Search results for "terpyridine"

showing 10 items of 128 documents

Co2+ Translocation in a Terpyridine−Cyclam Ditopic Receptor

2001

The coordination behaviour of the ditopic receptor of 1-[p-(2,2′:6′,2′′-terpyrid-4′-yl)tolyl]-1,4,8,11-tetraazacyclotetradecane (L1) towards Co2+ in acetonitrile/water (70:30, v/v) has been investigated. At acidic pH values, the L1−H+−Co2+ system shows an oxidation wave at 150 mV vs. SCE, characteristic of Co2+ in a bis(terpyridine) environment. Upon addition of OH−, a reduction in the intensity of the wave at 150 mV is observed and a new oxidation wave appears at 1.30 V. This new wave is close to that found for [Co(cyclam)]2+ under similar working conditions. The electrochemical data thus suggest that there is a pH-controlled translocation of the Co2+ ion from the bis(terpyridine) to the c…

Inorganic chemistryPotentiometric titrationElectrochemistryChlorideMedicinal chemistryIonInorganic Chemistrychemistry.chemical_compoundchemistryCyclammedicineQualitative inorganic analysisTerpyridineAcetonitrilemedicine.drugEuropean Journal of Inorganic Chemistry
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Bridging rigidity and flexibility : modulation of supramolecular hydrogels by metal complexation

2021

The combination of complementary, noncovalent interactions is a key principle for the design of multistimuli responsive hydrogels. In this work, an amphiphilic peptide, supramacromolecular hydrogelator which combines metal-ligand coordination induced gelation and thermoresponsive toughening is reported. Following a modular approach, the incorporation of the triphenylalanine sequence FFF into a structural (C3EG ) and a terpyridine-functionalized (C3Tpy ) C3 -symmetric monomer enables their statistical copolymerization into self-assembled, 1D nanorods in water, as investigated by circular dichroism (CD) spectroscopy and transmission electron microscopy (TEM). In the presence of a terpyridine …

Ionschemistry.chemical_classificationCircular dichroism540 Chemistry and allied sciencesPolymers and PlasticsOrganic ChemistryHydrogelsPolyethylene glycolPolyethylene Glycolschemistry.chemical_compoundMonomerchemistryChemical engineeringMetals540 ChemieAmphiphileSelf-healing hydrogelsMaterials ChemistryCopolymerNon-covalent interactionsTerpyridinePeptides
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White light emitting silsesquioxane based materials: the importance of a ligand with rigid and directional arms

2022

The synthesis of a novel polyhedral oligomeric silsesquioxane functionalized with eight rigid and directional terpyridine-based arms (Ter-POSS) was successfully achieved via a Sonogashira reaction. The POSS based ligand was extensively characterized using different techniques including 1H, 13C and 29Si NMR as well as UV-Vis and fluorescence spectroscopies. The assembly of these nano-caged units in the presence of different transition metal ions (Fe2+, Zn2+ and Cu2+) as well as of a cation from the lanthanides (Eu3+) was investigated using absorption and emission spectroscopies. The final materials display an evident emission in different regions of the visible spectrum as a function of the …

LanthanidePOSS supramolecular chemistry lanthanidesMaterials scienceNanostructurechemistry.chemical_elementQuantum yieldSettore CHIM/06 - Chimica OrganicaFluorescenceSilsesquioxanechemistry.chemical_compoundCrystallographychemistryChemistry (miscellaneous)General Materials ScienceTerpyridineEuropiumVisible spectrumMaterials Advances
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Structure and Electronic Properties of an Expanded Terpyridine Complex of Nickel(II) [Ni(ddpd)2](BF4)2

2018

Ligand field theory010405 organic chemistrychemistry.chemical_element010402 general chemistry01 natural sciences0104 chemical sciencesInorganic ChemistryNickelchemistry.chemical_compoundCrystallographychemistrySpin-flipTerpyridineElectronic propertiesZeitschrift für anorganische und allgemeine Chemie
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Excited State Tuning of Bis(tridentate) Ruthenium(II) Polypyridine Chromophores by Push-Pull Effects and Bite Angle Optimization: A Comprehensive Exp…

2013

The synergy of push-pull substitution and enlarged ligand bite angles has been used in functionalized heteroleptic bis(tridentate) polypyridine complexes of ruthenium(II) to shift the (1) MLCT absorption and the (3) MLCT emission to lower energy, enhance the emission quantum yield, and to prolong the (3) MLCT excited-state lifetime. In these complexes, that is, [Ru(ddpd)(EtOOC-tpy)][PF6 ]2 , [Ru(ddpd-NH2 )(EtOOC-tpy)][PF6 ]2 , [Ru(ddpd){(MeOOC)3 -tpy}][PF6 ]2 , and [Ru(ddpd-NH2 ){(EtOOC)3 -tpy}][PF6 ]2 the combination of the electron-accepting 2,2';6',2''-terpyridine (tpy) ligand equipped with one or three COOR substituents with the electron-donating N,N'-dimethyl-N,N'-dipyridin-2-ylpyridin…

Ligand field theoryAbsorption spectroscopyChemistryLigandOrganic Chemistrychemistry.chemical_elementQuantum yieldGeneral ChemistryBite anglePhotochemistryCatalysisRutheniumCrystallographychemistry.chemical_compoundExcited stateTerpyridineChemistry - A European Journal
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Coordination of expanded terpyridine ligands to cobalt

2013

Abstract The tridentate expanded terpyridine-like ligand N,N′-dimethyl-N,N′-dipyridin-2-yl-pyridin-2,6-diamine (ddpd) and [Co(H2O)6](BF4)2 give the high-spin complex mer-[Co(ddpd)2](BF4)2 with a tetragonally compressed CoN6 coordination geometry according to X-ray diffraction and SQUID measurements. UV–Vis–NIR spectra indicate a large ligand field splitting close to the high-spin/low-spin crossover point. Oxidation of the CoII complex to CoIII is achieved with silver triflate. The self exchange between high-spin CoII and low-spin CoIII is slow on the NMR time scale.

