Facile composite engineering to boost thermoelectric power conversion in ZnSb device

Author:

Theja Vaskuri C.S.ORCID,Karthikeyan VaithinathanORCID,Nayak Sanjib,Kandira Kadir UfukORCID,Assi Dani S.,Kannan VenkataramananORCID,Roy Vellaisamy A.L.ORCID

Publisher

Elsevier BV

Subject

Condensed Matter Physics,General Materials Science,General Chemistry

Reference52 articles.

1. Net-zero emission targets for major emitting countries consistent with the Paris Agreement;van Soest;Nat. Commun.,2021

2. Low-carbon Heating and Cooling : Overcoming One of World ’ S Most Important Net Zero Challenges;The Royal Society,2021

3. Nanostructured thermoelectrics;Pichanusakorn;Mater. Sci. Eng. R Rep.,2010

4. Realising the potential of thermoelectric technology: a Roadmap;Freer;J. Mater. Chem. C Mater.,2020

5. Harvesting waste heat with flexible Bi2Te3 thermoelectric thin film;Zheng;Nat. Sustain.,2023

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