Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Artur Kosonowski"'
Autor:
Artur Kosonowski, Ashutosh Kumar, Karol Wolski, Szczepan Zapotoczny, Krzysztof T. Wojciechowski
Publikováno v:
Journal of the European Ceramic Society. 42:2844-2852
Autor:
Taras Parashchuk, Artur Kosonowski, Raul Cardoso-Gil, Krzysztof T. Wojciechowski, Ashutosh Kumar
Publikováno v:
Dalton Transactions. 50:1261-1273
Systematic experimental and theoretical research on the role of microstructure and interface thermal resistance on the thermal conductivity of the PbTe-CoSb3 bulk polycrystalline composite is presented. In particular, the correlation between the part
Autor:
Taras Parashchuk, Artur Kosonowski, Thang Bach Phan, Son D. N. Luu, Krzysztof T. Wojciechowski
Publikováno v:
Journal of Electronic Materials. 48:5418-5427
The aim of our work was to investigate thermoelectric properties of a composite of solid In4Se3 and solid or liquid indium. Polycrystalline In4Se3-In composites were prepared by a direct reaction of elements, powdering of products and sintering powde
Autor:
Artur, Kosonowski, Ashutosh, Kumar, Taras, Parashchuk, Raul, Cardoso-Gil, Krzysztof T, Wojciechowski
Publikováno v:
Dalton transactions (Cambridge, England : 2003). 50(4)
Systematic experimental and theoretical research on the role of microstructure and interface thermal resistance on the thermal conductivity of the PbTe-CoSb3 bulk polycrystalline composite is presented. In particular, the correlation between the part
We present a novel approach to reduce the thermal conductivity ($\kappa$) in thermoelectric composite materials using acoustic impedance mismatch and the Debye model. Also, the correlation between interface thermal resistance (R$_{int}$) and the part
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8b60e7793100ed13f9ed366bc4a770f8
Autor:
Taras Parashchuk, Karolina Zazakowny, Krzysztof Wojciechowski, Oleksandr Cherniushok, Adrianna Lis, Janusz Tobola, Artur Kosonowski
Publikováno v:
Materials, Vol 15, Iss 849, p 849 (2022)
Materials; Volume 15; Issue 3; Pages: 849
Materials; Volume 15; Issue 3; Pages: 849
Because of the large Seebeck coefficient, low thermal conductivity, and earth-abundant nature of components, tetrahedrites are promising thermoelectric materials. DFT calculations reveal that the additional copper atoms in Cu-rich Cu14Sb4S13 tetrahed
Autor:
Kacper Pilarczyk, M. Przybylski, Artur Kosonowski, Marcin Knutelski, Katarzyna E. Hnida, Mateusz M. Marzec, Damian K. Chlebda, Bartłomiej Lis, Marta Gajewska
Publikováno v:
Chemphyschem : a European journal of chemical physics and physical chemistry. 19(13)
The growing demand for clean energy catalyzes the development of new devices capable of generating electricity from renewable energy resources. One of the possible approaches focuses on the use of thermoelectric materials (TE), which may utilize wast