Search results for "Electrolyte"

showing 10 items of 746 documents

Impedance investigation of BaCe0.85Y0.15O3-delta properties for hydrogen conductor in fuel cells

2012

International audience; The influence of the sintering conditions on the electrochemical properties of the proton conducting electrolyte BaCe0.85Y0.15O3-delta (BCY15) and Ni - based BCY15 cermet anode for application in high temperature proton conducting fuel cell are investigated by electrochemical impedance spectroscopy. The results show that at lower sintering temperatures due to the formation of parasitic Y2O3 phase an increase of both the electrolyte and electrode resistances is observed. This effect is strongly reduced by enhancement of the sintering temperature. The obtained BCY15 conductivity (sigma = 2.5x10(-2) S/cm at 700 degrees C) is comparable with that of the best proton condu…

BaCeO3[CHIM.MATE] Chemical Sciences/Material chemistryCeramicsBCY15[ CHIM.MATE ] Chemical Sciences/Material chemistryOxides[CHIM.MATE]Chemical Sciences/Material chemistryProtonElectrochemical impedance spectroscopyAnodeProton-conducting electrolyte
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Polyelectrolyte properties of filamentous biopolymers and their consequences in biological fluids.

2014

Anionic polyelectrolyte filaments are common in biological cells. DNA, RNA, the cytoskeletal filaments F-actin, microtubules, and intermediate filaments, and polysaccharides such as hyaluronan that form the pericellular matrix all have large net negative charge densities distributed over their surfaces. Several filamentous viruses with diameters and stiffnesses similar to those of cytoskeletal polymers also have similar negative charge densities. Extracellular protein filaments such collagen, fibrin and elastin, in contrast, have notably smaller charge densities and do not behave as highly charged polyelectrolytes in solution. This review summarizes data that demonstrate generic counterion-…

Bacteriophage Pf1Intermediate Filamentsmacromolecular substancesMatrix (biology)ArticleProtein filamentElectrolytesBiopolymersMicrotubuleVimentinHyaluronic AcidCytoskeletonIntermediate filamentActinCytoskeletonchemistry.chemical_classificationChemistryGeneral ChemistryPolymerDNACondensed Matter PhysicsPolyelectrolyteActinsBody FluidsBiochemistryBiophysicsSoft matter
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<title>Functional models of electrochromic devices: cycling capacity and degradation</title>

1997

Electrical transfer and diffusion of ions and the irreversibility of ion and electron processes in heterojunctions are responsible for degradation of ionic devices. These processes for electrochromic devices (ECD) determine the cycling capacity and lifetime. The basic problem here is how to match the electrochemical parameters (including chemical potential) of heterojunction. The experiments had been carried out on ECD based on system: (phi) - -(phi) , where AAH is solid electrolyte based on antimony acid hydrates. The cycling capacity and degradation processes of ECD are investigated by electro-optical and electro-chemical spectroscopy. The analysis of experimental data are based on assump…

Battery (electricity)Materials scienceChemical engineeringElectrodeAnalytical chemistryIonic bondingHeterojunctionElectrolyteElectrochemistryElectrochromic devicesIonSPIE Proceedings
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Heat-to-current conversion of low-grade heat from a thermocapacitive cycle by supercapacitors

2015

Thermal energy is abundantly available, and especially low-grade heat is often wasted in industrial processes as a by-product. Tapping into this vast energy reservoir with cost-attractive technologies may become a key element for the transition to an energy-sustainable economy and society. We propose a novel heat-to-current converter which is based on the temperature dependence of the cell voltage of charged supercapacitors. Using a commercially available supercapacitor, we observed a thermal cell-voltage rise of around 0.6 mV K-1 over a temperature window of 0 degrees C to 65 degrees C. Within our theoretical model, this can be used to operate a Stirling-like charge-voltage cycle whose eff…

Battery (electricity)Materials scienceElectrolyteFLOW-ELECTRODESCARBONTaverneThermalThermoelectric effectEnvironmental ChemistryBATTERYTHERMAL-ENERGYSupercapacitorMoving partsELECTROCHEMICAL SYSTEMRenewable Energy Sustainability and the Environmentbusiness.industryDOUBLE-LAYER CAPACITORSElectrical engineeringPollutionEngineering physicsDEIONIZATIONNuclear Energy and EngineeringCurrent (fluid)businessThermal energyGENERATIONEnergy & Environmental Science
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Improved composite materials for rechargeable lithium metal polymer batteries

1999

Abstract The performance of several polymer electrolytes for lithium metal batteries for electric vehicle applications are reported. The best performing electrolyte is the composite PEO 20 LiCF 3 SO 3 –γLiAlO 2 , which was prepared by a solvent-free procedure. It showed coulombic efficiency values of the lithium deposition–stripping process of 94%–96%. Electrochemical tests of lithium polymer battery (LPB) prototypes based on a 3 V LiMn 2 O 4 composite cathode material laminated together with the PEO 20 LiCF 3 SO 3 –γLiAlO 2 electrolyte gave promising results for electric vehicle applications. Even under non-optimized battery design, the prototypes delivered, at the C/3 rate and at 94°C, 40…

Battery (electricity)Materials scienceLithium vanadium phosphate batteryRenewable Energy Sustainability and the EnvironmentComposite numberEnergy Engineering and Power Technologychemistry.chemical_elementLithium polymer batteryElectrolyteElectrochemistrychemistryLithiumElectrical and Electronic EngineeringPhysical and Theoretical ChemistryComposite materialFaraday efficiency
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<title>Performance problems of electrochromic coatings</title>

