4.6 Article

Molecular Disorder Induces an Unusual Phase Transition in a Potential 2D Chiral Ferroelectric Perovskite

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 27, Issue 35, Pages 9054-9059

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.202100334

Keywords

Chirality; ferroelectric; halides; perovskites; phase transitions

Funding

  1. National Natural Science Foundation of China [22001102]
  2. Jiangxi Provincial Natural Science Foundation [20202BAB213002]
  3. Education department of Jiangxi province [204201400631]
  4. Fundamental Research Funds for the Central Universities (JXUST) [205200100116]
  5. Program for Excellent Young Talents [JXUSTQJYX2020018]

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This study presents a 2D chiral hybrid halide perovskite ferroelectric that undergoes two continuous phase transitions and has the potential for diverse functional properties.
Two-dimensional hybrid halide perovskites with single chiral and ferroelectricity together with various structural phase transitions provide the possibility for more diverse functional properties. Here, we present a 2D chiral hybrid halide perovskite ferroelectric, [C6H5(CH2)(4)NH3](2)CdCl4 (4PBA-CdCl4, 4PBA=4-phenylbutylamine) that experiences two continuous phase transitions from centrosymmetric triclinic P1? to polar chiral monoclinic P2 and then to another centrosymmetric tetragonal P4/mmm with increasing temperature, accompanied by symmetry breaking, due to the prominent octahedral distortion and disorder transformation of organic 4PBA cations. In the polar chiral phase, 4PBA-CdCl4 gives a significant CD signal and has a moderate ferroelectric polarization of 0.35 mu C/cm(2). In addition, 4PBA-CdCl4 occupies a wide band gap of 4.376 eV that is chiefly contributed by the inorganic CdCl6 octahedron. This finding offers an alternative pathway for designing new phase transitions and related physical properties in hybrid halide perovskites and other hybrid crystals.

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