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Baner strony
Katedra Chemii Nieorganicznej i Analitycznej
Katedra Chemii Nieorganicznej i Analitycznej
Katedra Chemii Nieorganicznej i Analitycznej
  • Research Teams
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  • Patents, Patent Applications, and Trademarks
lab

Advanced electrode materials

  • Preparation of electrode materials and their modifications with various materials, including nanomaterials and conductive polymers
  • Electrochemical deposition of metals and alloys
  • Electroanalytical and electrocatalytic applications of electrodes Investigation of the properties of conductive phases of electrodes by atomic force microscopy (AFM) and electrochemical scanning tunneling microscopy (ESTM).
  • Voltammetric tests and determination of selected pesticides and biologically active compounds on Hg (Ag) FE and BDDE electrodes.
  • Modified electrodes, their preparation, structure, mechanisms of action.
  • Conducting polymers of various types: polyaniline PEDOT, Nafion, redox conductive polymers.
  • Application of modified electrodes in the electroanalysis of biologically active compounds, e.g. neurotransmitters.
  •  Electrodes with immobilized enzymes as bioelectrochemical sensors.
  • Electrocatalysis on modified conductive phases.
  • Investigation of the mechanisms and kinetics of electrode processes with the use of classical electrochemical methods and electrochemical impedance spectroscopy.
  • Studies of selected redox systems (ferrocenes, nitroxyl radicals)
  • Modifications of the surface of the conductive phases of the electrodes.
  • Modifications of the surface of materials by producing thin oxide layers by the sol-gel method and by electro-oxidation.
  • Modifications of the surface of materials by electrolytic production of single-component and multi-component metallic coatings.
  • Electrode characteristics (microscopic and electrochemical) 

BIOmaterials and corrosion

  • Research on anti-corrosive properties of coatings (oxide, metallic, carbon, hydroxyapatite);
  • Corrosion tests of metallic biomaterials (austenitic steels, titanium and titanium alloys, cobalt alloys and others);
  • Biomaterials (steel, titanium, alloys, ceramics)
  • Biomedical Coatings (TiO2, HAP, DLC)
  • Surface modification (sol-gel, electro-oxidation, electrodeposition, nanoparticle deposition)
  • Surface characteristics (composition, morphology, topography, coating thickness)
  • Corrosion tests (accelerated corrosion tests, immersion tests)
  • Properties of electrocatalytic metallic coatings in electrooxidation processes of organic compounds;

electrochemistry of soft interface

  • Electrochemistry for miniaturization and miniaturization for electrochemistry
  • 3D printing for electrochemical applications
  • Electrochemically assisted deposition of materials
  • Polarizable liquid-liquid phase boundaries Sensors for applications in consumer quality control
  • Modification and characterization of phase boundaries
  • Electrochemistry of (bio) membranes
  • Electrochemical water treatment technologies
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