Search results for "self-assembly"

showing 10 items of 438 documents

Magnetism in Heterobimetallic and Heterotrimetallic Chains Based on the Use of [W V (bipy)(CN) 6 ] – as a Metalloligand

2018

Inorganic ChemistryCrystallography010405 organic chemistryChemistryMagnetismSelf-assembly010402 general chemistry01 natural sciences0104 chemical sciencesEuropean Journal of Inorganic Chemistry
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Front Cover: Facile Synthesis and Self‐Assembly of Zinc (2‐Diethoxyphosphorylethynyl)porphyrins (Eur. J. Inorg. Chem. 10/2019)

2019

Inorganic ChemistryFront coverChemistryPolymer chemistrychemistry.chemical_elementZincSelf-assemblyEuropean Journal of Inorganic Chemistry
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Chiral Self‐Sorting of trans ‐Chelating Chiral Ligands upon Formation of Pd II Complexes (Eur. J. Inorg. Chem. 15/2014)

2014

Inorganic ChemistrySelf sortingchemistryStereochemistryPolymer chemistrySupramolecular chemistrychemistry.chemical_elementChelationSelf-assemblyPlanar chiralityPalladiumEuropean Journal of Inorganic Chemistry
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Chiral Self-Sorting of trans-Chelating Chiral Ligands upon Formation of PdII Complexes

2014

Invited for the cover of this issue is the group of Arne Lutzen at the University of Bonn, Germany. The cover image shows two dissymmetric bis(3-pyridyl) ligands based on a planar chiral pseudo-ortho-disubstituted [2.2]paracyclophane scaffold. Upon forming a mononuclear [ML2] complex with palladium(II) ions, these ligands act in a trans-chelating manner and undergo complete chiral self-sorting.

Inorganic ChemistrySelf sortingchemistryStereochemistrySupramolecular chemistrychemistry.chemical_elementChelationSelf-assemblyta116PalladiumEuropean Journal of Inorganic Chemistry
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Formation of Triple‐Stranded Dinuclear Helicates with Dicatecholimine Ligands: The Influence of Steric Hindrance at the Spacer

2005

A series of new imine-bridged dicatechol ligands 3a–f-H4 with sterically demanding groups at the spacers are used for the formation of titanium(IV) complexes M4[(3)3Ti2]. All three ligands 3a–c-H4 form triple-stranded dinuclear helicates. When the bulky ligands 3a-H4 or 3c-H4 are used with potassium as the countercation, oligomeric or polymeric side products are also observed. The imine-bridged ligand 3e-H4 quantitatively forms helicates M4[(3e)3Ti2] and not a M4L6 tetrahedron as observed with Raymond’s analogous amide-bridged dicatechol ligand 3i-H4. NMR spectroscopic investigations at variable temperature show that ligand 3f-H4, which possesses a spiro fluorenyl group at the central unit …

Inorganic ChemistrySteric effectsChemistryLigandStereochemistryCentral unitSelf-assemblyEuropean Journal of Inorganic Chemistry
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Surface Chemistry Directs the Tunable Assembly of TiO 2 Anatase Nanocubes into Three‐Dimensional Mesocrystals

2019

Inorganic ChemistrySurface (mathematics)ColloidAnatasechemistrychemistry.chemical_elementNanotechnologySelf-assemblyTitaniumEuropean Journal of Inorganic Chemistry
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Facile Synthesis and Self‐Assembly of Zinc (2‐Diethoxyphosphorylethynyl)porphyrins

2019

Inorganic Chemistrychemistrychemistry.chemical_elementHomogeneous catalysisZincSelf-assemblyCombinatorial chemistryEuropean Journal of Inorganic Chemistry
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Molecular-Programmed Self-Assembly of Homo- and Heterometallic Tetranuclear Coordination Compounds: Synthesis, Crystal Structures, and Magnetic Prope…

2009

New homo- and heterobimetallic tetranuclear complexes of formula [Cu4(mpba)(Me4en)4(H2O)4](ClO4)4·3H2O (1), [Cu4(mpba)(Me4en)4(H2O)4](PF6)4·2H2O (2), [Cu4(ppba)(Me4en)4(H2O)4](ClO4)4·2H2O (3), [Cu4(mpba)(dipn)4](ClO4)4·3H2O (4), [Cu4(ppba)(dipn)4](ClO4)4·2H2O (5), and [Cu2Ni2(ppba)(dipn)4(H2O)2](PF6)4 (6) [mpba = N,N′-1,3-phenylenebis(oxamate), ppba = N,N′-1,4-phenylenebis(oxamate), Me4en = N,N,N′,N′-tetramethylethylenediamine, and dipn = dipropylenetriamine] have been synthesized and structurally and magnetically characterized. Complexes 1−6 have been prepared following a molecular-programmed self-assembly method, where a heteropolytopic tetranucleating phenylenedioxamato bridging ligand (…

Inorganic Chemistrychemistry.chemical_classificationCrystallographyChemistryStereochemistryMetal ions in aqueous solutionCationic polymerizationBridging ligandCrystal structureSelf-assemblyPhysical and Theoretical ChemistryCoordination complexInorganic Chemistry
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Cyclophosphazenes as versatile substrates in polymer chemistry

2004

In this article we present the synthesis of new cyclophosphazenes and their use as chain extenders, polymers compatibilizers, and monomers.

Inorganic Chemistrychemistry.chemical_classificationchemistry.chemical_compoundMonomerchemistryOrganic ChemistryPolymer chemistrySupramolecular chemistryOrganic chemistryPolymerSelf-assemblyBiochemistrySynthesis (chemical) Derivatives NMR spectroscopy
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Interfacial Self-Assembly of Water-Soluble Cationic Porphyrins for the Reduction of Oxygen to Water

2012

Meet at the border: Assembly of the water-soluble cobalt tetrakis(N-methylpyridinium-4-yl)porphyrin [CoTMPyP]4+ at soft interfaces is enhanced and stabilized by its interfacial interaction with the lipophilic anion (C6F5)4B−. The supramolecular structure thus formed (see picture) provides excellent catalytic activity in the four-electron reduction of oxygen.

Inorganic chemistrySupramolecular chemistry2Nd-Harmonic Generationchemistry.chemical_element010402 general chemistryporphyrinsOxygen01 natural sciencesCatalysisMolecular ElectrocatalysisCatalysisinterfacesPolarized Interfacechemistry.chemical_compound[SPI]Engineering Sciences [physics]AggregationPolymer chemistry[CHIM]Chemical Sciencesliquid-liquid interfacesComputingMilieux_MISCELLANEOUS[PHYS]Physics [physics]oxygen reduction reactionDioxygen010405 organic chemistryCationic polymerizationGeneral ChemistryGeneral Medicineself-assemblyPorphyrin3. Good health0104 chemical scienceschemistryTetrathiafulvaleneSelf-assemblyImmiscible Electrolyte-SolutionsCobaltTetrathiafulvalene
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