Surface‐Engineered Methylammonium Lead Bromide Single Crystals: A Platform for Fluorescent Security Tags and Photodetector Applications

Author:

Mahato Somnath1,Tamulewicz‐Szwajkowska Magdalena12,Singh Sudarshan3,Kowal Dominik1,Bose Shaona3,Serafińczuk Jarosław12,Czyż Krzysztof1,Jędrzejewski Roman1,Birowosuto Muhammad Danang1,Ray Samit Kumar3,Abdelhady Ahmed L.145ORCID

Affiliation:

1. Materials Science & Engineering Center Łukasiewicz Research Network‐PORT Polish Center for Technology Development Stabłowicka 147 Wrocław 54–066 Poland

2. Department of Nanometrology Wrocław University of Science and Technology Janiszewskiego 11/17 Wrocław 50–372 Poland

3. Department of Physics Indian Institute of Technology Kharagpur Kharagpur 721302 India

4. Department of Chemistry Khalifa University Abu Dhabi 127788 UAE

5. Center for Catalysis and Separation (CeCaS) Khalifa University Abu Dhabi 127788 UAE

Abstract

AbstractSurface/interface engineering of methylammonium lead bromide (MAPbBr3) single crystals (SCs) is crucial for carrier generation/recombination, separation, and transportation, thereby enabling superior optoelectronics. Herein, a surface‐engineered crystallization technique is presented in which a thin polycrystalline MAPbBr3 layer is in situ grown on the surface of bulk mm‐sized MAPbBr3 SCs. The growth direction and the atomic distribution of both the polycrystalline surface layer and the single crystalline core have been analyzed by damage‐free atomic‐resolution transmission electron microscopy (TEM). The polycrystalline nature of the crystals gives rise to bright green emission under UV light. Scanning probe microscopy results show that the current at the emissive MAPbBr3 film/MAPbBr3 SC surface is five times higher than that at a non‐emissive surface when illuminated. Lateral photodetectors based on MAPbBr3 film/MAPbBr3 SCs can achieve excellent detectivities (≈1013 Jones) and high photoresponsivities (≈20 A W−1). Furthermore, a semiconductor‐based fluorescence quick response (FQR) code is patterned on the same bright green‐emitting surface of the MAPbBr3 film/MAPbBr3 SC using a picosecond laser pulse, with a scalability of 3 × 3 mm2. An FQR code integrated with a photodetector may serve as a potential double security tag in bank cards, passports, door security, etc.

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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