dr Mateusz Kempiński

Mikroskopia i Spektroskopia Wysokopróżniowa
Stopień naukowy: 
Ph.D.in Physics, 2008, A.Mickiewicz University, Poznań, Poland
Zainteresowania naukowe: 
  • Physics of carbon-based materials and nanostructures (graphite, graphene, fullerenes, CNTs, active carbons) involving: formation of carbon nanostructures, charge transport and spin localization, low temperature behaviour, surface and interfacial phenomena,  adsorption phenomena in porous structures
  • Experimental techniques: ultra-high vacuum surface analysis and sample preparation techniques (scanning probe microscopy, photoelectron spectroscopy, thin films deposition, surface nanostructurization), conductivity measurements, scanning and transmission , electron microscopy, electron spin resonance, contact angle measurements
Wybrane publikacje: 
  • W. Kempiński, D. Markowski, M. Kempiński, M. Śliwińska-Bartkowiak, Charge carrier transport control in activated carbon fibers, Carbon 2013, 57, 533-536.
  • K. Buchta, C. Schmidt, G. Trykowski, S. Biniak, M. Kempinski, T. Lucinski, Magnetization Reversal in Cobalt Nanocolumn Structures Obtained by Glancing Angle Deposition, Acta Physica Polonica A 2012, 121, 1222-1224.
  • M. Śliwinska–Bartkowiak, H. Drozdowski, M. Kempinski, M. Jazdzewska, Y. Long, J. C. Palmer, K. E. Gubbins, Structural analysis of water and carbon tetrachloride adsorbed in activated carbon fibres, Physical Chemistry Chemical Physics 2012, 14, 7145-7153.
  • B. Strzelczyk, W. Kempiński, M. Wróblewski, B. Susła, J. Piekoszewski, Z. Werner, M. Barlak, J. Martineka, M. Błaszyk, S. Maćkowiak, Z. Trybuła, S. Łoś, M. KempińskiLow Temperature STM/STS, Standard AFM and XPS of Local MgBx Phases, Acta Physica Polonica A 2010, 118(2), 417–419.
  • S. Lijewski, M. Wencka, S. K. Hoffmann, M. Kempinski, W. Kempiński, M. Śliwinska–Bartkowiak, Electron Spin Relaxation and Quantum Localization in Carbon Nanoparticle: Electron Spin Echo Studies, Physical Review B 2008, 77, 014304.

Publikacje

Strain- and Adsorption-Dependent Electronic States and Transport or Localization in Graphene

Springer Proceedings in Physics, 2018, 210, 25-41.
T. M. Radchenko, I. Yu. Sagalianov, V. A. Tatarenko, Y. I. Prylutskyy, P. Szroeder, M. Kempiński, W. Kempiński

Structural and mechanical characterization of (TiZrNbHfTa)N/WN multilayered nitride coatings

Materials Letters, 2018, 229, 364-367
A. A. Bagdasaryan, A.V. Pshyk, L. E. Coy, M. Kempiński, A. D. Pogrebnjak, V. M. Beresnev, S. Jurga

A new type of (TiZrNbTaHf)N/MoN nanocomposite coating: Microstructure and properties depending on energy of incident ions

Composites Part B: Engineering, 2018, 146, 132-144
A.A. Bagdasaryan, A.V. Pshyk, L. E. Coy, P. Konarski, M. Misnik, V.I. Ivashchenko, M. Kempiński, N.R. Mediukh, A.D. Pogrebnjak, V.M. Beresnev, S. Jurga

Enhancement of Electronic and Optical Properties of ZnO/Al2O3 Nanolaminate Coated Electrospun Nanofibers

J. Phys. Chem. C, 2016, 120 (9), 5124–5132
R. Viter, I. Iatsunskyi, V. Fedorenko, S. Tumenas, Z. Balevicius, A. Ramanavicius, S. Balme, M. Kempiński, G. Nowaczyk, S. Jurga, M. Bechelany

Experimental techniques for the characterization of carbon nanoparticles – a brief overview

Beilstein Journal of Nanotechnology, 2014, 5, 1760-1766
W. Kempiński, S. Łoś, M. Kempiński, D. Markowski

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