Search results for "hydroxide"

showing 10 items of 317 documents

CCDC 1033416: Experimental Crystal Structure Determination

2015

Related Article: Ayan Patra, Shobhraj Haldar, Gonela Vijay Kumar, Luca Carrella, Aloke Kumar Ghosh, Manindranath Bera|2015|Inorg.Chim.Acta|436|195|doi:10.1016/j.ica.2015.07.039

Space GroupCrystallographytetrakis((mu2-Acetato-OO')-(mu2-2-(((3-((2-carboxylatobenzyl)((pyridin-2-yl)methyl)amino)-2-oxypropyl)((pyridin-2-yl)methyl)amino)methyl)benzoato)-di-copper) tetrakis(triaqua-methanol-lithium) bis(mu2-bromo)-dibromo-di-copper dihydroxideCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Interaction of UO2(2+) with ATP in aqueous ionic media.

2005

Interaction of dioxouranium(VI) (uranyl) ion with ATP was studied by ligand/proton and metal/hydroxide displacement technique, at very low ionic strength and at I=0.15 mol L(-1), in aqueous Me4NCl and NaCl solutions, at t=25 degrees C. Measurements were carried out in the pH range 3-8.5, before the formation of precipitate. Computer analysis allowed us to find the quite stable species UO2(ATP)H2(0), UO2(ATP)H-, UO2(ATP)2-, UO2(ATP)2(6-), UO2(ATP)2H2(4-) and UO2(ATP)(OH)3- whose formation constants are (at I=0 mol L(-1)) logbeta(112)=18.21, logbeta(111)=14.70, logbeta(110)=9.14, logbeta(120)=12.84, logbeta(122)=24.82, and logbeta(11-1)=2.09, respectively. Different values were obtained in th…

SpeciationInorganic chemistryIonic mediaBiophysicsIonic bondingLigandsBiochemistryComplexeIonMetalchemistry.chemical_compoundAdenosine TriphosphateMetals HeavySettore CHIM/01 - Chimica AnaliticaAqueous solutionLigandHydrolysisOrganic ChemistryWaterHydrogen-Ion ConcentrationUranylUranium CompoundsDioxouranium(VI)ATPchemistryStability constants of complexesvisual_artDependence on medium of stability constantvisual_art.visual_art_mediumHydroxideBiophysical chemistry
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Spontaneous Magnetization in Ni−Al and Ni−Fe Layered Double Hydroxides

2008

Layered double hydroxides containing paramagnetic Ni (II) and diamagnetic/paramagnetic Al (III)/Fe (III) ions have been prepared and characterized. Ni 2Al(OH) 6(NO 3). nH 2O ( 1), Ni 2Fe(OH) 6(NO 3). nH 2O ( 2), Ni 2Fe(OH) 6(C 6H 8O 4) 0.5. nH 2O ( 3), and Ni 2Fe(OH) 6(C 10H 16O 4) 0.5. nH 2O ( 4) were prepared by coprecipitation at controlled pH as polycrystalline materials with the typical brucite-like structure, with alternating layers of hydroxide and the corresponding anions, which determine the interlayer separation. Magnetic studies show the appearance of spontaneous magnetization between 2 and 15 K for these compounds. Interestingly, the onset temperature for spontaneous magnetizati…

Spin glassChemistryCoprecipitationInorganic chemistryLayered double hydroxidesengineering.materialInorganic Chemistrychemistry.chemical_compoundCrystallographyParamagnetismengineeringDiamagnetismHydroxideCrystallitePhysical and Theoretical ChemistrySpontaneous magnetizationInorganic Chemistry
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Cover Feature: Boosting the Supercapacitive Behavior of CoAl Layered Double Hydroxides via Tuning the Metal Composition and Interlayer Space (Batteri…

2020

SupercapacitorBoosting (machine learning)Materials sciencebusiness.industryLayered double hydroxidesEnergy Engineering and Power Technologyengineering.materialSpace (mathematics)Energy storageMetalChemical engineeringvisual_artElectrochemistryvisual_art.visual_art_mediumengineeringCoalCover (algebra)Electrical and Electronic EngineeringbusinessBatteries & Supercaps
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Structure of nanoporous carbon materials for supercapacitors

2012

Activated carbons with highly developed porous structure and nanosized pores (8 - 11 A) were prepared from alder wood using thermochemical activation method with sodium hydroxide. Properties of the obtained activated carbons were examined by benzene and nitrogen sorption, X-Ray diffraction and Raman spectroscopy. Tests of activated carbons as electrodes in supercapacitors were performed as well. It was found that specific surface area of above mentioned activated carbons was 1800 m 2 /g (Dubinin - Radushkevich). Raman spectroscopy demonstrated the presence of ordered and disordered structures of graphite origin. The performance of activated carbons as electrodes in supercapacitors have show…

SupercapacitorMaterials scienceInorganic chemistrychemistry.chemical_elementSorptionchemistry.chemical_compoundsymbols.namesakechemistrySodium hydroxideSpecific surface areasymbolsGraphiteBenzeneRaman spectroscopyCarbonIOP Conference Series: Materials Science and Engineering
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Layered double hydroxide nanocomposites based on carbon nanoforms

2020

Abstract Carbon nanoform (CNF)/layered double hydroxide (LDH) nanocomposites have been widely studied in recent years thanks to the combination of properties of both LDH and carbon nanomaterials. They exhibit improved or unexpected properties as a consequence of their hierarchical structures. There are three main reported approaches to prepare the nanocomposites: reassembly of nanocarbons and LDHs, direct formation of LDHs on nanocarbon materials, and the direct synthesis of nanocarbons on the LDH phase. The resulting CNF/LDH nanocomposites exhibit improved conductivity, mechanical properties, and redox reactivity; moreover, the hybridization confers hierarchical porosities and better dispe…

