0000000000249716

AUTHOR

Svetlana Vihodceva

showing 7 related works from this author

Identifying Iron-Bearing Nanoparticle Precursor for Thermal Transformation into the Highly Active Hematite Photo-Fenton Catalyst

2020

Funding: This reseach was funded by the European Regional Development Fund within the Activity 1.1.1.2 “Post-doctoral Research Aid” of the Specific Aid Objective 1.1.1 “To increase the research and innovative capacity of scientific institutions of Latvia and the ability to attract external financing, investing in human resources and infrastructure” of the Operational Programme “Growth and Employment” (No. 1.1.1.2/VIAA/1/16/157).

inorganic chemicalsPhoto-FentonGoethiteMaterials scienceHematiteNanoparticlelcsh:Chemical technology010402 general chemistry01 natural sciences7. Clean energyCatalysishematiteCatalysislcsh:Chemistryphoto-Fenton:NATURAL SCIENCES:Physics [Research Subject Categories]Goethitegoethitelcsh:TP1-1185Reactivity (chemistry)Physical and Theoretical ChemistryAqueous solutionWater purification010405 organic chemistryHematite0104 chemical sciencesAmorphous solidlcsh:QD1-999Chemical engineering13. Climate actionvisual_artvisual_art.visual_art_mediumwater purificationVisible spectrumCatalysts
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Antibacterial Activity of Positively and Negatively Charged Hematite (α-Fe2O3) Nanoparticles to Escherichia coli, Staphylococcus aureus and Vibrio fi…

2021

This research and work has been supported by the European Regional Development Fund within the Activity 1.1.1.2 “Post-doctoral Research Aid” of the Specific Aid Objective 1.1.1 (i.e., “to increase the research and innovative capacity of scientific institutions of Latvia and the ability to attract external financing, investing in human resources and infrastructure”) of the Operational Programme “Growth and Employment” (No. 1.1.1.2/VIAA/2/18/331).

surface chargeGeneral Chemical EngineeringMicrobeJ02 engineering and technologymedicine.disease_causeArticlehematite<i>α</i>-Fe<sub>2</sub>O<sub>3</sub> nanoparticleslcsh:ChemistryAgar plate03 medical and health sciences:NATURAL SCIENCES:Physics [Research Subject Categories]medicineBioluminescenceGeneral Materials ScienceEscherichia colinano-bio interactions030304 developmental biology0303 health sciencesα-Fe2O3 nanoparticlesenvironmental safetybiologyChemistryBioluminescent bacteria021001 nanoscience & nanotechnologybiology.organism_classificationVibriohydrothermal synthesisantibacteriallcsh:QD1-999confocalStaphylococcus aureus0210 nano-technologyAntibacterial activityBacteriaNuclear chemistryNanomaterials
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Sol-gel auto-combustion synthesis of Ca2Fe2O5 brownmillerite nanopowders and thin films for advanced oxidation photoelectrochemical water treatment i…

2019

Abstract This study describes a straightforward Ca2Fe2O5 brownmillerite nanopowder and thin film synthesis by the water-based sol-gel auto-combustion method. The material characterization results confirmed the phase pure narrow bandgap Ca2Fe2O5 nanoparticle formation. The surface area of synthesized nanopowder was 13.55 m2/g. Powders at loading 1 g/l exhibit high visible light photocatalytic activity by degrading 10 mg/l methylene blue in water in 120 min confirmed by total organic carbon studies. The high visible light photocatalytic activity is related to Ca2Fe2O5 narrow band gap and high reduction potential of its conduction band which triggers the formation of superoxide radical ∙ O 2 -…

Materials scienceBand gapProcess Chemistry and TechnologyNanoparticle02 engineering and technology010501 environmental sciencesengineering.material021001 nanoscience & nanotechnology01 natural sciencesPollutionReaction rate constantChemical engineeringPhotocatalysisengineeringChemical Engineering (miscellaneous)BrownmilleriteThin film0210 nano-technologyWaste Management and Disposal0105 earth and related environmental sciencesVisible spectrumSol-gelJournal of Environmental Chemical Engineering
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Antimicrobial Properties of the Modified Cotton Textiles by the Sol-Gel Technology

