Stabilizing Single‐Source Evaporated Perovskites with Organic Interlayers for Amplified Spontaneous Emission

Author:

Chin Sang‐Hyun12ORCID,Cortecchia Daniele34,Forzatti Michele1,Wu Chun‐Sheng3,Alvarado‐Leaños Ada Lili35,Folpini Giulia3,Treglia Antonella35,Kalluvila Justin Isabella Antony1,Paliwal Abhyuday1,Cho Changsoon6,Roldán‐Carmona Cristina1,Sessolo Michele1,Petrozza Annamaria3,Bolink Henk J.1

Affiliation:

1. Instituto de Ciencia Molecular (ICMol) Universidad de Valencia C/Catedrático J. Beltrán 2 Paterna 46980 Spain

2. Department of Nano Science and Technology and Department of Nanoengineering SKKU Advanced Institute of Nanotechnology (SAINT) Sungkyunkwan University Suwon 16419 Republic of Korea

3. Center for Nanoscience and Technology@PoliMi Istituto Italiano di Tecnologia via Giovanni Pascoli 70/3 Milano 20133 Italy

4. Department of Industrial Chemistry Università di Bologna Bologna 40136 Italy

5. Physics Department Politecnico di Milano Piazza Leonardo da Vinci 32 Milan 20133 Italy

6. Department of Material Science and Engineering Pohang University of Science and Technology (POSTECH) Pohang 36763 Republic of Korea

Abstract

AbstractMetal halide perovskites are promising semiconductors with promising applications in optoelectronic and photonic technologies. When coherent emission applications are targeted, materials with lower lasing thresholds and increased stabilities must be developed to increase the performance under continuous wave optical pumping condition and finally allow the realization of the long sought‐after electrically pumped lasers. Perovskite multiple‐quantum‐wells (MQWs) can potentially ease the population inversion by confining photoexcitation within the heterostructure's wells, but their fabrication process and structural design still require a delicate optimization to make them valuable photonic platforms. Here, perovskite MQWs are fabricated based on organic semiconductors and CsPbBr3, using a facile and easily scalable sequential single‐source vacuum evaporation method. Perovskite with the organic interlayer shows radically enhanced phase stability, passivated defects, and improved radiative recombination properties. In this way, upon proper design of the heterostructure wells and barriers thicknesses, optically pumped amplified spontaneous emission can be achieved. This work reports an effective fabrication approach for perovskite MQWs, while providing a deeper understanding of their photophysical properties to foster their application as coherent light emitters.

Funder

European Research Council

European Commission

Publisher

Wiley

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