Wykaz publikacji wybranego autora

Kun Zheng, dr hab. inż., prof. AGH

profesor nadzwyczajny

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 (50%)


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


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0002-8866-464X orcid iD

ResearcherID: C-4711-2013

Scopus: 55437834700

PBN: 5e7093e4878c28a0473b2bb5

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • A- and B-site doping effect on physicochemical properties of $Sr_{2−x}Ba_{x}MMoO_{6}$ (M = Mg, Mn, Fe) double perovskites — candidate anode materials for SOFCs
2
  • A review on the critical challenges and progress of $SiO_{x}$-based anodes for lithium-ion batteries
3
  • Ag loading enhanced photocatalytic activity of $g-C_3N_4$ porous nanosheets for decomposition of organic pollutants
4
  • Applicability of $Gd-doped$ $BaZrO_{3}$, $SrZrO_{3}$, $BaCeO_{3}$ and $SrCeO_{3}$ proton conducting perovskites as electrolytes for solid oxide fuel cells
5
  • Boosting the electrochemical performance of oxygen electrodes via the formation of $LSCF-BaCe_{0.9–x}Mo_{x}Y_{0.1}O_{3–\delta}$ triple conducting composite for solid oxide fuel cells
6
  • Carbon deposition and sulfur poisoning in $SrFe_{0.75}Mo_{0.25}O_{3-\delta}$ and $SrFe_{0.5}Mn_{0.25}Mo_{0.25}O_{3-\delta}$ electrode materials for symmetrical SOFCs
7
8
9
  • Chemical diffusion and surface exchange in selected $Ln-Ba-Sr-Co-Fe$ perovskite-type oxides
10
  • Co-free triple perovskite $La_{1.5}Ba_{1.5}Cu_{3}O_{7±\delta}$ as a promising air electrode material for solid oxide fuel cells
11
  • Coking study in anode materials for SOFCs: physicochemical properties and behavior of Mo-containing perovskites in CO and $CH_{4}$ fuels
12
13
14
  • Crystal structure, hydration, and two-fold/single-fold diffusion kinetics in proton-conducting ${Ba_{0.9}La_{0.1}Zr_{0.25}Sn_{0.25}In_{0.5}O_{3−a}}$ oxide
15
  • Designing highly active and $CO_2$ tolerant heterostructure electrode materials by a facile A-site deficiency strategy in $Pr_{1-x}BaCo_2O_{5+\delta}$ double perovskite
16
  • Designing high-performance quasi-symmetrical solid oxide cells with a facile chemical modification strategy for $Sr_{2}Fe_{2−x}W_{x}O_{6−\delta}$ ferrites electrodes with in situ exsolution of nanoparticles
17
  • Development of new perovskites $La_{1-x}Sr_xNi_{1-y}Cu_yO_{3-\delta}$ as cathode materials for boosting the performance of SOFCs
18
  • Development process of graphene field for photocatalytic and antibacterial applications
19
20
  • Effective calcium doping at the B-site of $BaFeO_{3–\delta}$ perovskite: towards low-cost and high-performance oxygen permeation membranes
21
  • Efficient and economically favorable Co-free air electrodes for solid oxide cells
22
  • Electrospun nanofiber electrodes with in situ exsolved nanocatalysts for symmetrical SOCs
23
24
25
  • Evaluation of $La_{0.3}Sr_{0.7}Ti_{1-x}Co_{x}O_{3}$ as a potential cathode material for solid oxide fuel cells