Wykaz publikacji wybranego autora

Tomasz Strączek, dr inż.

asystent

Wydział Inżynierii Mechanicznej i Robotyki
WIMiR-krm, Katedra Robotyki i Mechatroniki


  • 2021

    [dyscyplina 1] dziedzina nauk inżynieryjno-technicznych / inżynieria mechaniczna


Identyfikatory Autora

ORCID: 0000-0002-5163-3639 połącz konto z ORCID

ResearcherID: brak

Scopus: 56431177000

PBN: 605977d89543c711bc6eac40




1
  • A study of selenium enriched shiitake mycelium with X-ray absorption spectroscopy
2
  • A XAS study of ALD fabricated Fe oxide films
3
  • A XAS study of low phonon glass-ceramics
4
  • A XAS study of $Na_{0.5}Bi_{0.5}TiO_{3}$ ferroelectric single crystal
5
  • AC susceptibility study of suspensions of maghemite based superparamagnetic nanoparticles
6
  • Carbon coated Co, Fe and ${Fe_{3}O_{4}}$ derived nanoparticles for enhanced MRI contrast
7
  • Comparison of 112 and 122 iron pnictides families from the perspective of XAS spectroscopy
8
  • Could dehydrogenation diminish the role of oxygen fugacity during Fe2+ oxidation in phyllosilicates/silicates?
9
  • Crystallographic structure study of $Fe_{64}Mn_{30}Si_{6}$ shape memory alloys
10
  • Direct evidence of uneven $d_{xz}$ and $d_{yz}$ orbital occupation in the superconducting state of iron pnictide
11
  • Dual modal superparamagnetic iron oxide nanoparticles with surface attached gadolinium complexes
12
  • Dual modal superparamagnetic iron oxide nanoparticles with surface attached gadolinium complexes
13
  • Dual modal superparamagnetic iron oxide nanoparticles with surface attached gadolinium complexes
14
  • Dynamics of motion and agglomeration of magnetic nanoparticles in liquid suspensions under applied magnetic field
15
  • Dynamics of motion and agglomeration of magnetic nanoparticles in suspensions under applied magnetic field
16
  • Dynamics of motion and agglomeration of magnetic nanoparticles in suspensions under applied magnetic field
17
  • Electronic properties of ${Ti-Al-C}$ based MAX phases
18
  • EXAFS study of Mn and Ni doped maghemite nanoparticles
19
  • Influence of superparamagnetic maghemite nanoparticles on proton $T_{1}$ and $T_{2}$ NMR relaxation times
20
  • Maghemite based magnetic nanoparticles for biomedical application – structure, magnetism and dynamic properties
21
  • Magnetic field controlled thermal conductivity of composites
22
  • Magnetic nanoparticles for biomedical applications
23
  • Magnetic nanoparticulate materials for medicine
24
  • Magnetic study of the $Fe-Mn-Si$ shape memory alloys
25
  • Magnetic study of the $Fe-Mn-Si$ shape memory alloys