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1.
20 p, 7.8 MB Nanowire forest of pnictogen-chalcogenide alloys for thermoelectricity / Singhal, Dhruv (Université Grenoble Alpes) ; Paterson, Jessy (Université Grenoble Alpes) ; Ben-Khedim, Meriam (Technology RandD. STMicroelectronics) ; Tainoff, Dimitri (Université Grenoble Alpes) ; Cagnon, Laurent (Université Grenoble Alpes) ; Richard, Jacques (Université Grenoble Alpes) ; Chávez Ángel, Emigdio (Institut Català de Nanociència i Nanotecnologia) ; Jaramillo Fernández, Juliana (Institut Català de Nanociència i Nanotecnologia) ; Sotomayor Torres, Clivia M. (Institut Català de Nanociència i Nanotecnologia) ; Lacroix, David (Centre National de la Recherche Scientifique (França)) ; Bourgault, Daniel (Université Grenoble Alpes) ; Buttard, Denis (Université Grenoble Alpes) ; Bourgeois, Olivier (Université Grenoble Alpes)
Pnictogen and chalcogenide compounds have been seen as high-potential materials for efficient thermoelectric conversion over the past few decades. It is also known that with nanostructuration, the physical properties of these pnictogen-chalcogenide compounds can be further enhanced towards a more efficient heat conversion. [...]
2019 - 10.1039/c9nr01566c
Nanoscale, Vol. 11, Issue 28 (July 2019) , p. 13423-13430  
2.
9 p, 1.3 MB Thermal conductivity in disordered porous nanomembranes / Sledzinska, Marianna (Institut Català de Nanociència i Nanotecnologia) ; Graczykowski, Bartlomiej (Max Planck Institute for Polymer Research) ; Alzina, Francesc (Institut Català de Nanociència i Nanotecnologia) ; Melia, Umberto (Universitat Politècnica de Catalunya. Departament d'Enginyeria de Sistemes, Automàtica i Informàtica Industrial) ; Termentzidis, Konstantinos (Centre National de la Recherche Scientifique (França)) ; Lacroix, David (Centre National de la Recherche Scientifique (França)) ; Sotomayor Torres, Clivia M. (Institut Català de Nanociència i Nanotecnologia)
In this work we study the effects of disorder on the thermal conductivity of porous 100 nm thick silicon membranes, in which the size, shape and position of the pores were varied randomly. Measurements using two-laser Raman thermometry on both non-patterned and porous membranes revealed more than a 10-fold reduction of the thermal conductivity compared to that of bulk silicon and a six-fold reduction compared to non-patterned membranes for the sample with random pore shapes. [...]
2019 - 10.1088/1361-6528/ab0ecd
Nanotechnology, Vol. 30, Num. 26 (June 2019) , art. 265401  

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