Innovative design of bismuth-telluride-based thermoelectric micro-generators with high output power
Author:
Affiliation:
1. Institut Jean Lamour, UMR 7198 CNRS – Université de Lorraine
2. 2 allée André Guinier – Campus ARTEM
3. BP 50840
4. Nancy Cedex
5. France
6. Mahle Thermoelektronik GmbH
7. Duisburg
8. Germany
Abstract
An innovative design of a thermoelectric micro-generator with integrated wavy-shaped Bi2Te3-based materials yields the highest output power achieved so far for an in-plane device.
Funder
Electronic Components and Systems for European Leadership
Horizon 2020 Framework Programme
Publisher
Royal Society of Chemistry (RSC)
Subject
Pollution,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment,Environmental Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2020/EE/D0EE02579H
Reference56 articles.
1. Sophisticated skin
2. When thermoelectrics reached the nanoscale
3. Conformal organic–inorganic semiconductor composites for flexible thermoelectrics
4. Nanotechnology-enabled flexible and biocompatible energy harvesting
5. Thermopower enhancement in conducting polymer nanocomposites via carrier energy scattering at the organic–inorganic semiconductor interface
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