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Fakultät für Chemie
Raum
S07 S06 D31
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Wissenschaftliche/r Mitarbeiter/in, Prof. Barcikowski
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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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Identification of the main mixing process in the synthesis of alloy nanoparticles by laser ablation of compacted micropowder mixturesIn: Journal of Materials Science Jg. 57 (2022) Nr. 4, S. 3041 - 3056
ISSN: 1573-4803; 0022-2461Online Volltext: dx.doi.org/ (Open Access) -
Laser Ablation of NiFe2O4 and CoFe2O4 NanoparticlesIn: Nanomaterials Jg. 12 (2022) Nr. 11,
ISSN: 2079-4991Online Volltext: dx.doi.org/ (Open Access) -
Comparing the Activity of Complex Solid Solution Electrocatalysts Using Inflection Points of Voltammetric Activity Curves as Activity DescriptorsIn: ACS Catalysis Jg. 11 (2021) Nr. 3, S. 1014 - 1023
ISSN: 2155-5435Online Volltext: dx.doi.org/ -
Synthesis of gold, platinum, and gold-platinum alloy nanoparticle colloids with high-power megahertz-repetition-rate lasers : The importance of the beam guidance methodIn: Applied Nanoscience Jg. 11 (2021) Nr. 4, S. 1303 - 1312
ISSN: 2190-5517; 2190-5509Online Volltext: dx.doi.org/ (Open Access) -
Laser Fragmentation-Induced Defect-Rich Cobalt Oxide Nanoparticles for Electrochemical Oxygen Evolution ReactionIn: ChemSusChem Jg. 13 (2020) Nr. 3, S. 520 - 528
ISSN: 1864-564X; 1864-5631Online Volltext: dx.doi.org/ Online Volltext (Open Access) -
Laser fragmentation synthesis of colloidal bismuth ferrite particlesIn: Nanomaterials Jg. 10 (2020) Nr. 2, S. 359
ISSN: 2079-4991Online Volltext: dx.doi.org/ Online Volltext (Open Access) -
Nanoparticles engineering by pulsed laser ablation in liquids: Concepts and applicationsIn: Nanomaterials: Open access journal Jg. 10 (2020) Nr. 11,
ISSN: 2079-4991Online Volltext: dx.doi.org/ (Open Access) -
The effect of downstream laser fragmentation on the specific surface area and photoelectrochemical performance of barium tantalum oxynitrideIn: Applied Surface Science Jg. 510 (2020) S. 145429
ISSN: 0169-4332; 1873-5584Online Volltext: dx.doi.org/ -
Ablation target cooling by maximizing the nanoparticle productivity in laser synthesis of colloidsIn: Applied Surface Science Jg. 466 (2019) S. 647 - 656
ISSN: 0169-4332Online Volltext: dx.doi.org/ -
Improved Photoelectrochemical Water Splitting of CaNbO₂N Photoanodes by CoPi Photodeposition and Surface PassivationIn: Journal of Physical Chemistry C: Nanomaterials and Interfaces Jg. 123 (2019) Nr. 2, S. 1059 - 1068
ISSN: 1932-7447; 1932-7455Online Volltext: dx.doi.org/ (Open Access) -
Kinetically-controlled laser-synthesis of colloidal high-entropy alloy nanoparticlesIn: RSC Advances Jg. 9 (2019) Nr. 32, S. 18547 - 18558
ISSN: 2046-2069Online Volltext: dx.doi.org/ Online Volltext (Open Access) -
Oxynitride thin films versus particle-based photoanodes : A comparative study for photoelectrochemical solar water splittingIn: ACS Applied Energy Materials Jg. 2 (2019) Nr. 1, S. 754 - 763
ISSN: 2574-0962Online Volltext: dx.doi.org/ (Open Access) -
Adjusting the catalytic properties of cobalt ferrite nanoparticles by pulsed laser fragmentation in water with defined energy doseIn: Scientific Reports Jg. 7 (2017) Nr. 1, S. 13161
ISSN: 2045-2322Online Volltext: dx.doi.org/ Online Volltext (Open Access) -
Direct Integration of Laser-Generated Nanoparticles into Transparent Nail Polish: The Plasmonic "Goldfinger"In: Industrial and Engineering Chemistry Research Jg. 56 (2017) Nr. 12, S. 3291 - 3296
ISSN: 1520-5045; 0888-5885Online Volltext: dx.doi.org/ -
Fully-automatic benchtop machine for the production of nanoparticle suspensionsIn: Conference proceedings: NANOCON 2021 / 13th International Conference on Nanomaterials "Research & Application", 20 - 22 October 2021, Brno, Czech Republic 2021, S. 405 - 410
ISBN: 978-80-88365-00-6Online Volltext: dx.doi.org/ (Open Access) -
Laser synthesis of metallic and oxidic transition metal, multi-element nanoparticles for catalytic applicationsDuisburg, Essen (2019) 272 Seiten
Online Volltext: dx.doi.org/ Online Volltext (Open Access)