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Active Asymmetric Electron-Transfer Effect on the Enhanced Piezoelectricity in MoTO (T = S, Se, or Te) Monolayers and Bilayers.
Li, Yun-Qin; Wang, Xin-Yu; Zhu, Shi-Yu; Tang, Dai-Song; He, Qi-Wen; Wang, Xiao-Chun.
Affiliation
  • Li YQ; Institute of Atomic and Molecular Physics, Jilin University, Changchun130012, China.
  • Wang XY; Institute of Atomic and Molecular Physics, Jilin University, Changchun130012, China.
  • Zhu SY; Institute of Atomic and Molecular Physics, Jilin University, Changchun130012, China.
  • Tang DS; Institute of Atomic and Molecular Physics, Jilin University, Changchun130012, China.
  • He QW; Institute of Atomic and Molecular Physics, Jilin University, Changchun130012, China.
  • Wang XC; Institute of Atomic and Molecular Physics, Jilin University, Changchun130012, China.
J Phys Chem Lett ; 13(41): 9654-9663, 2022 Oct 20.
Article in En | MEDLINE | ID: mdl-36214516
ABSTRACT
Development of piezoelectric materials is limited partly due to the incompleteness of internal mechanism and the lack of vertical piezoelectricity. Herein, we theoretically identify the stable MoTO (T = S, Se, or Te) monolayers and bilayers. When two elements are given but another element can be changed, the larger the electronegativity difference ratio Rratio is, the stronger the piezoelectricity will be. Vertical piezoelectric coefficient d33 of the MoTeO bilayer reaches 38.907 pm/V, which is 12 times larger than that of the bulk GaN. The "active asymmetric electron-transfer" strategy mainly contributes to the spontaneous remarkable piezoelectricity of MoTO. Importantly, we proposed the new method for calculating the piezoelectric coefficients of two-dimensional (2D) materials, which corresponds to the fact that 2D materials have a certain thickness. This study not only provides novel extraordinary candidates for energy conversion and touch-sensor nanodevices but also promotes a deeper understanding of piezoelectricity of 2D materials.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Phys Chem Lett Year: 2022 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Phys Chem Lett Year: 2022 Document type: Article Affiliation country: