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High mobility and excellent thermoelectric performance monolayer ZnX 2 Z 4 (X = In, Al, Ga; Z = S, Se, Te) materials.

Li ShiChunyan LvHaoran WeiWangping XuRui WangJing FanXiaozhi Wu
Published in: Physical chemistry chemical physics : PCCP (2023)
Recently, two-dimensional (2D) layered polarized ZnIn 2 S 4 nanosheets have been successfully synthesized in experiments. However, the polarized monolayers are unstable in air, which hinders their practical applications. Therefore, in this work, we proposed a new family of nonpolarized monolayers (β 2 -phase) ZnX 2 Z 4 (X = In, Al, and Ga; Z = S, Se, and Te) by first-principles. It is confirmed that the energies of β 2 -phase ZnX 2 Z 4 are lower than those of the polarized and β-phase ZnX 2 Z 4 monolayers. Moreover, these ZnX 2 Z 4 monolayers have not only desirable indirect band gaps but also high electron mobility (up to 10 3 cm 2 V -1 s -1 ), revealing a fascinating visible light absorption range. Furthermore, β 2 -phase ZnX 2 Te 4 (X = In, Al, and Ga) has ultra-low lattice thermal conductivity and high ZT value (up to 0.89), suggesting that these monolayers can be good candidates for thermoelectric materials. These new 2D ternary monolayers not only effectively broaden the family of 2D materials but also provide promising candidates for optoelectronic and thermoelectric materials.
Keyphrases
  • pet ct
  • visible light
  • reduced graphene oxide
  • mass spectrometry
  • high resolution
  • quantum dots
  • highly efficient
  • molecular dynamics