Search results for "Orbit"

showing 10 items of 1104 documents

Profiling of lipid species by normal-phase liquid chromatography, nanoelectrospray ionization, and ion trap–orbitrap mass spectrometry

2013

Detailed analysis of lipid species can be challenging due to their structural diversity and wide concentration range in cells, tissues, and biofluids. To address these analytical challenges, we devised a reproducible, sensitive, and integrated lipidomics workflow based on normal-phase liquid chromatography-Fourier transform mass spectrometry (LC-FTMS) and LC-ITMS(2) (ion trap tandem mass spectrometry) for profiling and structural analysis of lipid species. The workflow uses a normal-phase LC system for efficient separation of apolar and polar lipid species combined with sensitive and specific analysis powered by a chip-based nanoelectrospray ion source and a hybrid ion trap-orbitrap mass sp…

Spectrometry Mass Electrospray IonizationCeramideBiophysicsAnalytical chemistryCeramidesTandem mass spectrometryMass spectrometryOrbitrapBiochemistrylaw.inventionMicechemistry.chemical_compoundTandem Mass Spectrometrylaw3T3-L1 CellsCerebellumIonizationLipidomicsAnimalsMolecular BiologyTriglyceridesChromatographyChemistryCell BiologyIon sourceMice Inbred C57BLIon trapHydrophobic and Hydrophilic InteractionsChromatography LiquidAnalytical Biochemistry
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New perspectives on diastereoselective determination of hexabromocyclododecane traces in fish by ultra high performance liquid chromatography-high re…

2014

a b s t r a c t A new analytical method is presented for diastereoisomer-specific identification and quantitation of hexabromocyclododecanes (HBCD) in fish samples. The method is based on extraction of the target analytes from samples with a mixture of organic solvents, with further three-stage clean-up includ- ing destructive removal of matrix components with sulphuric acid and acid-impregnated silica gel, and Florisil adsorption column chromatography. Ultra high performance liquid chromatography (UPLC) cou- pled with high resolution (HR) Orbitrap mass spectrometry featuring heated electrospray ionization (HESI-II) interface operated in negative ion mode was employed for the identification…

Spectrometry Mass Electrospray IonizationSalmo salarAnalytical chemistrySilica GelMass spectrometryOrbitrapBiochemistryHigh-performance liquid chromatographyAnalytical Chemistrylaw.inventionMatrix (chemical analysis)chemistry.chemical_compoundColumn chromatographylawAnimalsChromatography High Pressure LiquidFlame RetardantsDetection limitHexabromocyclododecaneChromatographyChemistryOrganic ChemistryStereoisomerismGeneral MedicineRepeatabilityHydrocarbons BrominatedCalibrationWater Pollutants ChemicalJournal of chromatography. A
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LC–ESI–FT–MSn Metabolite Profiling of Symphytum officinale L. Roots Leads to Isolation of Comfreyn A, an Unusual Arylnaphthalene Lignan

2020

Preparations of comfrey (Symphytum officinale L.) roots are used topically to reduce inflammation. Comfrey anti-inflammatory and analgesic properties have been proven in clinical studies. However, the bioactive compounds associated with these therapeutic activities are yet to be identified. An LC&ndash

Spectrometry Mass Electrospray Ionizationcomfrey rootsMetaboliteAnti-Inflammatory AgentsComfreySymphytum officinalePlant Roots01 natural sciencescomfreyn AArticleCatalysisUmbilical veinInorganic Chemistrylcsh:Chemistrychemistry.chemical_compoundLC–ESI–Orbitrap–MSComfreyHuman Umbilical Vein Endothelial CellsSymphytum officinaleHumans<i>Symphytum officinale</i>Physical and Theoretical ChemistryGloboidnan AMolecular Biologylcsh:QH301-705.5SpectroscopyLignanPlants MedicinalChromatographyMolecular StructurebiologyChemistry010401 analytical chemistryOrganic ChemistryComfrey roots; Comfreyn A; LC–ESI–Orbitrap–MS; Phenylpropanoids; Symphytum officinaleGeneral Medicinebiology.organism_classification0104 chemical sciencesComputer Science Applications010404 medicinal & biomolecular chemistrylcsh:Biology (General)lcsh:QD1-999Metabolite profilingTwo-dimensional nuclear magnetic resonance spectroscopyChromatography LiquidphenylpropanoidsInternational Journal of Molecular Sciences
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Research data supporting the paper "Tuning the effective spin-orbit coupling in molecular semiconductors"

2017

We here present the data underlying the paper "Tuning the effective spin-orbit coupling in molecular semiconductors" accepted at Nature Communications on 24 February 2017. For contributions of the authors to the data and experimental details, please refer to the original paper.

