Search results for "Halide"

showing 10 items of 324 documents

Preparation and processing of nanocomposites of all-inorganic lead halide perovskite nanocrystals

2021

Abstract Solution processed all-inorganic trihalide perovskite nanocrystals are potential materials for the fabrication of future generation optoelectronic devices. However, the surface of the perovskite nanocrystals should be encapsulated to prevent degradation. Because of their stability under ambient conditions, nanocomposites of perovskite nanocrystals have been intensively researched for display applications. Perovskite nanocrystals dispersion or growth in a polymer matrix imparts structural stability and influences the optical properties, preventing effects such as halide migration. Developing flexible, high-performance lighting devices through perovskite nanocomposites will need to b…

chemistry.chemical_classificationNanocompositeFabricationMaterials scienceNanocrystalchemistryTrihalideHalideNanotechnologyPolymerDispersion (chemistry)Perovskite (structure)
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1,4-Bis(arylthio)but-2-enes as Assembling Ligands for (Cu2X2)n (X = I, Br; n = 1, 2) Coordination Polymers: Aryl Substitution, Olefin Configuration, …

2016

CuI reacts with E-PhS(CH2CH═CHCH2)SPh, L1, to afford the coordination polymer (CP) [Cu2I2{μ-E-PhS(CH2CH═CHCH2)SPh}2]n (1a). The unprecedented square-grid network of 1 is built upon alternating two-dimensional (2D) layers with an ABAB sequence and contains rhomboid Cu2(μ2-I)2 clusters as secondary building units (SBUs). Notably, layer A, interconnected by bridging L1 ligands, contains exclusively dinuclear units with short Cu···Cu separations [2.6485(7) A; 115 K]. In contrast, layer B exhibits Cu···Cu distances of 2.8133(8) A. The same network is observed when CuBr reacts with L1. In the 2D network of [Cu2Br2{μ-E-PhS(CH2CH═CHCH2)SPh}2]n (1b), isotype to 1a, one square-grid-type layer contain…

chemistry.chemical_classificationOlefin fiber010405 organic chemistryCoordination polymerStereochemistryArylHalideGeneral ChemistryPolymer010402 general chemistryCondensed Matter Physics01 natural sciences0104 chemical scienceschemistry.chemical_compoundCrystallographychemistryGeneral Materials ScienceSBusLuminescenceCurse of dimensionalityCrystal Growth & Design
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Diastereoselective synthesis of fluorinated, seven-membered beta-amino acid derivatives via ring-closing metathesis.

2003

[reaction: see text] Cis and trans seven-membered gamma,gamma-difluorinated beta-amino acid derivatives (III) have been prepared with a sequence that starts with imidoyl halides (I), which are condensed with suitable ester enolates to give intermediates (II). These, in turn, can be cyclized by means of a ring-closing olefin metathesis reaction and the product stereoselectively reduced to yield compounds (III) in good overall yields.

chemistry.chemical_classificationOlefin metathesisStereochemistryChemistryOrganic ChemistryHalideStereoisomerismGeneral MedicineFluorineBiochemistryMedicinal chemistryAmino acidTurn (biochemistry)Ring-closing metathesisYield (chemistry)Salt metathesis reactionPhysical and Theoretical ChemistryAmino AcidsBeta (finance)Cis–trans isomerismAcyclic diene metathesisOrganic letters
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Dienediolates of unsaturated carboxylic acids in synthesis. Aldehydes and ketones from alkyl halides, by ozonolysis of β,γ-unsaturated α-alkyl carbox…

1997

Abstract A convenient two-step procedure for a two carbon homologative conversion of alkyl halides into aldehydes and methyl ketones by α-alkylation of unsaturated carboxylic acids, followed by ozonolysis is developed and applied to the synthesis of ω-chloro aldehydes. Triethylamine is superior to dimethyl sulfide or triphenylphosphine for cleavage of the ozonides, except when aldol condensation side reactions require use of protic solvents and iodide salts. Cleavage of the ozonides by triethylamine is shown to occur mainly through a reductive process.

chemistry.chemical_classificationOzonolysisTertiary amineOrganic ChemistryIodideHalideBiochemistrychemistry.chemical_compoundchemistryDrug DiscoveryOrganic chemistryAldol condensationTriphenylphosphineTriethylamineAlkylTetrahedron
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Halo and Pseudohalo Cu(I)-Pyridinato Double Chains with Tunable Physical Properties

2015

The properties recently reported on the Cu(I)-iodide pyrimidine nonporous 1D-coordination polymer [CuI(ANP)] (ANP = 2-amino-5-nitropyridine) showing reversible physically and chemically driven electrical response have prompted us to carry a comparative study with the series of [CuX(ANP)] (X = Cl (1), X = Br (2), X = CN (4), and X = SCN (5)) in order to understand the potential influence of the halide and pseudohalide bridging ligands on the physical properties and their electrical response to vapors of these materials. The structural characterization of the series shows a common feature, the presence of -X-Cu(ANP)-X- (X = Cl, Br, I, SCN) double chain structure. Complex [Cu(ANP)(CN)] (4) pre…

chemistry.chemical_classificationPyrimidineHydrogen bondChemistrySupramolecular chemistryHalideNanotechnologySingle chainPolymerInorganic ChemistryDouble chainchemistry.chemical_compoundCrystallographyPhysical and Theoretical ChemistryLuminescenceInorganic Chemistry
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Electrosynthesis as a powerful method for the generation of catalytic intermediates: efficient isolation of a palladium aryl halide oxidative additio…

