Search results for "Persio"

showing 10 items of 1107 documents

ChemInform Abstract: Weak Interactions Between Trivalent Pnictogen Centers: Computational Analysis of Bonding in Dimers X3E···EX3(E: Pnictogen, X: Ha…

2009

The nature of weak interactions in dimers X3E···EX3 (E = N−Bi, X = F−I) was investigated by wave function and density functional theory (DFT)-based methods. Out of the 20 systems studied, 10 are found to be bound at the CP-MP2 and LMP2 levels of theory. Detailed partition of the interaction energy into different components revealed that dispersion is the primary force holding the dimers together but there also exists an important ionic component whose contribution increases with increasing halogen size. As expected, standard density functionals fail to describe bonding in the studied systems. However, the performance of DFT methods can be easily improved via empirical dispersion correction …

ChemistryChemical physicsHydrogen bondBinding energyAb initioIonic bondingDensity functional theoryGeneral MedicineInteraction energyDispersion (chemistry)PnictogenChemInform
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17O NMR study of chlorinated anisoles

1988

The 17O NMR chemical shifts of anisole and all 19 chlorinated anisoles measured in CDCI3 at ambient temperature show a dispersion of approximately 40 ppm. The substituent chemical shifts (SCS) of di- or more highly chlorinated compounds cannot be reproduced by addition of single substituent effects. Theoretical calculations of the 17O NMR chemical shifts have been attempted by molecular mechanical and semi-empirical molecular orbital methods at the INDO level, but the results are not satisfactory.

ChemistryChemical shiftSubstituentEtherGeneral ChemistryNuclear magnetic resonance spectroscopyPhotochemistryAnisolechemistry.chemical_compoundComputational chemistrypolycyclic compoundsChemical solutionGeneral Materials ScienceMolecular orbitalDispersion (chemistry)Magnetic Resonance in Chemistry
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Spectroscopic signatures of the carbon buckyonions C60@C180 and C60@C240: a dispersion-corrected DFT study

2013

We have investigated, using dispersion corrected DFT methods, the structure and the spectroscopic properties of carbon buckyonions C-60@C-180 and C-60@C-240. C-60, C-180 and C-240 showed a noticeable variation of their geometries in C-60@C-180 and C-60@C-240, upon encapsulation. Inclusion of the dispersion correction term in the calculations has a significant effect on the geometry. C-60@C-180 has a large positive interaction energy, while for C-60@C-240 a negative value is found indicating that only C-240 can easily accommodate C-60. In both cases dispersion interactions strongly contribute to the stabilization of the complexes. Vibrational frequencies, electronic transitions and NMR prope…

ChemistryDispersion Correctionfullerenes; computational chemistryAnalytical chemistryfullerenesGeneral Physics and AstronomyPositive interactioncomputational chemistryDFTEncapsulated buckyonionSpectroscopic.Atomic electron transitionChemical physicsPhysical and Theoretical ChemistrySettore CHIM/02 - Chimica Fisica
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Improving the photocatalytic H2 evolution activity of Keggin polyoxometalates anchoring copper-azole complexes

2021

Eliminating the use of precious metals as cocatalysts and using visible light are two important aspects in the field of photocatalytic H2 evolution with polyoxometalates (POMs) as photosensitizers. Here we present two new POM-based materials: [CuII5(2-ptz)6(H2O)4(GeW12O40)]·4H2O (1) and [CuI2(ppz)4][H2GeW12O40]·8H2O (2) (2-ptz = 5-(2-pyridyl) tetrazole, ppz = 3-(pyrid-4-yl) pyrazole) synthesized with the Keggin type [GeW12O40]4− (GeW12) polyanion and copper-azole complexes. The optimum photocatalytic H2 evolution rate of compound 1 without a noble metal cocatalyst is 3813 μmol g−1 h−1, which is 7.6 times higher than that of compound 2 and more than 27 times higher than that of bare GeW12 po…

Chemistrychemistry.chemical_elementengineering.materialPyrazolePhotochemistryPollutionCopperchemistry.chemical_compoundPhotocatalysisengineeringEnvironmental ChemistryNoble metalTetrazolePhotosensitizerDispersion (chemistry)Visible spectrumGreen Chemistry
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The intensification of absorbance changes in leaves by light-dispersion

1979

In dispersive samples, like leaves, the absorbance of pigments is intensified. The intensification is due to a longer optical path through the dispersive sample. However, in chloroplast suspensions the optical path is not much longer than in clear solutions. The factor of intensification β (=the lengthening of the optical path) is calculated by comparing the absorbance of leaves and the absorbance of chloroplast suspensions with equal pigment-content. This method also includes the influence of possible sieve effects which could decrease absorbance. The measurements are carried out with high- and low-light leaves of different thickness and pigment content. The intensification of absorbance w…

ChloroplastAbsorbanceCytochrome fPigmentChromatographyChemistryvisual_artLight dispersionGeneticsAnalytical chemistryvisual_art.visual_art_mediumsense organsPlant SciencePlanta
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Immobilization of reagents by polymeric materials. Determination of metamizol

1992

Abstract A method for immobilization of inorganic reagents, based on the dispersion of the reagent into an unsaturated polyester solution is applied to immobilization of lead dioxide. The obtained solid is of application in a flow-injection manifold for indirect atomic absorption determination of metamizol in pharmaceutical formulations. The procedure gives a linear calibration graph up to 6 ppm of metamizol with a relative standard deviation of 1.6% (3.0 mg/l) and a sample throughput of 72 hr−1.

