Wykaz publikacji wybranego autora

Artur Kosonowski, dr inż.

asystent

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


  • 2020

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


Identyfikatory Autora

ORCID: 0000-0002-8017-6158 orcid iD

ResearcherID: brak

Scopus: 57201728918

PBN: 5f8953dc085dcb410a25f092



Statystyka obejmuje publikacje afiliowane AGH od 2008 roku włącznie

typ publikacji
rocznikl. publ.książkifragm.referatyartykułypatentymapyred. czas.inne
ogółem423111
2023431
20221284
2021413
2020541
20191091
2018651
201711
język publikacji
rocznikrazempolskojęzyczneanglojęzycznepozostałe języki
ogółem42141
202344
20221212
202144
202055
20191010
201866
201711
kraj wydania
rocznikrazempubl. krajowepubl. zagraniczne
ogółem421824
2023413
20221257
202144
202055
20191073
2018642
201711
Lista Filadelfijska
rocznikrazempubl. z LFpubl. pozostałe
ogółem421032
2023413
20221239
2021431
2020514
20191019
2018615
201711
punktacja MNiSW
rocznikrazempubl. z pkt. MNiSWpubl. pozostałe
ogółem421032
2023413
20221239
2021431
2020514
20191019
2018615
201711
publikacje recenzowane
rocznikrazempubl. recenzowanepubl. nierecenzowane
ogółem421032
2023413
20221239
2021431
2020514
20191019
2018615
201711



1
  • A new route of the preparation of $Cu_{12}Sb_4S_{13}$ tetrahedrite by solvothermal synthesis
2
  • Application of DT-FGTM approach for the development of thermoelectric modules
3
  • Correlation between the acoustic impedance and thermal conductivity in bulk $CoSb_3-PbTe$ thermoelectric composite
4
  • Development of the anodized aluminum substrates for thermoelectric energy converters
5
  • Dielectric strength analysis of Al2O3 anodic layer deposited on Al substrate
6
  • Effective thermal conductivity of $SrBi_4Ti_4O_{15}-La_{0.7}Sr_{0.3}MnO_3$ oxide composite: role of particle size and interface thermal resistance
7
  • Effective thermal conductivity of $SrBi_{4}Ti_{4}O_{15}$-$La_{0.7}Sr_{0.3}MnO_{3}$ oxide composite: role of particle size and interface thermal resistance
8
  • Electronic structure and crystal stability of a new Cu‐rich tetrahedrite synthesized by solvothermal method
9
  • Estimation of the thermal breakdown voltage of Al2O3 anodic layer for thermoelectric module substrate
10
  • High-efficient thermoelectric modules for conversion of low-parametrical heat into electricity
11
  • Influence of grain size distribution of $PbTe$ and $CoSb_3$ on transport properties of bulk $CoSb_3-PbTe$ composite
12
  • Influence of hydrogen content in 4340 steel on the mechanical properties and thermoelectric effect
13
  • Influence of the pressure on microstructural properties of skutterudite $CoSb_3$ prepared by shock compression
14
15
  • Insight into the transport properties and enhanced thermoelectric performance of n-type PbTe doped with Sb
16
  • Microstructural and thermoelectric properties of ${CoSb_3}$ skutterudite prepared by shock compression method
17
  • Microstructural and thermoelectric properties of $CoSb_{3}$ skutterudite prepared by shock-compression method
18
  • Microstructure, mechanical, thermoelectric properties of high-temperature electrode material based on ZrB2
19
  • New synthesis route of highly porous $In_{x}Co_{4}Sb_{12}$ with strongly reduced thermal conductivity
20
  • Origin of electrical contact resistance and its dominating effect on electrical conductivity in $PbTe/CoSb_3$ composite
21
  • Phase analysis and thermoelectric properties of Cu-rich tetrahedrite prepared by solvothermal synthesis
22
  • Scanning Thermoelectric Microscope - characterization of electronic properties of functional materials
23
  • Shock-compression as a novel method of preparation of nanostructured $CoSb3$ skutterudite
24
  • Solvothermal synthesis of Cu-rich tetrahedrite - phase analysis and thermoelectric properties
25
  • Solvothermal synthesis route and electronic properties of a new Cu-rich tetrahedrite ($Cu_{12+x}Sb_4S_{13}$)