Ligand field theoryChemistryMagnetismLigandInorganic chemistrychemistry.chemical_elementRedoxInorganic ChemistryCrystallographychemistry.chemical_compoundMaterials ChemistryPhysical and Theoretical ChemistryTerpyridineCobaltTrifluoromethanesulfonateCoordination geometryPolyhedron
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Resonance Raman Studies of Bis(terpyridine)ruthenium(II) Amino Acid Esters and Diesters

2009

Resonance Raman (rR) spectroscopy in combination with DFT calculations was used to elucidate the nature of the 1metal-to-ligand charge-transfer states (1MLCT) of ester derivatives of homo- and heteroleptic bis(terpyridine)ruthenium(II) complexes [RuII(tpy–COOC2H5)(tpy–R)](PF6)2 with R = NH2 (1a), R = COOC2H5 (1b) and R = NHCOCH3 (1c). The rR spectra provide evidence that the 1MLCT states of 1b and 1c are well described by the expected 1[(“t2g”)5{π*(tpy–COOC2H5)}1] electron configuration, while the 1MLCT state of the donor/acceptor-substituted complex 1a also involves the amine-substituted terpyridine ligand. The excited state of 1a can be described by a 1[{dyz/π(tpy–NH2)}1{π*(tpy–COOC2H5)}1…

Ligandchemistry.chemical_elementPhotochemistryResonance (chemistry)RutheniumInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryExcited stateSinglet stateTerpyridineTriplet stateHOMO/LUMOEuropean Journal of Inorganic Chemistry
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Soluble IF-ReS2 nanoparticles by surface functionalization with terpyridine ligands.

2010

A major drawback in the application of layered chalcogenide nanoparticles/tubes is their inertness to chemical and biological modification and functionalization. Their potential use in composite materials might be greatly enhanced by improving the chalcogenide/matrix interface bonding. A novel modification strategy for layered chalcogenide nanoparticles based on the chalcophilic affinity of metals and the chelating terpyridine is reported. The terpyridine anchor group can be conjugated to fluorescent tags or hydrophilic/hydrophobic groups that confer solubility in various solvents to the otherwise insoluble chalcogenide nanoparticles. The functionalized particles are characterized using TEM…

Materials scienceChalcogenideInorganic chemistryNanoparticleInfrared spectroscopySurfaces and InterfacesConjugated systemCondensed Matter Physicschemistry.chemical_compoundchemistryChemical engineeringElectrochemistrySurface modificationGeneral Materials ScienceSolubilityTerpyridineHigh-resolution transmission electron microscopySpectroscopyLangmuir : the ACS journal of surfaces and colloids
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Thermodynamic control over energy dissipation modes in dual-network hydrogels based on metal-ligand coordination.

2020

Modern polymeric hydrogels use reversible bonds to mimic biological functionalities. However, true biological materials benefit from several supramolecular elements and deliver multiple functions at the same time. To approach similar creation and control of multiple different functional elements in a synthetic soft material, we develop a model dual-network hydrogel in which multiple energy dissipating modes are formed by metal–ligand coordination and regulated by their association thermodynamics. This idea is realized by using linear and tetra-arm poly(ethylene glycol) (PEG) precursors with complementary reactive end groups. The former also carries terpyridine ligands on both ends, which fo…

Materials scienceLigandMetal ions in aqueous solutionSupramolecular chemistry02 engineering and technologyGeneral ChemistryDissipation010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences0104 chemical sciencesIonMetalchemistry.chemical_compoundchemistryChemical physicsvisual_artSelf-healing hydrogelsvisual_art.visual_art_mediumTerpyridine0210 nano-technologySoft matter
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Ruthenium-Containing Block Copolymer Assemblies: Red-Light-Responsive Metallopolymers with Tunable Nanostructures for Enhanced Cellular Uptake and An…

2015

The use of self-assembled nanostructures consisting of red-light-responsive Ru(II)-containing block copolymers (BCPs) for anticancer phototherapy is demonstrated. Three Ru-containing BCPs with different molecular weights are synthesized. Each BCP contains a hydrophilic poly(ethylene glycol) block and an Ru-containing block. In the Ru-containing block, more than half of the side chains are coordinated with [Ru(2,2':6',2''-terpyridine)(2,2'-biquinoline)](2+) , resulting in more than 40 wt% Ru complex in the BCPs. The Ru complex acts as both a red-light-cleavable moiety and a photoactivated prodrug. Depending on their molecular weights, the BCPs assemble into micelles, vesicles, and large comp…

Materials scienceLightStereochemistryCell SurvivalPolymersBiomedical EngineeringPharmaceutical Sciencechemistry.chemical_element02 engineering and technology010402 general chemistry01 natural sciencesMicelleRutheniumPolyethylene GlycolsBiomaterialschemistry.chemical_compoundNeoplasmsSide chainCopolymerMoietyHumansProdrugsMicellesPhototherapy021001 nanoscience & nanotechnologyCombinatorial chemistry0104 chemical sciencesRutheniumNanostructuresMolecular WeightchemistrySelf-assemblyTerpyridine0210 nano-technologyEthylene glycolHydrophobic and Hydrophilic InteractionsHeLa CellsAdvanced healthcare materials
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