Wykaz publikacji wybranego autora

Konrad Świerczek, prof. dr hab. inż.

profesor zwyczajny

Wydział Energetyki i Paliw
WEiP-kew, Katedra Energetyki Wodorowej


  • 2018

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

    [dyscyplina 2] dziedzina nauk inżynieryjno-technicznych / inżynieria środowiska, górnictwo i energetyka (25%)


[poprzednia klasyfikacja] obszar nauk technicznych / dziedzina nauk technicznych / energetyka


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0003-4519-389X orcid iD

ResearcherID: S-7666-2016

Scopus: 6603619667

PBN: 5e70922c878c28a047391285

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • A new family of Cu-doped lanthanum silicate apatites as electrolyte materials for SOFCs: synthesis, structural and electrical properties
2
3
  • Copper-based Perovskite-type oxides as an efficient air electrode for rSOC
4
  • Delicate lattice modulation enables superior Na storage performance of $Na_{3}V_{2}(PO_{4})_{3}$ as both an anode and cathode material for sodium-ion batteries: understanding the role of calcium substitution for vanadium
5
  • Development of novel air electrode materials for the SOFC and SOEC technologies
6
  • Effective oxygen reduction on A-site substituted $LaCuO_{3-\delta}$: toward air electrodes for SOFCs based on perovskite-type copper oxides
7
  • Extraordinary oxygen storage performance of the rare-earth-substituted $Y_{1-x}R_{x}MnO_{3 + \delta}$
8
  • Formation and properties of high entropy oxides in $Co-Cr-Fe-Mg-Mn-Ni-O$ system
9
  • High-performance oxygen permeation membranes: cobalt-free $Ba_{0.975}La_{0.025}Fe_{1-x}Cu_{x}O_{3-{\delta}}$ ceramics
10
  • High-performance $SmBaMn_{2}O_{5+\delta}$ electrode for symmetrical solid oxide fuel cell
11
  • Impact of the synthesis parameters on the microstructure of nano-structured LTO prepared by glycothermal routes and $^{7}Li$ NMR structural investigations
12
  • Ionic transport in $Ln_{2}Ni_{1-y}Cu_{y}O_{4\pm\delta}$ (Ln: selected lanthanides) as derived from first principles calculations
13
  • MIEC-type ceramic membranes for the oxygen separation technology
14
15
  • Physicochemical properties of $Nd_{2-x}Ni_{1-y}Cu_{y}O_{4\pm\delta}$ as candidate membrane materials
16
  • Physicochemical properties of $ReBaCo_{2-x}Mn_{x}O_{5+\delta}$ (Re: selected rare earth element) and their modification by the electrochemical oxidation
17
  • Physiochemical properties of \emph{Mo}-containing perovskites
18
  • $ReBaCo_{2-x}Mn_{x}O_{5+\delta}$ (Re: rare earth element) layered perovskites for application as cathodes in Solid Oxide Fuel Cells
19
  • Reversible oxygen intercalation in hexagonal $Y_{0.7}Tb_{0.3}MnO_{3+\delta}$: toward oxygen production by temperature-swing absorption in air
20
  • Stabilization of the fluorite structure in the rare-earth high entropy oxides through addition of molybdenum cations
21
  • Stoichiometry and transport in $La_{2-x}(Ni, Cu, M^{3+})O_{4\pm\delta}$ oxides
22
  • Synthesis and microstructure of the high entropy oxides from the $Co-Cr-Fe-Mg-Mn-Ni-O$ system
23
24
  • Versatile application of redox processes for $REBaCoMnO_{5+\delta}$ (RE: La, Pr, Nd, Sm, Gd, and Y) oxides