Spin orbit couplingOrganic semiconductorsSpintronicsMolecular semiconductorsOrganic spintronics
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Self-assembly, metal binding ability, and magnetic properties of dinickel(II) and dicobalt(II) triple mesocates

2012

Two metallacyclic complexes of general formula Na-8[(M2L3)-L-II]center dot xH(2)O [M = Ni (4) and Co (5) with x = 15 (4) and 17 (5)] have been self-assembled in aqueous solution from N,N'-1,3-phenylenebis(oxamic acid) (H4L) and M2+ ions in a ligand/metal molar ratio of 3 : 2 in the presence of NaOH acting as base. X-Ray structural analyses of 4 and 5 show triple-stranded, dinuclear anions of the meso-helicate-type (so-called mesocates) with C-3h molecular symmetry. The two octahedral metal-tris(oxamate) moieties of opposite chiralities (Delta, Lambda form) are connected by three m-phenylene spacers at intermetallic distances of 6.822(2) (4) and 6.868(2) angstrom (5) to give a metallacryptan…

Spin polarizationChemistryInorganic chemistryGeneral ChemistryCrystal structureCondensed Matter PhysicsMagnetic susceptibilityCrystallographyPhenyleneMolecular symmetryAntiferromagnetismMoleculeGeneral Materials ScienceMolecular orbital
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Spin Density Maps in the Triplet Ground State of [Cu2(t-Bupy)4(N3)2](ClO4)2 (t-Bupy = p-tert-butylpyridine):  A Polarized Neutron Diffraction Study

1998

This paper is devoted to the determination of the spin distribution in the spin triplet ground state of [Cu-2(t-Bupy)(4)(N-3)(2)](ClO4)(2), With t-Bupy = p-tert-butylpyridine. The crystal structure, previously solved at room temperature from X-ray diffraction, has been redetermined at 18 K from unpolarized neutron diffraction. The structure consists of binuclear cations in which Cu2+ ions are doubly bridged by azido groups in the 1,1-fashion, and noncoordinated perchlorate anions. The experimental spin distribution has been determined from polarized neutron diffraction (PND) at 1.6 K under 50 kOe. The spin populations have been found to be strongly positive on the Cu2+ ions, weakly positive…

Spin polarizationChemistryNeutron diffractionBridging ligandGeneral ChemistryCrystal structureBiochemistryCatalysisIonDelocalized electronCrystallographyColloid and Surface ChemistryAtomic orbitalGround stateJournal of the American Chemical Society
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Theoretical Evaluation of [V IV (α-C 3 S 5 ) 3 ] 2– as Nuclear-Spin-Sensitive Single-Molecule Spin Transistor

2017

In a straightforward application of molecular nanospintronics to quantum computing, single-molecule spin transistors can be used to measure nuclear spin qubits. Conductance jumps accompany electronic spin flips at the so-called anticrossings between energy levels, which take place only at specific magnetic fields determined by the nuclear spin state. To date, the only molecular hardware employed for this technique has been the terbium(III) bis(phthalocyaninato) complex. Here we explore theoretically whether a similar behavior is expected for a highly stable molecular spin qubit, the vanadium tris-dithiolate complex [VIV(α-C3S5)3]2–. We consider such a molecule between two gold electrodes an…

Spin statesCondensed matter physicsSpin polarizationChemistrySpin engineering02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences3. Good health0104 chemical sciencesAtomic orbitalQubitSpin transistorSpinplasmonicsCondensed Matter::Strongly Correlated ElectronsGeneral Materials SciencePhysical and Theoretical Chemistry0210 nano-technologySpin (physics)The Journal of Physical Chemistry Letters
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Electronic Structure Modulation in an Exceptionally Stable Non-Heme Nitrosyl Iron(II) Spin-Crossover Complex

