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  1. Research Outputs

Electrostatic Control of the Thermoelectric Figure of Merit in Ion-Gated Nanotransistors

Academic Article
Publication Date:
2021
Short description:
Electrostatic Control of the Thermoelectric Figure of Merit in Ion-Gated Nanotransistors / Prete, D.; Dimaggio, E.; Demontis, V.; Zannier, V.; Rodriguez-Douton, M. J.; Guazzelli, L.; Beltram, F.; Sorba, L.; Pennelli, G.; Rossella, F.. - In: ADVANCED FUNCTIONAL MATERIALS. - ISSN 1616-301X. - 31:37(2021), pp. 2104175-2104183. [10.1002/adfm.202104175]
abstract:
Semiconductor nanostructures have raised much hope for the implementation of high-performance thermoelectric generators. Indeed, they are expected to make available reduced thermal conductivity without a heavy trade-off on electrical conductivity, a key requirement to optimize the thermoelectric figure of merit. Here, a novel nanodevice architecture is presented in which ionic liquids are employed as thermally-insulating gate dielectrics. These devices allow the field-effect control of electrical transport in suspended semiconducting nanowires in which thermal conductivity can be simultaneously measured using an all-electrical setup. The resulting experimental data on electrical and thermal transport properties taken on individual nanodevices can be combined to extract ZT, guide device optimization and dynamical tuning of the thermoelectric properties.
Iris type:
Articolo su rivista
Keywords:
electrolyte gating; semiconductor nanowires; thermoelectric figure of merit; thermoelectrics
List of contributors:
Prete, D.; Dimaggio, E.; Demontis, V.; Zannier, V.; Rodriguez-Douton, M. J.; Guazzelli, L.; Beltram, F.; Sorba, L.; Pennelli, G.; Rossella, F.
Authors of the University:
RODRIGUEZ DOUTON Maria Jesus
ROSSELLA Francesco
Handle:
https://iris.unimore.it/handle/11380/1270961
Full Text:
https://iris.unimore.it//retrieve/handle/11380/1270961/405565/Adv%20Funct%20Materials%20-%202021%20-%20Prete%20-%20Electrostatic%20Control%20of%20the%20Thermoelectric%20Figure%20of%20Merit%20in%20Ion%BFGated.pdf
Published in:
ADVANCED FUNCTIONAL MATERIALS
Journal
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