Search results for "Decomposition"

showing 10 items of 766 documents

4-Fluoroanilines: synthesis and decomposition

2001

Abstract Fourteen N- and/or 2-substituted 4-fluoroanilines were prepared (the series includes N–C2-bridged compounds). Some of them were found to be thermally unstable when dissolved in chloroform. Both 19 F NMR spectra and comparison of GIAO-DFT calculated and experimental 13 C chemical shifts were used to suggest decomposition products of 4-fluoroanilines.

Inorganic ChemistryNMR spectra databasechemistry.chemical_compoundChloroformchemistryChemical shiftOrganic ChemistryEnvironmental ChemistryPhysical chemistryPhysical and Theoretical ChemistryBiochemistryDecompositionJournal of Fluorine Chemistry
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Kinetik und Radikalausbeute beim Zerfall tertiärer Hyponitrite

1971

Der thermische Zerfall von Dicumylhyponitrit (1a) ist eine Reaktion erster Ordnung mit einer Aktivierungsenthalpie von 27.3 keal/Mol und einer Aktivierungsentropie von 8.5 cal/Mol·Grad in Isooctan. Die Radikalausbeute fur 1a betragt 84%, fur Di-tert.-butylhyponitrit 92%. Die Zerfallskonstanten substituierter Dicumylhyponitrite gehorchen bei Verwendung der σ+-Werte der Hammett-Beziehung mit σ=+ +0.34. Kinetic and Radical Efficiency for the Decomposition of Tertiary Hyponitrites The thermal decomposition of dicumylhyponitrite (1a) is a first order reaction with an activation enthalpy of 27.3 kcal/mole and an activation entropy of 8.5 e. u. in isooctane. The efficiency of radical formation is …

Inorganic ChemistryReaction rate constantHammett equationChemistryThermal decompositionFirst-order reactionEnthalpyPhysical chemistryActivation entropyKinetic energyDecompositionChemische Berichte
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Darstellung und Zerfall von tertiären Hyponitriten

1971

Dicumylhyponitrit (1a), substituierte Dicumylhyponitrite (1b1f) (p-Br, p-Cl, p-CH3, m-CH3, p-CH3O), Bis-[1.1-diphenyl-athyl]-hyponitrit (1h) und Bis-[1.1-dimethyl-pentyl]-hyponitrit (1g) wurden dargestellt. Die tertiaren Hyponitrite zerfallen bereits rasch bei-40 in Stickstoff und freie Alkoxyradikale, die dann zu den entsprechenden Alkoholen und Ketonen weiter reagieren. Die relativen Reaktivitaten von tert.-Butyloxy-und Cumyloxyradikalen hinsichtlich Wasserstoffabstraktion und β-Spaltung wurden fur verschiedene Losungsmittel bestimmt; Cumyloxyradikale neigen starker zur β-Spaltung als tert-Butyloxyradikale. Die freien Alkoxyradikale konnen Polymerisations- und Autoxydationsreaktionen init…

Inorganic Chemistrychemistry.chemical_compoundAutoxidationHyponitritePolymerizationChemistryRadicalPolymer chemistryAlkoxy groupDecompositionChemische Berichte
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Stable Methylene- and Oxo-Bridged Monocyclopentadienyl Titanium Compounds. Molecular Structure of {Ti[μ-(η5-C5Me4SiMe2-O)]Me}2(μ-CH2)

2004

Thermolysis of {Ti[μ-(η5-C5Me4SiMe2-O)]Me2}2 affords the methylene-bridged titanium compound {Ti[μ-(η5-C5Me4SiMe2-O)]Me}2(μ-CH2), concurrent with the evolution of methane, the first example of a fu...

Inorganic Chemistrychemistry.chemical_compoundChemistryOrganic ChemistryPolymer chemistryInorganic chemistryThermal decompositionMoleculechemistry.chemical_elementPhysical and Theoretical ChemistryMethyleneMethaneTitaniumOrganometallics
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Crystal Structures and Polymorphism of Nickel and Copper Coordination Polymers with Pyridine Ligands

2014

The crystal structures of a series of pyridine coordination polymers [MIICl2(C5H5N)x]n (M = Ni, Cu), prepared via thermal decomposition are reported. [NiCl2(C5H5N)4] (1) decomposes stepwise via [NiCl2(C5H5N)2]n (2), [NiCl2(C5H5N)]n (3), and [NiCl2(C5H5N)2/3]n (4), to NiCl2 with increasing temperature. The thermal decomposition of [CuCl2(C5H5N)2]n (5), progresses via two polymorphs of [CuCl2(C5H5N)]n (6a and 6b), and [CuCl2(C5H5N)2/3]n (7), to CuCl2. The compounds 3, 4, and 7 were prepared as pure phases. All crystal structures were determined by X-ray powder diffraction. Notably, the crystal structures of the polymorphs 6a and 6b were determined from powder diffraction data of a mixture of …

Inorganic Chemistrychemistry.chemical_compoundNickelCrystallographychemistryOctahedronPolymorphism (materials science)PyridineThermal decompositionchemistry.chemical_elementCrystal structureCopperPowder diffractionZeitschrift für anorganische und allgemeine Chemie
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A retro Diels–Alder method for the preparation of pyrrolo[1,2-a]pyrimidinediones from diexo-aminooxanorbornenecarboxamide