SupercapacitorMaterials scienceNanocompositechemistry.chemical_elementNanotechnology02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology7. Clean energy01 natural sciences0104 chemical sciencesCatalysischemistry.chemical_compoundchemistryWater splittingHydroxideReactivity (chemistry)0210 nano-technologyDispersion (chemistry)Carbon
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Growth of polycrystalline nickel hydroxide films from aqueous solution. Solution chemistry, deposition methods, film morphology and texture

2014

Abstract Deposition of functional ceramic films on different substrates by using soft aqueous solution processing can represent a cheap, low- energy and environmental friendly alternative to other film technologies. In this study β-Ni(OH)2 polycrystalline films were grown on polytetrafluoroethylene, NiO, glass, copper, and Y:ZrO2 substrates from Ni2 +–NH4OH aqueous solutions. A careful control of solution supersaturation was essential to induce heterogeneous nucleation on the substrate and film growth. This was realized through the gradual decomposition of the nickel amino complexes Ni(NH3)n2 + using two different methods. Thermodynamic modeling of the Ni–NH4OH–H2O system was used to provid…

SupersaturationMaterials scienceAqueous solutionNickel hydroxideInorganic chemistrySupersaturated solutionMetals and AlloysOxideNucleationSurfaces and InterfacesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsFilm morphologychemistry.chemical_compoundchemistryMaterials ChemistryHydroxideDeposition (phase transition)CrystalliteTexture (crystalline)Nucleation Growth from solutionFilm texture
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Metals Recovery from Waste Pickling Solutions by Reactive Precipitation

2021

Pickling is one of the most important steps in steel manufacturing industry. During the process, an acid reacts with the surface oxides causing metal ions accumulation in the pickling solution. Disposal of the waste acid represents a critical issue for the hot-dip galvanizing industry in terms of environmental damage and high costs. Recovering of the main products by using an integrated process, with the perspective of a circular approach, could minimize the wastewater production, leading to reinvigorate this industrial sector economy. In this context, recovery of the metal ions mainly present in the pickling solution, such as Fe and Zn, becomes a critical issue. In this work, the reactive …

TK7885-7895Computer engineering. Computer hardwareChemical engineeringMetals recovery pickling solution reactive precipitation iron hydroxideMetals recovery Pickling solutions Iron hydroxideTP155-156Chemical Engineering Transactions
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Ni/Zn Layered Double Hydroxide (LDH) Micro/Nanosystems and Their Azorubine Adsorption Performance

2021

A membranous shaped Ni/Zn layered double hydroxide based nanohybrid was obtained using a low-cost template-free hydrothermal process at optimized growth conditions of 180 °C for 6 h. The synthesized nanohybrid was structurally, texturally and morphologically characterized using different techniques such as X-ray diffraction, FTIR, XPS spectroscopy, BET analysis and FESEM microscopy. The adsorption performance of our product was estimated through the Azorubine dye removal from synthetic wastewater. We therefore studied the synergic effects of Ni/Zn adsorbent dosage, contact time, pH, adsorbate concentration, stirring speed and temperature on the Azorubine adsorption efficiency. In this inves…

TechnologyLangmuirMaterials scienceQH301-705.5QC1-999Azorubinechemistry.chemical_compoundsymbols.namesakeAdsorptionSpecific surface areaGeneral Materials ScienceFreundlich equationBiology (General)QD1-999InstrumentationFluid Flow and Transfer ProcessesTPhysicsnanohybridProcess Chemistry and TechnologyGeneral EngineeringLangmuir adsorption modelEngineering (General). Civil engineering (General)AzorubineComputer Science ApplicationsChemistryNi/Zn layered double hydroxidechemistryadsorptionsymbolsHydroxideTA1-2040CarmoisineNuclear chemistryBET theoryApplied Sciences
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Grafting of (3-chloropropyl)-trimethoxy silane on halloysite nanotubes surface

2021

Modified halloysite nanotubes (HNTs-Cl) were synthesized by a coupling reaction with (3-chloropropyl) trimethoxysilane (CPTMS). The incorporation of chloro-silane onto HNTs surface creates HNTs-Cl, which has great chemical activity and is considered a good candidate as an active site that reacts with other active molecules in order to create new materials with great applications in chemical engineering and nanotechnology. The value of this work lies in the fact that improving the degree of grafting of chloro-silane onto the HNT’s surface has been accomplished by incorporation of HNTs with CPTMS under different experimental conditions. Many parameters, such as the dispersing media, the molar…

TechnologyMaterials scienceQH301-705.5QC1-999CPTMS020101 civil engineering02 engineering and technologyengineering.materialHalloysiteSettore CHIM/12 - Chimica Dell'Ambiente E Dei Beni Culturali0201 civil engineeringCatalysischemistry.chemical_compoundAdsorptionGRAFTINGGeneral Materials ScienceBiology (General)InstrumentationTriethylamineQD1-999Fluid Flow and Transfer ProcessesHALLOYSITE NANOTUBESGraftingHalloysite nanotubesProcess Chemistry and TechnologyTPhysicsGeneral Engineering021001 nanoscience & nanotechnologyGraftingEngineering (General). Civil engineering (General)SilaneComputer Science ApplicationsAmmonium hydroxideChemistrychemistryChemical engineeringengineeringSurface modificationTA1-20400210 nano-technology
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