Search results for "metallogel"

showing 7 items of 7 documents

Stimuli-responsive bile acid-based metallogels forming in aqueous media

2015

Abstract The synthesis and gelation properties of a picolinic acid conjugated bile acid derivative in the presence of metal salts along with the stimuli-responsiveness of the systems are reported. The gels are formed in the presence of Cu 2+ ions in the solvent systems composed of 30–50% of organic solvent (MeOH, acetonitrile, or acetone) in water. The gels respond to various stimuli: they can be formed upon sonication or shaking, and their gel–sol transformation can be triggered by a variety of chemical species. NMR, MS, and SEM techniques are exploited in order to gain a deeper insight on the self-assembled systems.

medicine.drug_classSonicationClinical BiochemistryConjugated systemPicolinic acidBiochemistrystimuli-responsiveBile Acids and Saltschemistry.chemical_compoundpicolinic acidEndocrinologyAcetonemedicineOrganic chemistrybile acidPicolinic AcidsAcetonitrileMolecular Biologyta116PharmacologyMolecular StructureBile acidOrganic Chemistryself-assemblyAmideschemistrySelf-assemblymetallogelGelsCopperDerivative (chemistry)Steroids
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Metallogel formation in aqueous DMSO by perfluoroalkyl decorated terpyridine ligands.

2016

Terpyridine based ligands 1 and 2, decorated with a C8F17 perfluorinated tag, are able to form stable thermoreversible gels in the presence of several d-block metal chloride salts. The gel systems obtained have been characterized by NMR, X-ray diffraction, electron microscopies and Tgel experiments in order to gain insights into the observed different behaviour of the two similar ligands, also in terms of the effect of additional common anionic species. peerReviewed

Metal chlorideAqueous solutiongelation capabilitiesligands02 engineering and technologyligandit010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundchemistrymetallogel formationPolymer chemistryOrganic chemistryTerpyridine0210 nano-technologyDMSOta116Dalton transactions (Cambridge, England : 2003)
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Steroidal supramolecular metallogels

2020

The review deals with an expanding number of steroidal compounds that are capable of forming a metallogel providing a multitude of novel materials rich in their properties. The future of steroidal metallogels holds a myriad of potential applications as new intelligent materials. Detection of potentially harmful compounds without expensive instrumentation, entrapment of environmentally hazardous substances, and sensitive and selective nanomaterials represent only a few of these potential applications. This article reviews the design, synthesis, characterization, and applications of steroidal metallogels. peerReviewed

steroidal metallogelsMaterials sciencesteroidal compoundssupramolekulaarinen kemiaSupramolecular chemistryNanotechnologyGeneral ChemistryInstrumentation (computer programming)metallogelsChemical Society Reviews
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Steroidal derivatives of nitrogen containing compounds as potential gelators

2013

pyridinestigmasterolsupramolecular gelin situsubcomponentcholesterolself-assemblymetallogeliminestimuli-responsiveamino acid
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Bipyridine based metallogels: an unprecedented difference in photochemical and chemical reduction in the in situ nanoparticle formation

2017

Metal co-ordination induced supramolecular gelation of low molecular weight organic ligands is a rapidly expanding area of research due to the potential in creating hierarchically self-assembled multi-stimuli responsive materials. In this context, structurally simple O-methylpyridine derivatives of 4,4′-dihydroxy-2,2′-bipyridine ligands are reported. Upon complexation with Ag(I) ions in aqueous dimethyl sulfoxide (DMSO) solutions the ligands spontaneously form metallosupramolecular gels at concentrations as low as 0.6 w/v%. The metal ions induce the self-assembly of three dimensional (3D) fibrillar networks followed by the spontaneous in situ reduction of the Ag-centers to silver nanopartic…

Metal ions in aqueous solutionta221Supramolecular chemistryNanoparticleContext (language use)02 engineering and technology010402 general chemistryPhotochemistry01 natural sciencesSilver nanoparticleInorganic ChemistryBipyridinechemistry.chemical_compoundmetallogelsta116Aqueous solutionligandsLigandChemistryliganditsupramolecular gelation021001 nanoscience & nanotechnology0104 chemical sciencesChemistrynanoparticlesnanohiukkaset0210 nano-technologyDalton Transactions
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Fully ionic metallogels from dicationic diimidazolium salts

Settore CHIM/06 - Chimica Organicametallogels ionogels diimidazolium salts
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Subcomponent Self-Assembly A Quick Way to New Metallogels

2013

Subcomponent self-assembly, introduced by the Nitschke group,[1] is a process which allow complex structures to be generated from simple building blocks (generally aldehydes and amines). In this bottom-up approach, the building blocks spontaneously self-assemble around templates (usually metal ions) leading to a simultaneous covalent (C=N) and dative (N– metal) bonds formation. The method has been successfully used to construct well-defined metal-organic macrocycles, helicates, catenanes, rotaxanes, grids,[2] and cages.[3] Our field of interest lies not in building-up of defined structures but in designing gelator molecules for a formation of supramolecular gels as functional nanomaterials.…

SUPRAMOLECULAR GELSMetal ions in aqueous solutionta221GELATORSSupramolecular chemistryNanoparticleNanotechnologymetallogeelimultistimuli responsive010402 general chemistrySmart material01 natural sciencesCatalysisMOLECULESMoleculeta116ta218ta214ta114010405 organic chemistryChemistryIN-SITUOrganic ChemistryGeneral Chemistryself-assemblygelsGELATION0104 chemical sciencesin situ gelationMETALnanoparticlesSelf-assemblymetallogelCHEMISTRY: A EUROPEAN JOURNAL
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