Composite of carbon dots and TiNiSn thermoelectric materials: Initial investigation on the electrical and thermal transport properties

Author:

Yong Chao1ORCID,Lei Ying123ORCID,Ye Fan1,Wang Nan1,Li Yu1ORCID,Liu Yinghui4ORCID,Chen Zheng23,Wang Dongsheng23,Zhang Shaowu23

Affiliation:

1. School of Metallurgical Engineering, Anhui University of Technology 1 , Ma’anshan 243032, China

2. School of Mechanical Engineering, Tongling University 2 , Tongling 244000, China

3. Advanced Copper-based Materials Industry Generic Technology Research Center of Anhui Province, Tongling University 3 , Tongling 244000, China

4. School of Civil Engineering and Architechitecture, Anhui University of Technology 4 , Ma’anshan 243032, China

Abstract

TiNiCu0.025Sn0.99Sb0.01 is prepared using microwaves. However, an ultra-high electrical conductivity and electronic thermal conductivity are obtained by interstitial Cu and Sb doping, which could not effectively improve the ZT value. We introduce carbon dots (CDs) as a nano-second phase by ball milling to simultaneously optimize the thermoelectric properties. To our best knowledge, this is the first report on half-Heusler/CDs composites. Experimental results show that the introduction of nano-CDs optimizes the carrier concentration and mobility and dramatically improves the Seebeck coefficient through the energy filtering effect. The nano-CDs introduce more point defects, inhibit the grains growth, and form a specific carbon solid solution second phase in the matrix. The lattice thermal conductivity is reduced to the same level as TiNiSn at 1.96 W m−1 K−1 through the synergistic effect of point defects and phase and grain boundaries scattering, and the ZT value reaches a maximum of 0.63 at 873 K.

Funder

National Natural Science Foundation of China

Open Research Project From the State Key Laboratory of Refractories and Metallurgy

University Synergy Innovation Program of Ahui Province

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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