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Strain-induced structural phase transition, electric polarization and unusual electric properties in photovoltaic materials CsMI3 (M = Pb, Sn).


ABSTRACT: The structural phase transition, ferroelectric polarization, and electric properties have been investigated for photovoltaic films CsMI3 (M = Pb, Sn) epitaxially grown along (001) direction based on the density functional theory. The calculated results indicate that the phase diagrams of two epitaxial CsPbI3 and CsSnI3 films are almost identical, except critical transition strains varying slightly. The epitaxial tensile strains induce two ferroelectric phases Pmc21, and Pmn21, while the compressive strains drive two paraelectric phases P212121, P21212. The larger compressive strain enhances the ferroelectric instability in these two films, eventually rendering them another ferroelectric state Pc. Whether CsPbI3 or CsSnI3, the total polarization of Pmn21 phase comes from the main contribution of B-position cations (Pb or Sn), whereas, for Pmc21 phase, the main contributor is the I ion. Moreover, the epitaxial strain effects on antiferrodistortive vector, polarization and band gap of CsMI3 (M = Pb, Sn) are further discussed. Unusual electronic properties under epitaxial strains are also revealed and interpreted.

SUBMITTER: Cheng XR 

PROVIDER: S-EPMC9051086 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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Strain-induced structural phase transition, electric polarization and unusual electric properties in photovoltaic materials CsMI<sub>3</sub> (M = Pb, Sn).

Cheng Xiao-Rong XR   Kuang Xiao-Yu XY   Cheng Hao H   Tian Hao H   Yang Si-Min SM   Yu Miao M   Dou Xi-Long XL   Mao Ai-Jie AJ  

RSC advances 20200326 21


The structural phase transition, ferroelectric polarization, and electric properties have been investigated for photovoltaic films CsMI<sub>3</sub> (M = Pb, Sn) epitaxially grown along (001) direction based on the density functional theory. The calculated results indicate that the phase diagrams of two epitaxial CsPbI<sub>3</sub> and CsSnI<sub>3</sub> films are almost identical, except critical transition strains varying slightly. The epitaxial tensile strains induce two ferroelectric phases <i>  ...[more]

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