Literature DB >> 32286782

Improved Figure of Merit of Cu2SnSe3 via Band Structure Modification and Energy-Dependent Carrier Scattering.

Hongwei Ming1,2, Chen Zhu1,2, Xiaoying Qin1, Jian Zhang1, Di Li1, Baoli Zhang1, Tao Chen1,2, Jimin Li1,2, Xunuo Lou3, Hongxin Xin1.   

Abstract

As an ecofriendly thermoelectric material with intrinsic low thermal conductivity, ternary diamond-like Cu2SnSe3 (CSS) has attracted much attention. Nevertheless, its figure of merit, ZT, is limited by its small thermopower (S) and power factor (PF). Here, we show that an increase in thermopower by 63% and a carrier-mobility rise of 81% at 300 K can be simultaneously achieved through 5% substitution of Fe for Sn due to both enhancement of electronic density of states and degeneracy of multiple valence band maxima, which lead to high PF = 10.3 μW·cm-1·K-2 at 823 K for Fe-doped CSS (CSFS). Besides, an ultrahigh PF of 14.8 μW·cm-1·K-2 (at 773 K) and 45% reduction of lattice thermal conductivity (at 823 K) are realized for CSFS-based composites with 0.125 wt % of MgO nanoinclusions, owing to further enhancement of S via energy-dependent scattering and strong phonon scattering by the embedded nanoparticles. Consequently, a maximum ZT = 1 at 823 K is reached for the CSFS/f MgO composite samples with f = 0.125 wt %, which is around 2.5 times larger than that of the CSS compound.

Entities:  

Keywords:  Cu2SnSe3; band structure modification; energy dependent carrier scattering; thermal conductivity; thermoelectric properties

Year:  2020        PMID: 32286782     DOI: 10.1021/acsami.0c04298

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  1 in total

1.  Enhanced Thermoelectric Performance of Cu2Se via Nanostructure and Compositional Gradient.

Authors:  Lin Bo; Fujin Li; Yangbo Hou; Min Zuo; Degang Zhao
Journal:  Nanomaterials (Basel)       Date:  2022-02-14       Impact factor: 5.076

  1 in total

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