral angle of 29.63 (7)°. In the crystal, the mol­ecules are linked by N—H⋯O, C—H⋯O, O—H⋯O and O—H⋯N hydrogen-bonding inter­actions.

crystal structureSchiff baseCrystallographyintermolecular interactionsSupramolecular chemistryGeneral ChemistryCrystal structureDihedral angleCondensed Matter PhysicsResearch CommunicationsCrystalchemistry.chemical_compoundCrystallographySchiff basechemistryQD901-999PyridineHirshfeld surface analysisGeneral Materials ScienceBenzeneinter­molecular inter­actionsHOMO/LUMOActa Crystallographica Section E: Crystallographic Communications
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Chloride ligands on DNA-stabilized silver nanoclusters

2023

DNA-stabilized silver nanoclusters (AgN-DNAs) are known to have one or two DNA oligomer ligands per nanocluster. Here, we present the first evidence that AgN-DNA species can possess additional chloride ligands that lead to increased stability in biologically relevant concentrations of chloride. Mass spectrometry of five chromatographically isolated near-infrared (NIR)-emissive AgN-DNA species with previously reported X-ray crystal structures determines their molecular formulas to be (DNA)2[Ag16Cl2]8+. Chloride ligands can be exchanged for bromides, which red-shift the optical spectra of these emitters. Density functional theory (DFT) calculations of the 6-electron nanocluster show that the …

crystal structureSilverCrystallographynanoclustershopealiganditDNAGeneral ChemistryLigandsBiochemistryCatalysisColloid and Surface ChemistryChloridesChemical SciencesX-Raygeneticsnanohiukkasetanionsröntgenkristallografia
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