Solution Processed Hybrid Lead Perovskite Films for White Light Emission and Lasing Applications

Author:

Chowdhury Subhadip12,Mukhopadhyay Mrinmay K12ORCID,Sanyal Milan K1ORCID,Bhunia Satyaban12,Satpati Biswarup12,Giri Rajendra P34,Bharatiya B5,Shen Chen5,Murphy Bridget M36

Affiliation:

1. SPMS Division Saha Institute of Nuclear Physics 1/AF Bidhannagar Kolkata 700064 India

2. Homi Bhabha National Institute BARC Training School Complex Anushaktinagar Mumbai 400094 India

3. Institut für Experimentelle und Angewandte Physik Christian‐Albrechts‐Universität zu Kiel 24098 Kiel Germany

4. Department of Physics Indian Institute of Technology (ISM) Dhanbad Jharkhand 826004 India

5. Deutsches Elektronen‐Synchrotron DESY Notkestrasse 85 22607 Hamburg Germany

6. Ruprecht‐Haensel Laboratory Kiel University D‐24118 Kiel Germany

Abstract

Abstract2D organic–inorganic hybrid lead halide perovskite films are fascinating optoelectronic materials for white‐light emission and lasing applications. Here, it is demonstrated that nano‐meter‐thick films of perovskites can be formed at room temperature using Langmuir–Schaefer (LS) deposition technique. In situ X‐ray measurements reveal a self‐assembly process of the 2D perovskite formation at the air–water interface. This formation process requires the presence of stearic acid monolayer on the water subphase having a solution of lead‐perovskite in dimethylformamide. Microscopy and X‐ray measurements of these nanofilms transferred onto substrates show crystalline phase formation that deviates from the known orthorhombic structure of the bulk crystals. The nanofilms exhibit novel broad optical emission with sharp band‐edge transition in temperature‐dependent photoluminescence studies. Also, their band‐edge emission is distinctly blue‐shifted compared to that of thicker 2D perovskite flakes prepared by the slow‐cooling chemical synthesis process. 2D flakes exhibit lasing that cannot be obtained in the LS nanofilms as their thicknesses are lower than the lasing wavelength prohibiting wave‐guide formation. The results show that the 2D single‐crystalline nature of the LS films and flakes are suitable materials to develop broad‐band white light emission across the entire visible range and to obtain lasing without external cavities, respectively.

Publisher

Wiley

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