2015

Comparison of the antimicrobial properties of textiles with amorphous coatings containing Zn and Si obtained by the sol-gel technology against microorganismsPseudomonas fluorescens,Saccharomyces cerevisae,Trichoderma viridethat can cause cotton textile destruction was made. Modified textile were evaluated using scanning electron microscopy, energy dispersive x-ray spectroscopy. Investigation of antimicrobial properties of the cotton fabric samples treated with different zinc acetate dihydrate concentration sols and various thermal post-treatments was made. Strong inhibition of microbial growth was detected for all cotton textile samples treated via sol-gel method according all tests microor…

Materials scienceTextilebiologybusiness.industryScanning electron microscopeMicroorganismTrichoderma virideGeneral EngineeringPseudomonas fluorescensBacterial growthAntimicrobialbiology.organism_classificationComposite materialbusinessNuclear chemistrySol-gelAdvanced Materials Research
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Rapid Catalytic Water Disinfection from Earth Abundant Ca 2 Fe 2 O 5 Brownmillerite

2021

Water disinfection is a crucial challenge for humanity. Approaches that are effective, cheap, environmentally friendly, and do not promote gene exchange between bacteria are urgently required. Strongly oxidizing radicals are highly promising to achieve this as they lead to bacterial activation at high efficiencies. However, sources to consistently generate these radicals are limited to high energy UV/H2O2 treatments requiring a large energy input. Here the use of abundant, cheap, brownmillerite (Ca2Fe2O5) is demonstrated as an efficient radical generation material under dark conditions, showing a seven order of magnitude decrease in bacterial concentration over 10 min. This decrease is attr…

Renewable Energy Sustainability and the EnvironmentChemistryRadicalengineering.materialPulp and paper industryEnvironmentally friendlyCatalysischemistry.chemical_compoundOxidizing agentengineeringBrownmilleriteHydroxyl radicalWater disinfectionSludgeGeneral Environmental ScienceAdvanced Sustainable Systems
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Evaluation of dermal toxicity of antibacterial cotton textile coated by sol-gel technology

2017

AbstractThis paper reports about cotton textile modification by sol-gel technology with the purpose of obtaining antibacterial properties, evaluation of antibacterial properties and dermal toxicity tests of cotton textile with Zn and Si coating. Antibacterial properties evaluation against pathogenic microorganisms Pseudomonas aeruginosa, Staphylococcus aureus, and Escherichia coli made using the Parallel streak method in accordance with ATCC147 standard. For more specific evaluation of the coated textile, in vitro cytotoxicity test with epidermal HaCat cells was done. It is concluded that the coatings containing Zn and Si obtained by the sol-gel technology can impart antibacterial propertie…

TextilePolymers and PlasticsMaterials Science (miscellaneous)Microorganism02 engineering and technologyengineering.materialmedicine.disease_cause01 natural sciencesIndustrial and Manufacturing EngineeringCoating0103 physical sciencesmedicineFood scienceComposite materialEscherichia coli010302 applied physicsintegumentary systembiologyChemistrybusiness.industryPathogenic bacteria021001 nanoscience & nanotechnologybiology.organism_classificationHaCaTStaphylococcus aureusengineering0210 nano-technologyGeneral Agricultural and Biological SciencesbusinessBacteriaThe Journal of The Textile Institute
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Straightforward Approach for Preparing Durable Antibacterial ZnO Nanoparticle Coatings on Flexible Substrates

2022

Flexible antibacterial materials have gained utmost importance in protection from the distribution of bacteria and viruses due to the exceptional variety of applications. Herein, we demonstrate a readily scalable and rapid single-step approach for producing durable ZnO nanoparticle antibacterial coating on flexible polymer substrates at room temperature. Substrates used are polystyrene, poly(ethylene-co-vinyl acetate) copolymer, poly(methyl methacrylate), polypropylene, high density polyethylene and a commercial acrylate type adhesive tape. The deposition was achieved by a spin-coating process using a slurry of ZnO nanoparticles in toluene. A stable modification layer was obtained when tolu…

PolymersnanoparticleOrganic ChemistryE. coliPharmaceutical Sciencecoating:NATURAL SCIENCES::Physics [Research Subject Categories]S. aureus540ZnO; nanoparticle; coating; flexible substrate; antibacterial; <i>E. coli</i>; <i>S. aureus</i>Anti-Bacterial AgentsAnalytical Chemistryantibacterialflexible substrateChemistry (miscellaneous)Drug DiscoveryEscherichia coliSolventsZnOPolystyrenesMolecular MedicineZinc OxidePhysical and Theoretical ChemistryToluene
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