Combining direct ink writing with reactive melt infiltration to create architectured thermoelectric legs

Author:

Prӧschel Alexander,Lun Lau Miu,Post Guillen Donna,Dunand David C.

Funder

Office of Nuclear Energy

Laboratory Directed Research and Development

National Science Foundation

Northwestern University

Idaho National Laboratory

Materials Research Science and Engineering Center, Harvard University

U.S. Department of Energy

US Department of Energy Idaho Operations Office

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry

Reference63 articles.

1. Complex thermoelectric materials. Materials for sustainable energy: a collection of peer-reviewed research and review articles from Nature Publishing Group;Snyder;World Scientific,2011

2. Thermoelectrics: a review of present and potential applications;Riffat;Appl. Therm. Eng.,2003

3. High-performance thermoelectrics and challenges for practical devices;Yan;Nat. Mater.,2021

4. Additive manufacturing of ceramic materials for energy applications: Road map and opportunities;Cramer;J. Eur. Ceram. Soc.,2022

5. 3D printing of shape-conformable thermoelectric materials using all-inorganic Bi2Te3-based inks;Kim;Nat. Energy,2018

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