Search results for "Trimer"

showing 10 items of 76 documents

Dimeres und Trimers 1-Methyl-1-aza-5-stannabicyclo[3.3.01,5]-octan sulfid [MeN(CH2CH2CH2)2SnS]n, Röntgenstrukturanalyse des Dimeren und Gleichgewicht…

1991

Abstract The crystal structure of the dimeric title compound has been determined and refined to R = 0.0266. The core of the nearly centrosymmetric dimer is formed by an almost perfect [SnS]2 rectangle (Sn-S 2.39 and 2.51 A). The two sulfur atoms of this rectangle establish the connecting edge of two distorted trigonal bipyramids around the two tin atoms (Sn … N 2.55 A). Solutions of the title compound contain in addition to the dimer (σ(119Sn) = −4.6 ppm) about 20% of the trimer (+ 10.3 ppm). By quick crystallization a mixture of both oligomers can be transferred into the solid state.

Bicyclic moleculeChemistryDimerOrganic ChemistryTrimerCrystal structureBiochemistrylaw.inventionInorganic ChemistryBond lengthCrystallographychemistry.chemical_compoundMolecular geometrylawX-ray crystallographyMaterials ChemistryPhysical and Theoretical ChemistryCrystallizationJournal of Organometallic Chemistry
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Nested allosteric interactions in extracellular hemoglobin of the leech Macrobdella decora

2003

Hemoglobin from the leech Macrobdella decora belongs to the class of giant extracellular hexagonal bilayer globin structures found in annelid and vestimentiferan worms. These complexes consist of 144 heme-bearing subunits, exhibit a characteristic quaternary structure (2 × (6 × (3 × 4))), and contain tetramers as basic substructures that express cooperative oxygen binding and thus provide a structural basis for a hierarchy in allosteric interactions. A thorough analysis of the isolated tetramer indicates that it functions as a trimer of cooperatively interacting subunits and a non-cooperative monomer rather than as four interacting subunits. A thermodynamic analysis of the whole molecule fa…

Binding Sitesgenetic structuresStereochemistryMacromolecular SubstancesProtein ConformationBilayerAllosteric regulationTrimerCell BiologyBiologyBiochemistryGroELOxygenHemoglobinsProtein SubunitsTetramerLeechesAnimalsProtein quaternary structureGlobinProtein Structure QuaternaryMolecular BiologyOxygen binding
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Dry Processing and Recycling of Thick Nacre–Mimetic Nanocomposites

2021

BiomaterialsNanocompositeMaterials scienceVitrimersElectrochemistryComposite materialCondensed Matter PhysicsHot pressingElectronic Optical and Magnetic MaterialsAdvanced Functional Materials
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Massenspektrometrischer Nachweis des cyclischen Trimeren im Polyäthylenterephthalat

1976

Beim direkten Abbau von kommerziellem Polyathylenterephthalat im Massenspektrometer last sich bei Temperaturen unterhalb des einsetzenden thermischen Abbaus des Polymeren das zu etwa 1% enthaltene cyclische trimere Athylenterephthalat ohne vorherige Isolierung nachweisen und durch Vergleich mit den EI- und FD-Massenspektren eines authentischen Trimeren identifizieren. By direct pyrolysis of commercial polyethyleneterephthalate in the mass spectrometer a content of about 1% of the cyclic trimer ethyleneterephthalate is indicated at temperatures below thermal degradation of the polymer. The comparison with EI- and FD-mass spectra of the authentic cyclic trimer allows its identification withou…

ChemistryGeneral Materials ScienceTrimerMedicinal chemistryAngewandte Makromolekulare Chemie
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The acidity of calix[5]arenes and their linear analogues

1999

Abstract Five new calix[5]arenes containing a single p-nitrophenol unit as the most acidic phenolic unit have been synthesised by (3+2) fragment condensation of a trimer with a p-nitrophenol in the middle with various bishydroxymethylated alkanediyl diphenols. Their first acid constant (pKal) has been determined in 2-methoxyethanol/water (9:1) at 22°C by optical titration. The pKal values are distinctly lower (ΔpKa > 2) than for the trimer, while no difference has been found in comparison to structurally analogous calix[4]arenes. Rigidification of the calix[5]arene skeleton by introducing a single alkanediyl bridge opposite to the p-nitrophenol unit has no effect on pKal. All values are in …

ChemistryHydrogen bondStereochemistryIntramolecular forceOrganic ChemistryDrug DiscoveryCondensationCalixareneTrimerTitrationBiochemistryMedicinal chemistryTetrahedron
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Vibrational effects in Na2( , v′)+Na(3p3/2) associative ionization

1999

Abstract Associative ionizing Na2( A 1 Σ + u , v′)+Na(3p3/2) collisions have been studied in a single supersonic beam with respect to the influence of the initial vibrational excitation of the molecules on the reaction efficiency. An enhancement of trimer ion yield of nearly one order of magnitude has been observed as the vibrational excitation increases from v′=0 to v′=14.

