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Vapor Phase Growth of Air-Stable Hybrid Perovskite FAPbBr<sub>3</sub> Single-Crystalline Nanosheets

Xinyu Shi, Chao Liu, Xiaomin Zhang, Guixiang Zhan, Yuxiao Cai, Dawei Zhou, Yuwei Zhao, Nana Wang, Fengrui Hu, Xiaoyong Wang, Huifang Ma, Lin Wang

2024Nano Letters16 citationsDOI

Abstract

Organic–inorganic hybrid perovskites have attracted tremendous attention owing to their fascinating optoelectronic properties. However, their poor air stability seriously hinders practical applications, which becomes more serious with thickness down to the nanoscale. Here we report a one-step vapor phase growth of HC(NH 2 ) 2 PbBr 3 (FAPbBr 3 ) single-crystalline nanosheets of tunable size up to 50 μm and thickness down to 20 nm. The FAPbBr 3 nanosheets demonstrate high stability for over months of exposure to air with no degradation in surface roughness and photoluminescence efficiency. Besides, the FAPbBr 3 photodetectors exhibit superior overall performance as compared to previous devices based on nonlayered perovskite nanosheets, such as an ultralow dark current of 24 pA, an ultrahigh responsivity of 1033 A/W, an external quantum efficiency over 3000%, a rapid response time around 25 ms, and a high on/off ratio of 10 4 . This work provides a strategy to tackle the challenges of hybrid perovskites toward integrated optoelectronics with requirements of nanoscale thickness, high stability, and excellent performance.

Topics & Concepts

Materials sciencePerovskite (structure)PhotoluminescenceResponsivityNanoscopic scaleOptoelectronicsQuantum efficiencyNanotechnologyPhotodetectorPhase (matter)Surface roughnessChemical engineeringComposite materialChemistryEngineeringOrganic chemistryPerovskite Materials and Applications2D Materials and ApplicationsOrganic Light-Emitting Diodes Research