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Fakultät für Chemie - NanoEnergieTechnikZentrum (NETZ)
Anschrift
Carl-Benz-Str. 199
47057 Duisburg
47057 Duisburg
Raum
LN 4.13
Telefon
Funktionen
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Wissenschaftliche/r Mitarbeiter/in, Prof. Andronescu
Aktuelle Veranstaltungen
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WiSe 2025
Vergangene Veranstaltungen (max. 10)
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SoSe 2025
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WiSe 2024
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SoSe 2024
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SoSe 2023
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SoSe 2022
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SoSe 2021
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WiSe 2020
Die folgenden Publikationen sind in der Online-Universitätsbibliographie der Universität Duisburg-Essen verzeichnet. Weitere Informationen finden Sie gegebenenfalls auch auf den persönlichen Webseiten der Person.
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Cellulose-Based Adsorbents for Decontamination of Multi-Pollutant Contaminated WatersIn: Chemie - Ingenieur - Technik (CIT), Jg. 97, 2025, Nr. 10, S. 953 – 963DOI (Open Access)
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Conversion of acrylic/wool fibers to N-doped carbon materials for adsorption and electrochemical oxygen reduction to hydrogen peroxideIn: Surfaces and Interfaces, Jg. 69, 2025, 106756DOI (Open Access)
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Formation of all-biopolymer-based composites with cellulose as the main componentIn: RSC Applied Interfaces, Jg. 2, 2025, Nr. 2, S. 508 – 520DOI (Open Access)
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Polyacrylonitrile-based porous polymer spheres and their conversion to N-doped carbon materials for adsorption and electrocatalysisIn: Journal of Applied Polymer Science, Jg. 141, 2024, Nr. 22, e55438DOI (Open Access)
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N-Doped porous carbons obtained from chitosan and spent coffee as electrocatalysts with tuneable oxygen reduction reaction selectivity for H₂O₂ generationIn: RSC Advances, Jg. 13, 2023, Nr. 33, S. 22777 – 22788DOI (Open Access)
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Preparation of N-doped carbon materials from cellulose:chitosan blends and their potential application in electrocatalytic oxygen reductionIn: Polymer Bulletin, Jg. 80, 2023, Nr. 7, S. 7827 – 7845DOI (Open Access)
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Cotton as Precursor for the Preparation of Porous Cellulose AdsorbersIn: Macromolecular Materials and Engineering, Jg. 306, 2021, Nr. 5, S. 2000778DOI (Open Access)
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A swift technique to hydrophobize graphene and increase its mechanical stability and charge carrier densityIn: npj 2D Materials and Applications, Jg. 4, 2020, Nr. 1, 11DOI (Open Access)
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Cellulose/chitosan porous spheres prepared from 1-butyl-3-methylimidazolium acetate/dimethylformamide solutions for Cu²⁺ adsorptionIn: Carbohydrate Polymers, Jg. 237, 2020, 116135
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Development of a bone substitute material based on additive manufactured Ti6Al4V alloys modified with bioceramic calcium carbonate coating : Characterization and antimicrobial propertiesIn: Ceramics International, Jg. 46, 2020, Nr. 16, Part A, S. 25661 – 25670
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Factors Affecting the Nonsolvent-Induced Phase Separation of Cellulose from Ionic Liquid-Based SolutionsIn: ACS Omega, Jg. 5, 2020, Nr. 42, S. 27314 – 27322DOI, Online Volltext (Open Access)
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One-step preparation of porous cellulose/chitosan macro-spheres from ionic liquid-based solutionsIn: Cellulose, Jg. 27, 2020, S. 5689 – 5705
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Adhesion, proliferation, and osteogenic differentiation of human mesenchymal stem cells on additively manufactured Ti6Al4V alloy scaffolds modified with calcium phosphate nanoparticlesIn: Colloids and Surfaces B: Biointerfaces, Jg. 176, 2019, S. 130 – 139
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Functionalization of titania nanotubes with electrophoretically deposited silver and calcium phosphate nanoparticles : Structure, composition and antibacterial assayIn: Materials Science and Engineering C: Biomimetic and Supramolecular Systems, Jg. 97, 2019, S. 420 – 430
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Photocatalytic and magnetic porous cellulose macrospheres for water purificationIn: Cellulose, Jg. 26, 2019, Nr. 7, S. 4563 – 4578
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Ionic Liquid-Based Route for the Preparation of Catalytically Active Cellulose-TiOIn: Industrial and Engineering Chemistry Research (I&EC research), Jg. 56, 2017, Nr. 11, S. 2967 – 2975
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Photocatalytic and Magnetic Porous Cellulose-Based Nanocomposite Films Prepared by a Green MethodIn: ACS Sustainable Chemistry & Engineering, Jg. 5, 2017, Nr. 11, S. 9858 – 9868
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Correlation between surface properties and wettability of multi-scale structured biocompatible surfacesIn: IOP Conference Series: Materials Science and Engineering, Jg. 98, 2015, S. 012026DOI (Open Access)
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Nano-hydroxyapatite-coated metal-ceramic composite of iron-tricalcium phosphate : Improving the surface wettability, adhesion and proliferation of mesenchymal stem cells in vitroIn: Colloids and Surfaces B: Biointerfaces, Jg. 135, 2015, S. 386 – 393
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Routes towards catalytically active TiO2 doped porous celluloseIn: RSC Advances, Jg. 5, 2015, Nr. 45, S. 35866 – 35873DOI (Open Access)
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Two step and one step preparation of porous nanocomposite cellulose membranes doped with TiO2In: RSC Advances, Jg. 5, 2015, Nr. 107, S. 88070 – 88078DOI (Open Access)
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Erratum to: Wettability of Thin Silicate-Containing Hydroxyapatite Films formed by RF-Magnetron SputteringIn: Russian Physics Journal, Jg. 56, 2014, Nr. 11, S. 1318
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Stable zinc oxide nanoparticle dispersions in ionic liquidsIn: Journal of Nanoparticle Research, Jg. 16, 2014, S. 2341
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Wettability of Thin Silicate-Containing Hydroxyapatite Films Formed by RF-Magnetron SputteringIn: Russian Physics Journal, Jg. 56, 2014, Nr. 10, S. 1163 – 1169
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Influence of the cation alkyl chain length of imidazolium-based room temperature ionic liquids on the dispersibility of TiO2 nanopowdersIn: Journal of Nanoparticle Research, Jg. 15, 2013, Nr. 3, 1463
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Preparation of a silicate-containing hydroxyapatite-based coating by magnetron sputtering : structure and osteoblast-like MG63 cells in vitro studyIn: RSC Advances, Jg. 3, 2013, Nr. 28, S. 11240 – 11246
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Wettability of surface of silicate-containing hydroxyapatite-based coating prepared by rf-magnetron sputteringIn: Izvestija vysšich učebnych zavedenij: Fizika, Jg. 10, 2013, Nr. 10, S. 54 – 59
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Dispersions of silica nanoparticles in ionic liquids investigated with advanced rheologyIn: Journal of Nanoparticle Research, Jg. 14, 2012, Nr. 2, S. 651
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Dispersions of various titania nanoparticles in two different ionic liquidsIn: Industrial and Engineering Chemistry Research (I&EC research), Jg. 51, 2012, Nr. 25, S. 8425 – 8433
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Functional porous cellulose-based nanocomposites by phase separation from ionic liquid based solventsIn: ACS National Meeting / American Chemical Society. Washington: American Chemical Society (ACS), Jg. 256, 2018, S. 599