Wykaz publikacji wybranego autora

Taras Parashchuk, dr

adiunkt

Wydział Inżynierii Materiałowej i Ceramiki
WIMiC-kcn, Katedra Chemii Nieorganicznej


  • 2021

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


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0003-1780-0410 orcid iD

ResearcherID: brak

Scopus: 56071538700

PBN: 6023ca7f9543c7744e88f347

OPI Nauka Polska

System Informacyjny AGH (SkOs)





Liczba pozycji spełniających powyższe kryteria selekcji: 40, z ogólnej liczby 42 publikacji Autora


1
  • Achieving high thermoelectric conversion efficiency in $Bi_2Te_3$-based stepwise legs through bandgap tuning and chemical potential engineering
2
  • Analysis of lattice dynamics in Pb1-xSnxTe solid solutions by XAFS spectroscopy
3
  • Application of DT-FGTM approach for the development of thermoelectric modules
4
  • Application of DT‐FGTM approach for the development of thermoelectric modules
5
  • Crystal structure and thermoelectric properties of novel quaternary $Cu_{2}MHf_{3}S_{8}$ (M-Mn, Fe, Co, and Ni) thiospinels with low thermal conductivity
6
  • Development of the anodized aluminum substrates for thermoelectric energy converters
7
  • Effect of rare-earth doping on the structural and optical properties of the $Ag_{3}AsS_{3}$ crystals
8
  • Electronic structure and crystal stability of a new Cu‐rich tetrahedrite synthesized by solvothermal method
9
  • Enhanced electronic transport and low thermal conductivity in eco-friendly $Cu_{2}CoSnS_{4–x}Se_{x}$ diamond-like materials
10
  • Entropy engineering and carrier concentration tuning towards high thermoelectric performance in low-cost and eco-friendly argyrodites
11
  • Entropy-induced multivalley band structures improve thermoelectric performance in $p-Cu_{7}P(S_{x}Se_{1–x})_{6}$ argyrodites
12
13
  • Estimation of the thermal breakdown voltage of Al2O3 anodic layer for thermoelectric module substrate
14
  • Evaluation of the double-tuned functionally graded thermoelectric material approach for the fabrication of $n$-type leg based on $Pb_{0.75}Sn_{0.25}Te$
15
  • Fermi level control in topological insulators
16
  • Gamma-argyrodite structure material for thermoelectric conversion and the method of obtaining the same
17
  • High thermoelectric performance of p-type PbTe enabled by the synergy of resonance scattering and lattice softening
18
  • High-efficient thermoelectric modules for conversion of low-parametrical heat into electricity
19
  • Interplay of electron structure and entropy improving energy conversion in thermoelectrics and ion batteries
20
  • Lone-pair-like interaction and bonding inhomogeneity induce ultralow lattice thermal conductivity in filled β-manganese-type phases
21
  • Materiał o strukturze γ−argyrodytu do konwersji termoelektrycznej oraz sposób jego otrzymywania
22
  • Microstructure properties and thermal conductivity of PbTe nanopowder prepared by Pulsed Plasma in Liquid technique
23
  • Nanostructured $Cu_{12+x}Sb_{4}S_{13}$ tetrahedrites prepared by solvothermal synthesis in 1-(2-aminoethyl)piperazine for efficient thermal energy harvesting
24
  • Origins of low lattice thermal conductivity in novel quaternary Cu2MHf3S8 (M – Mn, Fe, Co, Ni) thiospinels
25
  • Origins of ultralow lattice thermal conductivity in $PbGa_{6–x}In_{x}Te_{10}$ filled-Mn-type phases