4.8 Article

Charge Carriers Are Not Affected by the Relatively Slow-Rotating Methylammonium Cations in Lead Halide Perovskite Thin Films

Journal

JOURNAL OF PHYSICAL CHEMISTRY LETTERS
Volume 10, Issue 17, Pages 5128-5134

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpclett.9b02160

Keywords

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Funding

  1. Dutch Research Council (NWO) [739.017.004]
  2. European Union [764047]
  3. Ministero dell'Istruzione dell'Universita e della Ricerca (MIUR) through the program Dipartimenti di Eccellenza 2018-2022
  4. Universita degli Studi di Perugia through the program Dipartimenti di Eccellenza 2018-2022
  5. Dutch Research Council (NWO) under the Echo Grant [712.014.007]
  6. German Federal Ministry for Education and Research (BMBF) under HYPER project [03SF0514A/B]
  7. Bavarian State Ministry of Science and Arts
  8. Bavarian Ministry of Economic Affairs, Energy and Technology
  9. Tata Group [UF150033]

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Recently, several studies have investigated dielectric properties as a possible origin of the exceptional optoelectronic properties of metal halide perovskites (MHPs). In this study we investigated the temperature-dependent dielectric behavior of different MHP films at different frequencies. In the gigahertz regime, dielectric losses in methylammonium-based samples are dominated by the rotational dynamics of the organic cation. Upon increasing the temperature from 160 to 300 K, the rotational relaxation time, tau, decreases from 400 (200) to 6 (1) ps for MAPb-I-3 (-Br-3). By contrast, we found negligible temperature-dependent variations in tau for a mixed cation/mixed halide FA(0.85)MA(0)(.15)Pb-(I0.85Br0.15)(3). From temperature-dependent time-resolved microwave conductance measurements we conclude that the dipolar reorientation of the MA cation does not affect charge carrier mobility and lifetime in MHPs. Therefore, charge carriers do not feel the relatively slow-moving MA cations, despite their great impact on the dielectric constants.

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