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Vacuum-Deposited Cesium Tin Iodide Thin Films with Tunable Thermoelectric Properties

  • Paz Sebastia-Luna
  • , Unnati Pokharel
  • , Bas A.H. Huisman
  • , L. Jan Anton Koster
  • , Francisco Palazon*
  • , Henk J. Bolink*
  • *Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

28 Citations (Scopus)
241 Downloads (Pure)

Abstract

Most current thermoelectric materials have important drawbacks, such as toxicity, scarceness, and peak operating temperatures above 300 °C. Herein, we report the thermoelectric properties of different crystalline phases of Sn-based perovskite thin films. The 2D phase, Cs2SnI4, is obtained through vacuum thermal deposition and easily converted into the black β phase of CsSnI3(B-β CsSnI3) by annealing at 150 °C. B-β CsSnI3is a p-type semiconductor with a figure of merit (ZT) ranging from 0.021 to 0.033 for temperatures below 100 °C, which makes it a promising candidate to power small electronic devices such as wearable sensors which may be interconnected in the so-called Internet of Things. The B-β phase is stable in nitrogen, whereas it spontaneously oxidizes to Cs2SnI6upon exposure to air. Cs2SnI6shows a negative Seebeck coefficient and an ultralow thermal conductivity. However, the ZT values are 1 order of magnitude lower than for B-β CsSnI3due to a considerably lower electrical conductivity.

Original languageEnglish
Pages (from-to)10216-10223
Number of pages8
JournalACS Applied Energy Materials
Volume5
Issue number8
DOIs
Publication statusPublished - 22-Aug-2022

Keywords

  • conductivity
  • perovskite
  • room temperature
  • Seebeck
  • thermoelectrics
  • thin film
  • tin

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