Stabilization of lead-free bulk CsSnI$_3$ perovskite thermoelectrics via incorporating of TiS$_3$ nanoribbon clusters

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Hauptverfasser: Ivanova, Alexandra, Luchnikov, Lev, Golikova, Margarita, Muratov, Dmitry S., Saranin, Danila, Khanina, Aleksandra, Gostishchev, Pavel, Khovaylo, Vladimir
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Veröffentlicht: 2024
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author Ivanova, Alexandra
Luchnikov, Lev
Golikova, Margarita
Muratov, Dmitry S.
Saranin, Danila
Khanina, Aleksandra
Gostishchev, Pavel
Khovaylo, Vladimir
author_facet Ivanova, Alexandra
Luchnikov, Lev
Golikova, Margarita
Muratov, Dmitry S.
Saranin, Danila
Khanina, Aleksandra
Gostishchev, Pavel
Khovaylo, Vladimir
contents The intense research for efficient low-temperature thermoelectric materials motivates the exploration of innovative compounds and composite systems. This study examines the effects of integrating low-dimensional titanium trisulfide (TiS$_3$) into bulk tin-based halide perovskites (CsSnI$_3$) for use in thermoelectric applications. The addition of small amounts of two-dimensional titanium trisulfide (TiS$_3$) to bulk tin-based halide perovskites (CsSnI$_3$) significantly enhanced the structural stability of the composite material and suppressed oxidation processes. The CsSnI$_3$-TiS$_3$ composites demonstrated stabilization of temperature-dependent electrical properties (conductivity and Seebeck coefficient). This study provides valuable insights into the promising approach of using low-dimensional TiS3 as an additive to stabilize the thermoelectric performance of CsSnI$_3$.
format Preprint
id arxiv_https___arxiv_org_abs_2405_08420
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Stabilization of lead-free bulk CsSnI$_3$ perovskite thermoelectrics via incorporating of TiS$_3$ nanoribbon clusters
Ivanova, Alexandra
Luchnikov, Lev
Golikova, Margarita
Muratov, Dmitry S.
Saranin, Danila
Khanina, Aleksandra
Gostishchev, Pavel
Khovaylo, Vladimir
Applied Physics
Materials Science
The intense research for efficient low-temperature thermoelectric materials motivates the exploration of innovative compounds and composite systems. This study examines the effects of integrating low-dimensional titanium trisulfide (TiS$_3$) into bulk tin-based halide perovskites (CsSnI$_3$) for use in thermoelectric applications. The addition of small amounts of two-dimensional titanium trisulfide (TiS$_3$) to bulk tin-based halide perovskites (CsSnI$_3$) significantly enhanced the structural stability of the composite material and suppressed oxidation processes. The CsSnI$_3$-TiS$_3$ composites demonstrated stabilization of temperature-dependent electrical properties (conductivity and Seebeck coefficient). This study provides valuable insights into the promising approach of using low-dimensional TiS3 as an additive to stabilize the thermoelectric performance of CsSnI$_3$.
title Stabilization of lead-free bulk CsSnI$_3$ perovskite thermoelectrics via incorporating of TiS$_3$ nanoribbon clusters
topic Applied Physics
Materials Science
url https://arxiv.org/abs/2405.08420