Search results for "Self-Assembly"

showing 10 items of 438 documents

Self-assembly and anion encapsulation properties of cavitand-based coordination cages.

2001

Two novel classes of cavitand-based coordination cages 7a--j and 8a--d have been synthesized via self-assembly procedures. The main factors controlling cage self-assembly (CSA) have been identified in (i) a P--M--P angle close to 90 degrees between the chelating ligand and the metal precursor, (ii) Pd and Pt as metal centers, (iii) a weakly coordinated counterion, and (iv) preorganization of the tetradentate cavitand ligand. Calorimetric measurements and dynamic (1)H and (19)F NMR experiments indicated that CSA is entropy driven. The temperature range of the equilibrium cage-oligomers is determined by the level of preorganization of the cavitand component. The crystal structure of cage 7d r…

chemistry.chemical_classificationMolecular modelInorganic chemistryCavitandGeneral ChemistryCrystal structureFluorine-19 NMRMETIS-203094BiochemistryCatalysisCrystallographyColloid and Surface ChemistrychemistrySelf-assemblyCounterionSelectivityTrifluoromethanesulfonateJournal of the American Chemical Society
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Growth kinetics of racemic heptahelicene-2-carboxylic acid nanowires on calcite (104).

2016

Molecular self-assembly of racemic heptahelicene-2-carboxylic acid on a dielectric substrate at room temperature can be used to generate wire-like organic nanostructures consisting of single and double molecular rows. By means of non-contact atomic force microscopy, we investigate the growth of the wire-like pattern after deposition by experimental and theoretical means. From analyzing the time dependence of the mean row length, two distinct regimes were found. At the early post-deposition stage, the mean length grows in time. Subsequently, a crossover to a second regime is observed, where the mean row length remains nearly constant. We explain these findings by a mean-field rate equation a…

chemistry.chemical_classificationNanostructureCarboxylic acidNanowireGeneral Physics and Astronomy02 engineering and technologyRate equation021001 nanoscience & nanotechnology01 natural sciences530CrystallographyNanolithographychemistryChemical physics0103 physical sciencesSelf-assemblyPhysical and Theoretical Chemistry010306 general physics0210 nano-technologyRowDeposition (law)The Journal of chemical physics
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Highly Defined, Colloid‐Like Ionic Clusters in Solution

2012

Many societal challenges at the beginning of the 21st century lead to an apparent and growing need for functional materials and novel ways of materials synthesis and assembly. Rising to the challenge, the utilization of small, self-assembling building blocks for the bottom-up construction of new types of polymers and nanostructures has enjoyed increasing popularity among materials researchers in the recent past. Supramolecular materials like foldamers, surface films, nanoparticles, etc. are created by exploiting noncovalent forces [1] leading to an ordered arrangement of nanoscale building blocks. [2] In the search for new polymers based on noncovalent molecular forces, we are motivated by …

chemistry.chemical_classificationNanostructureChemistrySupramolecular chemistryNanoparticleIonic bondingdynamic light scatteringNanotechnologyself-assemblyGeneral ChemistryPolymerCommunicationsmolecular dynamicsnanoscale electrostaticsMonte Carlo simulationsSupramolecular polymersMolecular dynamicsSelf-assemblyChemistryOpen
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Metal nanoparticle/polymer superlattice films: Fabrication and control of layer structure

1997

chemistry.chemical_classificationNanostructureFabricationMaterials scienceMechanical EngineeringSuperlatticeNanoparticleNanotechnologyPolymerMetalchemistryMechanics of Materialsvisual_artvisual_art.visual_art_mediumGeneral Materials ScienceSelf-assemblyLayer (electronics)Advanced Materials
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Self-assembly of small gold colloids with functionalized gold nanorods.

2007

We present a general strategy to stabilize gold nanorod suspensions with mono- and bifunctional polyethylene glycol (PEG) and to attach a controlled number of nanoparticles or biomolecules. Characterization by gel electrophoresis, transmission electron microscopy (TEM), and optical dark-field microscopy show the specific binding of functionalized nanorods to their target while avoiding nonspecific binding to substrates, matrices, and other particles. Such nanorods are well suited for self-assembly of nanostructures and single-molecule labeling.

chemistry.chemical_classificationNanostructureMaterials scienceMechanical EngineeringBiomoleculeNanoparticleBioengineeringNanotechnologyGeneral ChemistryPolyethylene glycolCondensed Matter Physicschemistry.chemical_compoundchemistryTransmission electron microscopyGeneral Materials ScienceNanorodSelf-assemblyBifunctionalNano letters
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Porphyrin-Polymer Networks, Worms, and Nanorods: pH-triggerable Hierarchical Self-assembly

2011

In this study, we present a novel, multifaceted pH-triggerable system of self-organized hierarchical nanostructures. The system consists of meso-tetrakis(4-sulfonatophenyl)porphyrin (TPPS) and poly(2-vinylpyridine) cylindrical brushes (PVP brushes) and can yield polymer-porphyrin networks, porphyrin loaded polymer brushes and pure porphyrin nanorods. In addition, the polymer influences the pK(a) and the mutual TPPS stacking geometry. Structures were characterized by AFM, dynamic light scattering using an IR laser, UV-Vis spectroscopy and small-angle neutron scattering (SANS). Supramolecular composite porphyrin structures that can be switched through external triggers have potential in photo…

chemistry.chemical_classificationNanostructureMaterials sciencePolymers and PlasticsOrganic ChemistryStackingNanoparticleNanotechnologyPolymerPorphyrinchemistry.chemical_compoundchemistryDynamic light scatteringMaterials ChemistryNanorodSelf-assemblyMacromolecular Rapid Communications
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Living Light-Induced Crystallization-Driven Self-Assembly for Rapid Preparation of Semiconducting Nanofibers.