ChemistryIonizationGeneral Physics and AstronomyMoleculeSupersonic speedTrimerPhysical and Theoretical ChemistryAtomic physicsOrder of magnitudeBeam (structure)ExcitationIonizing radiationChemical Physics Letters
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Supramolecular 2D/3D isomerism in a compound containing heterometallic Cu(II)2Co(II) nodes and dicyanamide bridges.

2014

Three new heterometallic copper(II)-cobalt(II) complexes [(CuL(2))2Co{dca}2]·H2O(1), [(CuL(1))2Co{dca}2]n (2a), and [(CuL(1))2Co{dca}2]n (2b) [dca(-) = dicyanamide = N(CN)2(-)] have been synthesized by reacting the "metallo-ligand" [CuL(1)] or [CuL(2)] with cobalt(II) perchlorate and sodium dicyanamide in methanol-water medium (where H2L(1) = N,N'-bis(salicylidene)-1,3-propanediamine and H2L(2) = N,N'-bis(α-methylsalicylidene)-1,3-propanediamine). The three complexes have been structurally and magnetically characterized. Complex 1 is a discrete trinuclear species in which two metallo-ligands coordinate to a cobalt(II) ion through the phenoxido oxygen atoms along with two terminally coordina…

ChemistryStereochemistrySupramolecular chemistrychemistry.chemical_elementTrimerCopperInorganic Chemistrychemistry.chemical_compoundPerchlorateCrystallographyOxygen atomPhysical and Theoretical ChemistryCobaltDicyanamideInorganic chemistry
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Assembly and Separation of Semiconductor Quantum Dot Dimers and Trimers

2011

Repeated precipitation of colloidal semiconductor quantum dots (QD) from a good solvent by adding a poor solvent leads to an increasing number of QD oligomers after redispersion in the good solvent. By using density gradient ultracentrifugation we have been able to separate QD monomer, dimer, and trimer fractions from higher oligomers in such solutions. In the corresponding fractions QD dimers and trimers have been enriched up to 90% and 64%, respectively. Besides directly coupled oligomers, QD dimers and trimers were also assembled by linkage with a rigid terrylene diimide dye (TDI) and separated again by ultracentrifugation. High-resolution transmission electron micrographs show that the …

ChemistrySurface PropertiesDimerAnalytical chemistryTrimerGeneral ChemistrySubstrate (electronics)PhotochemistryBiochemistryCatalysisSolventchemistry.chemical_compoundColloidColloid and Surface ChemistryMonomerSemiconductorsDiimideQuantum DotsDensity gradient ultracentrifugationParticle SizeDimerization
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Ab initio modeling of excitonic and charge-transfer states in organic semiconductors: the PTB1/PCBM low band gap system.

2013

A detailed quantum chemical simulation of the excitonic and charge-transfer (CT) states of a bulk heterojunction model containing poly(thieno[3,4-b]thiophene benzodithiophene) (PTB1)/[6,6]-phenyl-C61-butyric acid methyl ester (PCBM) is reported. The largest molecular model contains two stacked PTB1 trimer chains interacting with C60 positioned on top of and lateral to the (PTB1)3 stack. The calculations were performed using the algebraic diagrammatic construction method to second order (ADC(2)). One main result of the calculations is that the CT states are located below the bright inter-chain excitonic state, directly accessible via internal conversion processes. The other important aspects…

Chemistrybusiness.industryBand gapAb initioTrimerCharge (physics)General ChemistryInternal conversion (chemistry)BiochemistryMolecular physicsCatalysisPolymer solar cellOrganic semiconductorDelocalized electronColloid and Surface ChemistryOptoelectronicsbusinessJournal of the American Chemical Society
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Exchange of Pigment-Binding Amino Acids in Light-Harvesting Chlorophyll a/b Protein

1999

Four amino acids in the major light-harvesting chlorophyll (Chl) a/b complex (LHCII) that are thought to coordinate Chl molecules have been exchanged with amino acids that presumably cannot bind Chl. Amino acids H68, Q131, Q197, and H212 are positioned in helixes B, C, A, and D, respectively, and, according to the LHCII crystal structure [Kühlbrandt, W., et al. (1994) Nature 367, 614-621], coordinate the Chl molecules named a(5), b(6), a(3), and b(3). Moreover, a double mutant was analyzed carrying exchanges at positions E65 and H68, presumably affecting Chls a(4) and a(5). All mutant proteins could be reconstituted in vitro with pigments, although the thermal stability of the resulting mut…

ChlorophyllChloroplastsMacromolecular SubstancesStereochemistryMolecular Sequence DataPhotosynthetic Reaction Center Complex ProteinsPigment bindingLight-Harvesting Protein ComplexesTrimerBiochemistrychemistry.chemical_compoundAmino Acid SequenceAmino AcidsPeptide sequencePlant Proteinschemistry.chemical_classificationBinding SitesChlorophyll APeasPhotosystem II Protein Complexfood and beveragesAmino acidChloroplastB vitaminsAmino Acid SubstitutionchemistryChlorophyllThylakoidMutagenesis Site-DirectedCarrier ProteinsBiochemistry
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