Search results for "crystals"

showing 10 items of 350 documents

Assembly and dichroism of a four-component halogen-bonded metal-organic cocrystal salt solvate involving dicyanoaurate(I) acceptors

2017

We describe the use of dicyanoaurate ions as linear ditopic metal–organic acceptors for the halogen bond-driven assembly of a dichroic metal–organic cocrystal based on azobenzene chromophores. Structural analysis by single crystal X-ray diffraction revealed that the material is a four-component solid, consisting of anticipated anionic metal–organic halogen-bonded chains based on dicyanoaurate ions, as well as complex potassium-based cations and discrete molecules of the crown ether 15-crown-5. Importantly, the structural analysis revealed the parallel alignment of the halogen-bonded chains required for dichroic behaviour, confirming that crystal engineering principles developed for the desi…

chemistry.chemical_classification010405 organic chemistryContext (language use)Dichroismorganometalliyhdisteet010402 general chemistryDichroic glassCrystal engineeringkiteet01 natural sciencesCocrystal0104 chemical scienceschemistry.chemical_compoundCrystallographyAzobenzenechemistryorganometallic compoundscrystalsMoleculePhysical and Theoretical Chemistryta116Crown etherFaraday Discussions
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Viologen-based ionic liquid crystals: induction of a smectic A phase by dimerisation.

2014

The stability of thermotropic ionic liquid crystals is essentially due to micro-phase segregation between the ionic heads and the long alkyl chains. Here we show, using newly synthesized viologen dimers, that the structure of the central core is another key parameter to play with in order to tune the mesomorphic behaviour. © 2014 the Owner Societies.

chemistry.chemical_classificationChemistryLiquid crystalsGeneral Physics and AstronomyIonic bondingViologenThermotropic crystalionic liquidsIonic liquid crystals viologen dimer smectic A phaseCrystallographychemistry.chemical_compoundphase transitionPhase (matter)Ionic liquidmedicineOrganic chemistryLiquid crystals; phase transition; ionic liquidsPhysical and Theoretical ChemistryAlkylSettore CHIM/02 - Chimica Fisicamedicine.drugPhysical chemistry chemical physics : PCCP
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Halogen-bonded photoresponsive materials

2015

The aim of the present review is to illustrate to the reader the state of the art on the construction of supramolecular azobenzene-containing materials formed by halogen bonding. These materials include several examples of polymeric, liquid crystalline or crystalline species whose performances are either superior to the corresponding performances of their hydrogen-bonded analogues or simply distinctive of the halogen-bonded species. submittedVersion Peer reviewed

chemistry.chemical_classificationHalogen bondAzobenzene; Halogen bonding; Liquid crystals; Photoresponsive materials; PolymersAzobenzeneLiquid crystallinePolymersLiquid crystals116 Chemical sciencesSupramolecular chemistryPolymerchemistry.chemical_compoundchemistryAzobenzeneLiquid crystalPhotoresponsive materialLiquid crystalPolymer chemistryHalogenSettore CHIM/07 - Fondamenti Chimici Delle TecnologieHalogen bondingta116Photoresponsive materials
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Photoresponsive ionic liquid crystals assembled: Via halogen bond: En route towards light-controllable ion transporters

2017

We demonstrate that halogen bonding (XB) can offer a novel approach for the construction of photoresponsive ionic liquid crystals. In particular, we assembled two new supramolecular complexes based on 1-ethyl-3-methylimidazolium iodides and azobenzene derivatives containing an iodotetrafluoro-benzene ring as XB donor, where the iodide anion acted as an XB acceptor. DSC and X-ray diffraction analyses revealed that the preferred stoichiometry between the XB donors and acceptors is 2 : 1, and that the iodide anions act as bidentate XB-acceptors, binding two azobenzene derivatives. Due to the high directionality of the XB, calamitic superanions are obtained, while the segregation occurring betw…

chemistry.chemical_classificationHalogen bondta114ChemistryInorganic chemistryIodideSupramolecular chemistryIonic bonding02 engineering and technologySupramolecular Chemistry Liquid Crystals Halogen Bonding Photoresponsive010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesAcceptor0104 chemical sciencesCrystallographychemistry.chemical_compoundAzobenzeneIonic liquidMoleculeSettore CHIM/07 - Fondamenti Chimici Delle TecnologiePhysical and Theoretical Chemistry0210 nano-technology
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Semiconductor Nanocrystals with Multifunctional Polymer Ligands

2002

In this letter, we describe the preparation of a versatile polymer ligand, which can be attached to CdSe/ZnS semiconductor nanocrystals via a phase transfer reaction. The ligand is based on a chain of reactive esters, which can, in principle, be substituted by any compound containing amino-functionalities. The polymer/nanocrystal complexes are characterized in terms of structure and photostability.

chemistry.chemical_classificationLigandfungiInorganic chemistryfood and beveragesQuantum yieldGeneral ChemistryPolymerBiochemistryCombinatorial chemistryCatalysisFluorescence spectroscopyColloid and Surface ChemistryNanocrystalchemistryPhase (matter)Surface modificationSemiconductor nanocrystalsJournal of the American Chemical Society
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X-ray topographic study of solid-state polymerized poly-[1,2-bis-(p tolylsulphonyloxymethylene)-1-butene-3-inylene]