2018

Well-defined nanostructures composed of conjugated polymers have attracted significant attention due to their intriguing electronic and optical properties. However, precise control of the size and uniformity of these semiconducting nanostructures is still rare and challenging, despite recent advances in strategies to obtain self-assembled nanostructures with narrow dispersions. Herein, we demonstrate the preparation of fluorescent conjugated block copolymers by one-shot polymerization and rapid formation of nanofibers in a few minutes via light-induced crystallization-driven self-assembly, driven by facile cis-to- trans photoisomerization of its poly( p-phenylenevinylene) blocks. Furthermor…

chemistry.chemical_classificationNanostructurePhotoisomerizationNanotechnology02 engineering and technologyGeneral ChemistryPolymerConjugated system010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesBiochemistryCatalysis0104 chemical sciencesColloid and Surface ChemistryPolymerizationchemistryNanofiberCopolymerSelf-assembly0210 nano-technologyJournal of the American Chemical Society
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From Bowls to Capsules: Assembly of Hexanuclear Ni II Rings Tailored by Alkali Cations

2020

An anionic hexanuclear NiII metallamacrocycle with endo and exo linking sites has been employed as a building block to generate a series of capsules and bowls of nanometric size. The supramolecular arrangement of the {Ni6 } rings was tailored by the size of the alkali cations, showing the transition from {Ni6 -M2 -Ni6 } capsules (M=LiI and NaI ) to {Ni6 -M} bowls (M=KI and CsI ). The alkyl co-cations are determinant to stabilize the assemblies by means of CH⋅⋅⋅π interactions on the exo side of the metallamacrocycles. The effect on the topology of the supramolecular assemblies of the cation size, cation charge, Et3 NH+ or Me4 N+ counter cations has been analyzed. Magnetic measurements reveal…

chemistry.chemical_classificationNíquelPropietats magnètiques010405 organic chemistryOrganic ChemistrySupramolecular chemistrychemistry.chemical_elementGeneral Chemistry010402 general chemistryBlock (periodic table)Alkali metal01 natural sciencesCatalysisAnàlisi de conglomerats0104 chemical sciencesCrystallographyNickelCluster analysischemistryNickelMagnetic propertiesAntiferromagnetismSelf-assemblyGround stateAlkylChemistry – A European Journal
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Macrocyclic (1,3)- and (1,4)-benzena-(1,4)-piperazinacyclophanes

1995

New large, up to 45-membered macrocycles were synthesised from piperazine and m- and p-2,6-bis(bromomethyl)xylene under high dilution conditions. X-ray structures of compounds 3a, 4a, 5a, and 8b were determined. Surprisingly, none of the macrocycles prepared showed any inclusion properties towards small guest molecules. Instead, the compounds were found to self-organize during the packing process into larger structures due to the complementary of the molecular skeletons. In the crystalline state 3a forms nets, where the macrocycles are bound by HCH…N interactions to each other. 4a exits in a dimeric structure, which, in turn, further extends to a sheet structure. The positively charged phan…

chemistry.chemical_classificationOrganic ChemistryXyleneSalt (chemistry)ProtonationGeneral ChemistryTurn (biochemistry)Piperazinechemistry.chemical_compoundCrystallographychemistrySheet structureMoleculeSelf-assemblyPhysical and Theoretical ChemistryLiebigs Annalen
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Temperature triggered self-assembly of polypeptides into multivalent spherical micelles.

2007

We report herein thermally responsive elastin-like polypeptides (ELPs) in a linear AB diblock architecture with an N-terminal peptide ligand that self-assemble into spherical micelles when heated slightly above body temperature. A series of 10 ELP block copolymers (ELP(BC)'s ) with different molecular weights and hydrophilic-to-hydrophobic block ratios were genetically synthesized by recursive directional ligation. The self-assembly of these polymers from unimers into micelles was investigated by light scattering, fluorescence spectroscopy, and cryo-TEM. These ELP(BC)'s undergo two phase transitions as a function of solution temperature: a unimer-to-spherical micelle transition at an interm…

chemistry.chemical_classificationPhase transitionHot TemperatureLightChemistryCryoelectron MicroscopyTemperatureGeneral ChemistryPolymerBiochemistryKrafft temperatureMicelleCatalysisFluorescence spectroscopyArticleElastinCrystallographyColloid and Surface ChemistrySpectrometry FluorescenceCritical micelle concentrationCopolymerScattering RadiationSelf-assemblyPeptidesMicellesJournal of the American Chemical Society
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