ChromatographyCalibration curveChemistryRelative standard deviationUnsaturated polyesterLead dioxideAnalytical Chemistrylaw.inventionchemistry.chemical_compoundlawReagentAtomic absorption spectroscopyDispersion (chemistry)Nuclear chemistryTalanta
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Alcoholic nanolime dispersion obtained by the insolubilisation-precipitation method and its application for the deacidification of ancient paper

2017

Abstract Nanolime dispersions for the deacidification of ancient paper constitute a valid alternative to the lime traditional ones. Their efficacy depends on particles size, polydispersity and agglomeration that can be controlled depending on the preparation method. In this work, nanolime preparation by insolubilisation-precipitation method is reported. Nanoparticles dispersed in a water-isopropanol mixture were obtained without any manipulation of the dispersion. The stability of the dispersion together with particle size and morphology were found to be dependent on water to isopropanol molar ratio and on the synthesis temperature. One of the dispersion was applied on a manuscript to asses…

ChromatographyChemistryPrecipitation (chemistry)Economies of agglomerationInsolubilisation-precipitation methodDispersityNanoparticle02 engineering and technologyengineering.material010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesColloid and Surface ChemistryChemical engineeringMolar ratioengineeringParticle sizePaper deacidification0210 nano-technologyDispersion (chemistry)NanolimeSettore CHIM/02 - Chimica FisicaLimeColloids and Surfaces A: Physicochemical and Engineering Aspects
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Use of sonication for measuring acid phosphatase activity in soil

2000

Extracellular enzymes in soil often occur in immobilised forms, a state that may alter their interactions with substrates in comparison with enzymes in the solution phase. Sonication was evaluated for its usefulness in studying immobilised acid phosphatase by dispersing soil aggregates. Factors affecting soil dispersion during ultrasound application were soil extraction ratio, total applied energy and power output ml−1 of sonicated soil slurry. For the clay loam soil used, optimal values for these variables were, respectively, 1:6 (w/v) and, at least, 1800 J ml−1 and 15 W ml−1. At the optimal sonication conditions for soil dispersion a substantial increase in phosphatase activity (up to 156…

ChromatographyLysisbiologyChemistrySonicationSoil biologyPhosphataseAcid phosphataseSoil ScienceSoil chemistryEnzyme assayDispersion (geology)complex mixturesMicrobiologySoilSonicationBiochemistryLoambiology.proteinAcid phosphataseSoil Biology and Biochemistry
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Multicomponent solid dispersion as a formulation strategy to improve drug permeation: A case study on the anti-colorectal cancer irinotecan

2019

Abstract Multicomponent solid dispersions (MSD)s are frequently proposed as efficient drug delivery systems to improve drug solubility and bioavailability. In this study, the effects of specific excipients, such as mannitol, inulin, poly(methyl methacrylate-co-methacrylic)acid (PMMA) and cellulose acetate phthalate (CAP) have been tested to potentially improve irinotecan (IRN) permeation in the intestinal tract with the intention to protect the drug from the gastric environment. MSDs were formulated as microparticles by Spray-Drying technique. Raw materials and microparticles have been characterized by FTIR analysis to determine hydrogen bonding. SEM images were recorded to investigate morp…

ChromatographyPharmaceutical Science02 engineering and technologyPermeation021001 nanoscience & nanotechnology030226 pharmacology & pharmacyBioavailabilityMulticomponent solid dispersion Microparticles Irinotecan Inulin Spray-drying03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCellulose acetate phthalatechemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoDrug deliveryDissolution testingParticle sizeSolubility0210 nano-technologyDissolutionJournal of Drug Delivery Science and Technology
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Instantaneous frequency measurement of dissipative soliton resonant light pulses

2016

Fil: Cuadrado-Laborde, Christian. Universidad de Valencia. Departamento de Física Aplicada y Electromagnetismo. Instituto Universitario de Ciencia de los Materiales; España Fil: Cuadrado-Laborde, Christian. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Física Rosario; Argentina Fil: Cuadrado-Laborde, Christian. Pontificia Universidad Católica Argentina. Facultad de Química e Ingeniería del Rosario; Argentina Fil: Armas Rivera, I. Benemérita Universidad Autónoma de Puebla. Facultad de Ciencias Físico Matemáticas; Mexico Fil: Carrascosa, A. Universidad de Valencia. Departamento de Física Aplicada y Electromagnetismo. Instituto Universitario de Ciencia de los Materia…

Ciencias FísicasInstantaneous frequencyPhysics::OpticsChirp spread spectrumMode-locking02 engineering and technology01 natural sciencesInstantaneous phase010309 opticsDissipative soliton020210 optoelectronics & photonicsOpticsFiber laser0103 physical sciencesDispersion (optics)0202 electrical engineering electronic engineering information engineeringChirpPhysics::Atomic PhysicsBAJA FRECUENCIAPhysicsbusiness.industryFiber laserAtomic and Molecular Physics and OpticsPulse (physics)AstronomíaMode-lockingLASER DE FIBRADissipative soliton resonancebusinessCIENCIAS NATURALES Y EXACTASBLOQUEO DE MODO
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