1976

Local extinction contrast effects have been observed in macroscopic polymer crystals, using Berg-Barrett X-ray topography. Results from as-polymerized crystals indicate that the crystals are perfect enough for defect regions to be imaged. As-polymerized crystals exhibited apparent defects lying along [021]. [010] slip traces in the (100) surface of a crystal were imaged; the slip system here appears to be consistent with (h01) [¯10h], forh, l ≠ 0 and [010] the chain direction.

chemistry.chemical_classificationMaterials scienceMechanical EngineeringX-raySolid-state1-ButenePolymerSlip (materials science)Crystalchemistry.chemical_compoundCrystallographychemistryPolymerizationMechanics of MaterialsGeneral Materials SciencePolymer crystalsJournal of Materials Science
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Functional Opals from Reactive Polymers: Complex Structures, Sensors, and Modified Photoluminescence

2007

This paper describes the synthesis and properties of functional opal structures, so-called colloidal photonic crystals (CPCs), from a variety of reactive polymers. Photoprocessable opals are presented as well as opals with incorporated smart defect layers that can be actively addressed by external stimuli. In addition, opals with functional bio-macromolecular defects have been developed. They present a new class of materials for optical biomonitoring through shifts of the induced photonic defect mode. Strong modification of photoluminescence according to the photonic bandstructure is observed from opals with embedded exclusively luminescent defect layer.

chemistry.chemical_classificationMaterials sciencePhotoluminescencePolymers and Plasticsbusiness.industryOrganic ChemistryNanotechnologyPolymerColloidal crystalCondensed Matter PhysicsColloidal photonic crystalsOPALS (Ogren Plant Allergy Scale)chemistryMaterials ChemistryPhotonicsbusinessLuminescencePhotonic crystalMacromolecular Symposia
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Morphology control in biphasic hybrid systems of semiconducting materials.

2015

Simple blends of inorganic nanocrystals and organic (semiconducting) polymers usually lead to macroscopic segregation. Thus, such blends typically exhibit inferior properties than expected. To overcome the problem of segregation, polymer coated nanocrystals (nanocomposites) have been developed. Such nanocomposites are highly miscible within the polymer matrix. In this Review, a summary of synthetic approaches to achieve stable nanocomposites in a semiconducting polymer matrix is presented. Furthermore, a theoretical background as well as an overview concerning morphology control of inorganic NCs in polymer matrices are provided. In addition, the morphologic behavior of highly anisotropic na…

chemistry.chemical_classificationNanocompositeMorphology (linguistics)Materials sciencePolymers and PlasticsPhosphinesPhosphorous AcidsPolymersOrganic ChemistryNanoparticleNanotechnologyPolymerlaw.inventionLiquid CrystalsMatrix (mathematics)chemistryNanocrystalSemiconductorslawHybrid systemMaterials ChemistrySolar EnergyNanoparticlesColloidsLight-emitting diodeMacromolecular rapid communications
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Role of Weak Hydrogen Bonds and Halogen Bonds in 5-Halo-1,3-dimethyluracils and Their Cocrystals—A Combined Experimental and Computational Study

2016

Seven single crystals containing either N,N-dimethyluracil (DMHU) or one of its 5-halogenated derivatives (DMXU; X = F, Cl, Br, I) were prepared using N,N-dimethylformamide as the crystallization solvent. Single crystal X-ray diffraction and quantum chemical calculations carried out at the spin component scaled local MP2 level of theory were then used to study the intramolecular halogen and nonconventional hydrogen bonds present in the structures. The results were compared to and contrasted with the previously reported data for uracil and its halogenated derivatives. In particular, the intermolecular interactions in DMIU were compared to the halogen and hydrogen bonds in 5-iodouracil that, …

computational studieshalogen bondsInorganic chemistryhydrogen bonds; computational analysis; computational studieschemistry010402 general chemistry01 natural sciencesGeneral Materials Sciencecocrystalsta116Degree of unsaturationvetysidoksetHalogen bondyhteiskiteet010405 organic chemistryHydrogen bondChemistryIntermolecular forceGeneral ChemistryCondensed Matter Physics0104 chemical sciencesSolventCrystallographycomputational analysisIntramolecular forcehydrogen bondsHalogenhalogeenisidoksetSingle crystalCrystal Growth & Design
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Crystal structure of 5-(4-tert-butoxyphenyl)-3-(4-n-octyloxyphenyl)-4,5-dihydroisoxazole

2019

The molecule of the title compound, C27H37NO3, was prepared by [3 + 2] 1,3-dipolar cycloaddition of 4-n-octylphenylnitrile oxide and 4-tert-butoxystyrene, the latter compound being a very useful intermediate to the synthesis of liquid-crystalline materials. In the molecule, the benzene rings of the n-octyloxyphenyl and tert-butoxyphenyl groups form dihedral angles of 2.83 (7) and 85.49 (3)°, respectively, with the mean plane of the isoxazoline ring. In the crystal, molecules are linked by weak C—H...O hydrogen interactions into chains running parallel to the b axis.

crystal structureCrystallographyOxideGeneral ChemistryCrystal structureisoxazolinesDihedral angleCondensed Matter PhysicsRing (chemistry)Medicinal chemistrysingle crystalsCrystalchemistry.chemical_compoundliquid crystalschemistryLiquid crystalQD901-999General Materials ScienceIsoxazoleBenzene[3 + 2] cycloadditionActa Crystallographica Section E: Crystallographic Communications
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