Repozytorium

Unravelling the behavior of Dion–Jacobson layered hybrid perovskites in humid environments.

Autorzy

Algirdas Dučinskas

Gee Yeong Kim

Davide Moia

Alessandro Senocrate

Ya-Ru Wang

Michael A. Hope

Aditya Mishra

Dominik J. Kubicki

Miłosz Siczek

Wojciech Bury

Thomas Schneeberger

Lyndon Emsley

Jovana V. Milić

Joachim Maier

Michael Grätzel

Rok wydania

2021

Czasopismo

ACS Energy Letters

Numer woluminu

6

Strony

337-344

DOI

10.1021/acsenergylett.0c02344

Kolekcja

Naukowa

Język

Angielski

Typ publikacji

Artykuł

Streszczenie

Layered hybrid halide perovskites are known to be more environmentally stable than their 3D analogues. The enhanced stability is particularly relevant for Dion–Jacobson-type layered perovskites due to their promising photovoltaic performances. However, in contrast to the expected resilience to moisture, we reveal that the structure of Dion–Jacobson perovskite phases based on a 1,4-phenylenedimethanammonium spacer is disrupted in humid conditions using X-ray diffraction, UV–vis spectroscopy, thermogravimetric analysis, and solid-state NMR spectroscopy. The process takes place at ≥65 ± 5% relative humidity, with a time scale on the order of minutes. The original layered structure can be restored upon annealing and the hydration can be suppressed by postsynthetic annealing in air, which is attributed to the generation of a self-protective layer of PbI2. This study thereby reveals a unique behavior of layered perovskites in humid environments, which is critical to their stabilizing role in perovskite devices.

Słowa kluczowe

Thin films, Physical and chemical processes, Humidity, Hydration, Perovskites

Adres publiczny

http://dx.doi.org/10.1021/acsenergylett.0c02344

Strona internetowa wydawcy

https://www.acs.org/content/acs/en.html

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