2006

Abstract Through the reactions of diexo-3-amino-7-oxanorbornene-2-carboxamide 1 with the oxocarboxylic acids: 4-oxopentanoic acid, p-chlorobenzoylpropionic acid or 2-formylbenzoic acid, the pyrrolo[1,2-a]pyrimidinediones 2 and 3 or pyrimido[1,2-a]isoindoledione 4 were formed on cyclization and thermolysis, when the parent cycles decomposed via the loss of furan to give 2–4 in a retro Diels–Alder reaction. With cis-or trans-2-aroylcyclohexanecarboxylic acids as starting compounds, the 1-aroylhexahydroisoindol-3-ones (5–8) were formed; the phenyl-substituted derivatives gave diastereomeric mixtures. The structures of the new compounds were established by NMR spectroscopy and, for 3 and 6, als…

Inorganic Chemistrychemistry.chemical_compoundchemistryFuranOrganic ChemistryThermal decompositionDiels alderDiastereomerOrganic chemistryNuclear magnetic resonance spectroscopyRetro-Diels–Alder reactionSpectroscopyAnalytical ChemistryJournal of Molecular Structure
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Ascorbic acid decomposition into oxalate ions: a simple synthetic route towards oxalato-bridged heterometallic 3d-4f clusters.

2015

Two types of oxalato-bridged heterometallic 3d–4f dodeca- and hexanuclear compounds have been obtained by connecting six bi- and, respectively, trinuclear moieties through oxalato bridges arising from the slow decomposition of the L-ascorbic acid.

Inorganic Chemistrychemistry.chemical_compoundchemistrySimple (abstract algebra)Inorganic chemistryAscorbic acidDecompositionOxalateIonDalton transactions (Cambridge, England : 2003)
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Density functional theory based screening of ternary alkali-transition metal borohydrides: a computational material design project.

2009

We present a computational screening study of ternary metal borohydrides for reversible hydrogen storage based on density functional theory. We investigate the stability and decomposition of alloys containing 1 alkali metal atom, Li, Na, or K M1; and 1 alkali, alkaline earth or 3d / 4d transition metal atom M2 plus two to five BH4  groups, i.e., M1M2BH42‐5, using a number of model structures with trigonal, tetrahedral, octahedral, and free coordination of the metal borohydride complexes. Of the over 700 investigated structures, about 20 were predicted to form potentially stable alloys with promising decomposition energies. The M1Al/ Mn/ FeBH44, Li/ NaZnBH43, and Na/ KNi/ CoBH43 alloys are …

Inorganic chemistryGeneral Physics and Astronomy02 engineering and technologyab initio calculations ; aluminium alloys ; boron alloys ; cobalt alloys ; decomposition ; density functional theory ; electronic structure ; hydrogen ; hydrogen storage ; iron alloys ; lithium alloys ; manganese alloys ; nickel alloys ; niobium alloys ; potassium alloys ; rhodium alloys ; sodium alloys ; thermodynamics ; zinc alloysMaterialeforskning010402 general chemistryBorohydride01 natural sciences7. Clean energyMetalHydrogen storagechemistry.chemical_compoundMaterials and systems for energy storageTransition metalAb initio quantum chemistry methodsMaterialer og systemer til energilagringPhysical and Theoretical ChemistryMaterials research021001 nanoscience & nanotechnologyAlkali metal0104 chemical scienceschemistryvisual_artvisual_art.visual_art_mediumPhysical chemistryDensity functional theory0210 nano-technologyTernary operationThe Journal of chemical physics
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Decomposition studies of group 6 hexacarbonyl complexes. Part 1: Production and decomposition of Mo(CO)6 and W(CO)6

2015

Abstract Chemical studies of superheavy elements require fast and efficient techniques, due to short half-lives and low production rates of the investigated nuclides. Here, we advocate for using a tubular flow reactor for assessing the thermal stability of the Sg carbonyl complex – Sg(CO)6. The experimental setup was tested with Mo and W carbonyl complexes, as their properties are established and supported by theoretical predictions. The suggested approach proved to be effective in discriminating between the thermal stabilities of Mo(CO)6 and W(CO)6. Therefore, an experimental verification of the predicted Sg–CO bond dissociation energy seems to be feasible by applying this technique. By in…

Inorganic chemistryMetal carbonyl02 engineering and technology010402 general chemistry01 natural sciences7. Clean energythermal stability540 ChemistryseaborgiumThermal stabilityNuclideGas compositionPhysical and Theoretical Chemistrycarbonyl complexegroup 6ChemistrytransactinideTransition metals021001 nanoscience & nanotechnologyDecompositionBond-dissociation energy0104 chemical sciencesVolumetric flow rateYield (chemistry)570 Life sciences; biologyPhysical chemistry0210 nano-technology
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A Combined Theoretical and Experimental Approach for Platinum Catalyzed 1,2-Propanediol Aqueous Phase Reforming

2017

Decomposition pathways of 1,2-propanediol (1,2-PDO) on platinum were investigated by means of experiments and quantum-mechanical calculations. Different reaction paths on a Pt(111) model surface were computationally screened. Gas and liquid phase products distribution for aqueous phase reforming of 1,2-PDO solutions was experimentally analyzed. A mechanistic approach was used to trace the preferred paths according to calculated activation barriers of the elementary steps; in this way, the presence or absence of some hypothesized intermediates in the experiments was computationally rationalized. Hydroxyacetone was demonstrated to be among the most favored decomposition products. The competit…

Inorganic chemistrySurfaces Coatings and Filmchemistry.chemical_element02 engineering and technology010402 general chemistry01 natural sciencesCatalysisPropanediolchemistry.chemical_compoundComputational chemistryPhysical and Theoretical ChemistryCarbon chainElectronic Optical and Magnetic MaterialHydroxyacetoneDecarbonylationAqueous two-phase system021001 nanoscience & nanotechnologyDecomposition0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsEnergy (all)General Energychemistry0210 nano-technologyPlatinumThe Journal of Physical Chemistry C
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