High-performance thermoelectric composites via scalable and low-cost ink processing

Author:

Tanvir Ali Newaz Mohammad1ORCID,Bappy Md Omarsany1ORCID,Zeng Minxiang2ORCID,Shang Wenjie1,Wang Ke3ORCID,Song Kaidong1,Liu Yukun4,Isotta Eleonora5ORCID,Kanatzidis Mercouri G.4ORCID,Snyder G. Jeffrey5ORCID,Dowling Alexander W.3ORCID,Luo Tengfei1ORCID,Zhang Yanliang1ORCID

Affiliation:

1. Department of Aerospace and Mechanical Engineering, University of Notre Dame, Notre Dame, IN, 46556, USA

2. Department of Chemical Engineering, Texas Tech University, Lubbock, TX, 79409, USA

3. Department of Chemical and Biomolecular Engineering, University of Notre Dame, Notre Dame, IN, 46556, USA

4. Department of Chemistry, Northwestern University, Evanston, IL, 60208, USA

5. Department of Materials Science and Engineering, Northwestern University, Evanston, IL, 60208, USA

Abstract

This work demonstrates a remarkable room-temperature figure of merit zT of 1.3 for BiSbTe-based composites with excellent reproducibility using a scalable, low-cost ink processing technique.

Funder

Advanced Manufacturing Office

National Science Foundation

U.S. Department of Energy

Basic Energy Sciences

Publisher

Royal Society of Chemistry (RSC)

Reference58 articles.

1. Printing thermoelectric inks toward next-generation energy and thermal devices

2. Rationally Designing High-Performance Bulk Thermoelectric Materials

3. Cooling, Heating, Generating Power, and Recovering Waste Heat with Thermoelectric Systems

4. Distributed and localized cooling with thermoelectrics

5. M. V.Vedernikov and E. K.Iordanishvili , in Seventeenth International Conference on Thermoelectrics. Proceedings ICT98 (Cat. No. 98TH8365), IEEE, Nagoya, Japan, 1998, pp. 37–42

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