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Ethylamine Iodide Additive Enables Solid-to-Solid Transformed Highly Oriented Perovskite for Excellent Photodetectors. | LitMetric

Ethylamine Iodide Additive Enables Solid-to-Solid Transformed Highly Oriented Perovskite for Excellent Photodetectors.

Adv Mater

School of Physical Science and Technology, Jiangsu Key Laboratory of Thin Films, Center for Energy Conversion Materials & Physics (CECMP), Soochow University, Suzhou, 215006, P. R. China.

Published: February 2022

AI Article Synopsis

  • Perovskite materials are prominent in optoelectronic applications due to their excellent properties like strong light absorption and high carrier mobility.
  • A new method involving ethylamine iodide (EAI) is introduced to enhance the crystallization of formamidinium-lead triiodide (FAPbI) perovskite films, revealing a novel mechanism in the crystallization process.
  • A self-powered photodetector created from the FAPbI film demonstrates an impressive external quantum efficiency of over 90%, contributing to the understanding of perovskite crystallization.

Article Abstract

Perovskite has been widely applied in the optoelectronic field due to its strong light absorption and high carrier mobility. Maintaining high crystallization is critical to fabricate high-performance perovskite devices, where many methods have been reported, such as the use of additives in precursor solutions. However, there are few reports for the working mechanism of these additives. Herein, a new method to obtain highly crystalline formamidinium-lead triiodide (FAPbI ) perovskite films by introducing ethylamine iodide (EAI) into perovskite precursors is reported and a novel working mechanism for such alkyl amine additives in the crystallization process of perovskites is proposed. Unlike traditional liquid-to-solid (L-S) crystallization theory, the research results indicate that EAI affects the solid-to-solid (S-S) transition process from the intermediate yellow phase to the final black phase, and this mechanism is further verified to be universal using other common alkyl amines. A self-powered photodetector based on an as-fabricated FAPbI film is fabricated with an external quantum efficiency of over 90%. This work provides a deeper understanding of the perovskite crystallization process.

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Source
http://dx.doi.org/10.1002/adma.202108569DOI Listing

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