Wykaz publikacji wybranego autora

Andrzej Kulka, dr inż.

adiunkt

Wydział Energetyki i Paliw
WEiP-kew, Katedra Energetyki Wodorowej


  • 2018

    [dyscyplina 1] dziedzina nauk inżynieryjno-technicznych / inżynieria środowiska, górnictwo i energetyka

    [dyscyplina 2] dziedzina nauk inżynieryjno-technicznych / inżynieria materiałowa (50%)


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0002-6974-1689 orcid iD

ResearcherID: brak

Scopus: 49861580200

PBN: 5e709438878c28a0473b852f

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • Addressing the stability issues in Na-ion batteries via microstructural tailoring of antimony-based anode materials
2
  • Badania \emph{in-situ} XRD $LiFePO_{4^-}$ materiału katodowego dla ogniw litowych
3
  • Comparison of NASICON Na3Fe2(PO4)3 and Na3Fe1.8Mn0.2(PO4)3 cathode materials for Na-ion batteries – comprehensive analysis of operation mechanism
4
  • Development of the Ni-rich $Li_{1+X}Ni_{0.905}Co_{0.043}Al_{0.052}O_{2}$ high-energy-density cathode materials for Li-ion cells: operando XRD studies, surface modification, and electrochemical properties
5
  • Electrochemical properties of doped $LiFe_{1-x}M_{x}PO_{4}(M=Mn, Co, Ni)$ as a cathode material for Li-ion batteries
6
  • Electrochemical properties of $Ti_{45-x}Zr_{30+x}Ni_{25}(x=-4,0,4)$ quasicrystals and amorphous electrodes produced by mechanical alloying
7
  • Evaluation of ${GdBaCo_{2-x}Fe_{x}O_{5.5-\delta}}$ a-site ordered double perovskites as cathode materials for IT-SOFC
8
  • Evaluations of iron based cathode materials for $Li-ion$ batteries – case of $LiFe_{1-y}M_{y}PO_{4}$, nanometric $LiFePO_{4}$ and $LiFeO_{2}$
9
  • \emph {Ex-situ} and \emph {in-situ} X-ray diffractometry as the applicable tool to determine structural properties and cycling performance of $P2-Na_{0.67}Mg_{y}Mn_{1-y}O_{2}$ (y=0.1, 0.2, 0.3) cathodes for Na-ion batteries
10
  • Fabrication and electrochemical properties of hybrid cathode materials based on $xLi_{2}MnO_{3}\cdot(1-x)LiMO_{2}$ for Li-ion batteries
11
  • High-performance $Li-rich$ layered transition metal oxide cathode materials for $Li-ion$ batteries
12
  • Hybrydowe materiały katodowe dla ogniw li-ion
13
  • Impact of carbon additives on $Sb$ anodes performance for $Na-ion$ batteries
14
  • Impact of the Li/Mn superstructure rearrangement on the O redox reaction in Li-rich NMC electrodes
15
  • Improved of electrochemical performances of manganese-substituted $Na_{0.7}Co_{1-y}Mn_{y}O_{2}$ – cathode material for rechargeable sodium-ion
16
  • Investigation of structural and transport properties of ${GdBaCo_{2-x}M_{x}O_{5.5-\delta}}$(M=Fe, Ni)–cathode materials for intermediate temperature fuel cells
17
  • Modification of phosphoolivine by substitutions in Li and Fe sublattice
18
  • $MoS_{2}$ as potential anode material for sodium-ion batteries
19
  • Nano-grained $NaFePO_{4}$ obtained \em{via} chemical deintercalation of $LiFePO_{4}$
20
  • $NASICON-Na_{3}Fe_{2-y}Mn_{y}(PO_{4})_{3}$ cathode materials for Na-ion batteries – comprehensive analysis of the relationship between structural and electrochemical properties using HT-XRD and operando-XRD studies
21
  • $Na_{x}Fe_{y}Co_{1-y}O_{2}$ layered oxides as positive electrode for Na-ion batteries
22
  • Ni-rich $Li_{1+x}Ni_{0.905}Co_{0.043}Al_{0.052}O_{2}$ layered oxides for high-energy-density Li-ion cells: crystal structure changes and degradation mechanism studied by operando XRD and soft XAS
23
  • \emph{Operando} vs. Ex-\emph{situ} studies for determination structural reorganization and Na ions mobility in $NaFe_yCo_{1-y}O_2$
24
  • Operando XRD studies and electrochemical properties of the Ni-rich $Li_{1.05}Ni_{0.905}Co_{0.043}Al_{0.052}O_2$ layered cathode material for the next generation Li-ion batteries
25
  • Operando XRD studies during electrochemical intercalation of $Na_{0.66}Li_{0.22}Ti_{0.78}O_{2}$ – P2-type anode material for Na-ion batteries