team

Projekt Bez Nazwy 1 802x1024
Prof. PhD DSc Eng.

Katarzyna Siuzdak

project coordinator

Department of Physical Aspects of Ecoenergy 

Laboratory of Functional Materials

Institute of Fluid-Flow Machinery, POLAND

Projekt Bez Nazwy 1 802x1024
Prof. PhD DSc Eng.

Katarzyna Siuzdak

project coordinator

Department of Physical Aspects of Ecoenergy 

Laboratory of Functional Materials

Institute of Fluid-Flow Machinery, POLAND

  • Experience in fabrication and characterisation of nanomaterials and fabrication of thin films on conducting substrates acting as electrodes for energy conversion and storage devices as well as electrochemical sensors.
  • Rich experience in the fabrication procedure of different innovative surfaces, coatings and interfaces, i.e. anodisation procedure of Ti foil and Ti layers resulting in fabrication of the ordered titania nanotubes, fabrication of nanodimples as a support for gold nanoparticles, modification via doping with non-metal atoms, decoration with metal nanoparticles, laser treatment of the material surface.
  • During the optimisation procedure, I put a huge impact on using simple equipment, techniques that enable facile upscaling and fast optimisation. Such approaches lower costs of the overall fabrication strategy and facilitate its commercialisation.
  • Experience in fabrication and characterisation of nanomaterials and fabrication of thin films on conducting substrates acting as electrodes for energy conversion and storage devices as well as electrochemical sensors.
  • Rich experience in the fabrication procedure of different innovative surfaces, coatings and interfaces, i.e. anodisation procedure of Ti foil and Ti layers resulting in fabrication of the ordered titania nanotubes, fabrication of nanodimples as a support for gold nanoparticles, modification via doping with non-metal atoms, decoration with metal nanoparticles, laser treatment of the material surface.
  • During the optimisation procedure, I put a huge impact on using simple equipment, techniques that enable facile upscaling and fast optimisation. Such approaches lower costs of the overall fabrication strategy and facilitate its commercialisation.
Projekt Bez Nazwy 2 Scaled E1762682982971 829x1024
Prof. PhD

Rafael Martos Buoro

Department of CHemistry and Molecular Physics Laboratory 

for Thermal, Electroanalytical and Chemical Analysis of Solutions

Universidade de Sao Paulo, BRAZIL

Projekt Bez Nazwy 2 Scaled E1762682982971 829x1024
Prof. PhD

Rafael Martos Buoro

Department of CHemistry and Molecular Physics Laboratory 

for Thermal, Electroanalytical and Chemical Analysis of Solutions

Universidade de Sao Paulo, BRAZIL

  • Experience in fabrication and characterisation of nanomaterials and fabrication of thin films on conducting substrates acting as electrodes for electrochemical sensors.
  • Rich experience in the fabrication procedure in carbon composites with sustainable materials in preparation of carbon-based composites and sustainable media for metallic and polymeric nanomaterial synthesis.
  • Large experience in using electrochemical techniques with emphasis on electrochemical impedance spectroscopy for the characterization of electrochemical interfaces and sensing applications.
  • Experience in fabrication and characterisation of nanomaterials and fabrication of thin films on conducting substrates acting as electrodes for electrochemical sensors.
  • Rich experience in the fabrication procedure in carbon composites with sustainable materials in preparation of carbon-based composites and sustainable media for metallic and polymeric nanomaterial synthesis.
  • Large experience in using electrochemical techniques with emphasis on electrochemical impedance spectroscopy for the characterization of electrochemical interfaces and sensing applications.
projekt bez nazwy (3)
PhD

Diego Pozo-Ayuso

Chief Executive Officer

MicruX, Fluidic, S.L. (MICRUX), SPAIN

projekt bez nazwy (3)
PhD

Diego Pozo-Ayuso

Chief Executive Officer

MicruX, Fluidic, S.L. (MICRUX), SPAIN

  •  Microfluidic photolithographic manufacturing techniques.
  •  Biosensors applications and Point-of-Care technologies.
  • Characterization of solids material through structural characterization techniques by neutron beam and X-Ray spectroscopy.
  • Magnetics materials; metallic glass and nanocrystalline materials; polymers and composite materials.
  • Properties and processing. Synchrotron and neutron diffraction in materials science.
  •  Microfluidic photolithographic manufacturing techniques.
  •  Biosensors applications and Point-of-Care technologies.
  • Characterization of solids material through structural characterization techniques by neutron beam and X-Ray spectroscopy.
  • Magnetics materials; metallic glass and nanocrystalline materials; polymers and composite materials.
  • Properties and processing. Synchrotron and neutron diffraction in materials science.
projekt bez nazwy (4)
PhD

Victor Diculescu

Laboratory of Functional Nanostructures

National Institute of Materials Physics, ROMANIA

projekt bez nazwy (4)
PhD

Victor Diculescu

Laboratory of Functional Nanostructures

National Institute of Materials Physics, ROMANIA

  • Development of electrochemical (bio)sensor with DNA, proteins for detection of biomarkers and oxidative stress; physical and chemical immobilisation strategies for biomolecules.
  • Development of electrode materials for (bio)sensing applications.
  • Microfluidic devices on porous supports with integrated electrospun polymeric fiber electrodes; electrochemical, spectroscopic and microscopic characterizations; electroanalysis.
  • Development of electrochemical (bio)sensor with DNA, proteins for detection of biomarkers and oxidative stress; physical and chemical immobilisation strategies for biomolecules.
  • Development of electrode materials for (bio)sensing applications.
  • Microfluidic devices on porous supports with integrated electrospun polymeric fiber electrodes; electrochemical, spectroscopic and microscopic characterizations; electroanalysis.