2011

International audience; Polyphosphane ligands of controlled conformation promote highly efficient palladium-catalyzed cross-coupling reactions. Electrosynthesis has been used as a new straightforward method to obtain important intermediates in the search for a better mechanistic understanding. As a proof of concept, the facile synthesis of a phenyl iodopalladium(II) complex (2) was conducted at the electrolysis scale from a readily electrogenerated unstable Pd0 precursor.

chemistry.chemical_classificationReaction mechanism010405 organic chemistryoxidative additionAryl halideOrganic Chemistrychemistry.chemical_elementGeneral Chemistry[CHIM.CATA]Chemical Sciences/Catalysis010402 general chemistryElectrosynthesispalladium01 natural sciencesOxidative additionCatalysis0104 chemical sciencesCatalysis[ CHIM.CATA ] Chemical Sciences/Catalysisreaction mechanismselectrosynthesischemistryOrganic chemistryaryl halidePalladium
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Living and Controlled Anionic Polymerization of Methacrylates and Acrylates in the Presence of Tetraalkylammonium Halide-Alkylaluminum Complexes in T…

1997

The size of both the cation and the anion of added NR4 X influences the rate of living polymerization of acrylates and methacrylates with alkylaluminum compounds. This controlled reaction, which occurs near to room temperature, provides unimodal polymers with narrow molecular-weight distributions. The complex shown to the right is suggested as a possible active species. R=Me, Et, nBu; R'=Me, Et; X=Cl, Br, I.

chemistry.chemical_classificationReaction mechanismHalideGeneral ChemistryPolymerMethacrylatePhotochemistryTolueneCatalysisIonchemistry.chemical_compoundAnionic addition polymerizationchemistryPolymer chemistryLiving polymerizationAngewandte Chemie International Edition
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Relaxation of electron-hole pairs and scintillation mechanism in alkali halide crystals

1997

Abstract The mechanism of the ionizing radiation energy transfer from host lattice to luminescence centers is discussed taking into account the results of the recent experimental investigations of electron-hole pair relaxation in alkali iodide crystals. The high scintillation yield in CsI-Tl, CsI-Na and partially in Nal-Tl crystals is explained by the process of the motion and capture of a one-center self-trapped exciton by impurity ions.

chemistry.chemical_classificationScintillationPhysics::Instrumentation and DetectorsChemistryCarrier generation and recombinationExcitonIodideBiophysicsHalideGeneral ChemistryCondensed Matter PhysicsAlkali metalBiochemistryAtomic and Molecular Physics and OpticsIonizing radiationAtomic physicsLuminescenceJournal of Luminescence
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Intramolecularly Coordinated Bis(crown ether)-Substituted Organotin Halides as Ditopic Salt Receptors

2013

The synthesis of the bis(crown ether)-substituted organostannanes X2Sn(CH2-[16]-crown-5)2 (3, X = I; 4, X = Br; 5, X = Cl; 6, X = F) and X2Sn(CH2-[13]-crown-4)2 (10, X = I; 11, X = Br; 12, X = F) is reported. The compounds have been characterized by 1H, 13C, 19F, and 119Sn NMR spectroscopy, elemental analyses, and electrospray ionization mass spectrometry (ESI-MS). Single-crystal X-ray diffraction analyses reveal a distorted-octahedral cis,cis,trans configuration of the tin atoms in compounds 4–6 and 10–12 as a result of intramolecular O→Sn coordination. The ability of the host molecules to form mono- and ditopic complexes with various halide salts in different solvents, including water, ha…

chemistry.chemical_classificationStereochemistryElectrospray ionizationOrganic Chemistrychemistry.chemical_elementHalideSalt (chemistry)Nuclear magnetic resonance spectroscopyMedicinal chemistryInorganic ChemistrychemistryIntramolecular forceMoleculePhysical and Theoretical ChemistryTinCrown etherOrganometallics
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A New Building Block for Organometallic–Inorganic Hybrid Polymers: The Mixed Group 15/16 Element Ligand Complex [Cp* 2 Mo 2 (μ,η 2:2 ‐PSe) 2 (μ‐Se)] …

2010

The synthesis and spectroscopic characterization of [Cp*2Mo2P2Se3] (1; Cp* = C5Me5) and its use as a molecular building block in the formation of copper(I) halide polymers is described. The reaction of 1 in CH2Cl2 with 2 equiv. of CuBr and CuI in CH3CN under diffusion conditions gave [(Cp*2Mo2P2Se3)2(CuBr)2] (2) and [(Cp*2Mo2P2Se3)(CuX)3(CH3CN)]n (X = I; 3/4), respectively. The structure of 2 is distinguished by a central Cu2Br2 ring coordinated on each side by a tripledecker complex through one of its P atoms. A 2D network is formed by weak interactions between Se atoms of neighboring molecules. Compound [(Cp*2Mo2P2Se3)(CuI)3(CH3CN)]n exists in two isomeric forms 3 and 4. The crystal struc…

chemistry.chemical_classificationStereochemistryLigandChemistrychemistry.chemical_elementHalideCrystal structurePolymerBlock (periodic table)Ring (chemistry)CopperInorganic ChemistryCrystallographyMoleculeEuropean Journal of Inorganic Chemistry
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