2003

The performance is actual problem of electrochromic coatings. The service and shelf life and cycling capacity are main performance characteristics. By solid-state ionics point of view any electrochromic cell based on phenomena with ion insertion - extraction processes is functioning as solid-state rechargeable battery. The main performance characteristics of electrochromic cells are similar. Performance of electrochromic coatings based on amorphous WO3 films and protons conducting electrolytes is limited by reversibility of ion insertion-extraction reactions, which causes degradation of cell components. The migration of water in the cell and hydration together with ion insertion-extraction …

Battery (electricity)Materials scienceOptical coatingChemical engineeringchemistryElectrochromismElectrodeForensic engineeringchemistry.chemical_elementElectrolyteTungstenAmorphous solidIonSPIE Proceedings
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Composite polymer electrolytes with improved lithium metal electrode interfacial properties: II. Application in rechargeable batteries

1998

The application of a liquid-free, ceramic-added composite polymer electrolyte in a Li/LiMn{sub 2}O{sub 4} rechargeable battery is presented and discussed. As expected by the high stability of the electrolyte toward the lithium metal anode, the battery has promising characteristics in terms of reliability and cyclability.

Battery (electricity)Materials scienceRenewable Energy Sustainability and the EnvironmentInorganic chemistryElectrolyteCondensed Matter PhysicsLithium aluminateEnergy storageSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsAnodechemistry.chemical_compoundchemistryChemical engineeringElectrodeMaterials ChemistryElectrochemistryFast ion conductorTrifluoromethanesulfonate
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Utilization of waste sodium sulfate from battery chemical production in neutral electrolytic pickling

2021

Abstract Several industrial activities produce metal sulfates, which are controlled by strict limitations for wastewater concentrations of sulfate. One emerging area where these activities occur is the production of lithium-ion battery chemicals in which sodium sulfates are formed because of cathode precursor co-precipitation. Several solutions for sulfate removal exist, but one option is to reuse the sulfate side stream in other processes to increase circular economy and atom efficiency. In this paper, the reuse of sodium sulfate solution in a steel industry pickling solution is considered. Neutral electrolytic pickling experiments were carried out to compare the pickling behavior of the e…

Battery (electricity)Renewable Energy Sustainability and the EnvironmentStrategy and ManagementMetal ions in aqueous solutionSodiumInorganic chemistrychemistry.chemical_elementElectrolyteIndustrial and Manufacturing Engineeringchemistry.chemical_compoundchemistryReagentPicklingSodium sulfateSulfateGeneral Environmental ScienceJournal of Cleaner Production
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Assessing the effectiveness of Byssochlamys nivea and Scopulariopsis brumptii in pentachlorophenol removal and biological control of two Phytophthora…

2016

Bioremediation and biological-control by fungi have made tremendous strides in numerous biotechnology applications. The aim of this study was to test Byssochlamys nivea and Scopulariopsis brumptii in sensitivity and degradation to pentachlorophenol (PCP) and in biological-control of Phytophthora cinnamomi and Phytophthora cambivora. B. nivea and S. brumptii were tested in PCP sensitivity and degradation in microbiological media while the experiments of biological-control were carried out in microbiological media and soil. The fungal strains showed low PCP sensitivity at 12.5 and 25 mg PCP L(-1) although the hyphal size, fungal mat, patulin, and spore production decreased with increasing PCP…

Behavior and SystematicPhytophthora0106 biological sciencesPentachlorophenolEvolutionByssochlamysMicrobial Sensitivity TestsPlant Science010501 environmental sciencesPhytophthora cinnamomiFagaceae01 natural sciencesMicrobiologyPatulinchemistry.chemical_compoundOomycetePhytophthora cambivoraGeneticPlant pathogenGeneticsPest Control BiologicalEcology Evolution Behavior and SystematicsPlant Diseases0105 earth and related environmental sciencesByssochlamysEcologybiologyfungiTemperatureFungifood and beveragesbiology.organism_classificationSurvival AnalysisEcology Evolution Behavior and SystematicSporePentachlorophenolPatulinInfectious DiseaseschemistryScopulariopsisScopulariopsisMicrobial InteractionsEnvironmental PollutantsPhytophthoraBioremediationElectrolyte Leakage Assay010606 plant biology & botany
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Über Umsetzungen an Poly-p-lithiumstyrol 2. Mitt. Derivate des poly-p-vinyl-di- und Triphenylmethans

1959

Das kurzlich von uns beschriebene Poly-p-lithiumstyrol stellt eine sehr reaktionsfahige makromolekulare metallorganische Verbindung dar. Es wird uber einige Umsetzungen mit Carbonylverbindungen berichtet. Die Reaktion mit Benzaldehyd und einigen p-substituierten Benzaldehyden fuhrt mit hohen Umsetzungsgraden zu Polyvinyldiphenylmethylcarbinolen. Die Reaktion mit Benzophenon liefert Polyvinyltriphenylmethylcarbinol. Diese Verbindung ist in konz. Schwefelsaure loslich als polymeres Analogon des Triphenylmethylkations, was aus der Untersuchung der Absorptionsspektren folgt. Mit MICHLERS Keton last sich ein polymeres Derivat des Malachitgruns darstellen, dessen spektroskopische, Untersuchung in…

Benzaldehydechemistry.chemical_classificationchemistry.chemical_compoundTriphenylmethaneKetonechemistryPolymer chemistryBenzophenoneAlcoholMalachite greenDerivative (chemistry)PolyelectrolyteDie Makromolekulare Chemie
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