Wykaz publikacji wybranego autora

Czesław Kapusta, prof. dr hab.

profesor zwyczajny

Wydział Fizyki i Informatyki Stosowanej
WFiIS-kfc, Katedra Fizyki Ciała Stałego


  • 2018

    [dyscyplina 1] dziedzina nauk ścisłych i przyrodniczych / nauki fizyczne


[poprzednia klasyfikacja] obszar nauk ścisłych / dziedzina nauk fizycznych / fizyka


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0002-4061-0124 orcid iD

ResearcherID: brak

Scopus: 35513981700

PBN: 5e709208878c28a04738ee7b

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • Crystallographic structure study of $Fe_{64}Mn_{30}Si_{6}$ shape memory alloys
2
  • Effect of the nanosized $\gamma-Fe_{2}O_{3}$ in bulk $GdBa_{2}Cu_{3}O_{7-\delta}$ on critical currents
3
  • EUROTHERM-2016
4
  • EXAFS study of Mn and Ni doped maghemite nanoparticles
5
  • Focused-Electron-Beam-Induced-Etching of graphene with water
6
  • Imaging of endothelium – magnetical properties and biological studies on SPIONs functionalized with antibodies
7
  • Iron oxide and silica based nanosystems in modern medicine and diagnostics
8
  • Local atomic structure evolution around dopant ions in YSZ+Mn solid solution
9
  • Magnetic field aligned epoxy matrix composites filled with ferrite and magnetite powders
10
  • Magnetic field aligned epoxy matrix composites filled with ferrite and magnetite powders
11
  • Magnetic field controlled thermal conductivity of composites
12
  • Magnetic study of the $Fe-Mn-Si$ shape memory alloys
13
  • Magnetic study of the $Fe-Mn-Si$ shape memory alloys
14
  • New phase diagram of all cuprate high temperature superconductors based on NMR
15
  • Processing of MAX phase materials using combustion technique
16
  • Study of oxide materials for energy applications with X-ray spectroscopies
17
  • Study of relaxation processes of magnetic nanoparticles
18
  • Superparamagnetic iron oxide nano-particle contrast for targeted magnetic resonance imaging of vascular endothelium inflamation
19
  • XAS study of oxide-fluoride glass-ceramics
20
  • XAS study of Ti-Al-C and Ti-Al-N based MAX phases