2016

The highly stable nitrosyl iron(II) mononuclear complex [Fe(bztpen)(NO)](PF6)(2) (bztpen=N-benzyl-N,N',N'-tris(2-pyridylmethyl)ethylenediamine) displays an S=1/2 S=3/2 spin crossover (SCO) behavior (T-1/2=370 K, Delta H= 12.48 kJmol(-1), Delta S=33 JK(-1) mol(-1)) stemming from strong magnetic coupling between the NO radical (S=1/2) and thermally interconverted (S=0 S=2) ferrous spin states. The crystal structure of this robust complex has been investigated in the temperature range 120-420 K affording a detailed picture of how the electronic distribution of the t(2g)-e(g) orbitals modulates the structure of the {FeNO}(7) bond, providing valuable magneto-structural and spectroscopic correlat…

Spin statesIronInorganic chemistryAntiferromagnetic couplingEthylenediamineCrystal structureElectronic structure010402 general chemistry01 natural sciencesCatalysisFerrouschemistry.chemical_compoundAtomic orbitalSpin crossover[CHIM.COOR]Chemical Sciences/Coordination chemistryMolecular structures010405 organic chemistryEstructura molecularOrganic ChemistryNitric oxideGeneral ChemistryAtmospheric temperature rangeSpin crossoverÒxid nítric0104 chemical sciences3. Good healthCrystallographychemistryFISICA APLICADANitrosyl complexesMolecular structureFerroChemistry - A European Journal
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Intermolecular interaction energies and magnetic properties of spin-isolated multinuclear CuII complexes

2020

Dinuclear CuII complexes with 3,5-dinitrobenzoates and 2,2′-bipyridine (2) or 1,10-phenanthroline (3) were synthesized and characterized. A complete energy framework analysis using the HF/3-21G energy model was performed which found that dispersion forces and C—H...O interactions are responsible for the crystal structure features. The magnetic properties of the complexes show a weak magnetic exchange between spins, resulting in low exchange constants of −2.72 (1) cm−1 and −1.10 (1) cm−1 for complexes (2) and (3), respectively. This results from the low overlap between magnetic orbitals induced by 3,5-dinitrobenzoate bridges and the arrangement of the magnetic orbitals. Consequently, the din…

Spins010405 organic chemistryChemistryMetals and AlloysCrystal structure010402 general chemistry01 natural sciencesLondon dispersion forceAtomic and Molecular Physics and Optics0104 chemical sciencesElectronic Optical and Magnetic MaterialsMagnetic exchangeCrystallographyAtomic orbitalIntermolecular interactionMaterials ChemistrySpin (physics)Acta Crystallographica Section B Structural Science, Crystal Engineering and Materials
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Large Conductance Switching in a Single-Molecule Device through Room Temperature Spin-Dependent Transport

2016

Controlling the spin of electrons in nanoscale electronic devices is one of the most promising topics aiming at developing devices with rapid and high density information storage capabilities. The interface magnetism or spinterface resulting from the interaction between a magnetic molecule and a metal surface, or vice versa, has become a key ingredient in creating nanoscale molecular devices with novel functionalities. Here, we present a single-molecule wire that displays large (>10000%) conductance switching by controlling the spin-dependent transport under ambient conditions (room temperature in a liquid cell). The molecular wire is built by trapping individual spin crossover Fe-II comple…

SpinterfaceMagnetoresistanceMagnetismIronBioengineering02 engineering and technologyLigands010402 general chemistry01 natural sciencesMolecular wireSpin-crossover complexesSpin crossoverNanotechnologyGeneral Materials ScienceDensity functionalsSpin orbit couplingSTM break-junctionCondensed matter physicsNanotecnologiaMagnetoresistanceChemistryMechanical EngineeringTeoria del funcional de densitatConductanceGeneral ChemistrySpin–orbit interaction021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesDensity functional calculationsLligandsSingle-molecule junctionsFerromagnetismChemical physicsElectrode0210 nano-technologyFerroNano Letters
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