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Low‐Threshold Amplified Spontaneous Emission from Air‐Stable CsPbBr<sub>3</sub> Perovskite Films Containing Trace Amounts of Polyethylene Oxide

Kun Tian, Yannan Lu, Ruqing Liu, Xian Jun Loh, David James Young

2021ChemPlusChem10 citationsDOI

Abstract

Abstract Organic additives can enhance the amplified spontaneous emission (ASE) performance of inorganic cesium lead halide perovskites (CsPbBr 3 ) but volatility, potential hygroscopicity and oxidative degradation of these additives jeopardizes the thermal stability and shelf‐life of blended CsPbBr 3 films. To address this problem, we have fabricated perovskite films in a two‐step solution protocol involving as little added polyethylene oxide (PEO) as possible. These films exhibited enhanced crystallization, improved photoluminescence (PL) intensity and prolonged lifetimes. Their hierarchical morphology and surface passivation lowered the ASE threshold from 278 to 176 μЈ/cm 2 under one‐photon nanosecond laser excitation. The proportion of added PEO was 0.3 wt% and was subsequently almost fully removed, thereby reducing its adverse influence on the stability of resulting films under continuous pulsed laser excitation. Stable ASE spectra could be stimulated after storage in air for 10 months.

Topics & Concepts

PassivationMaterials sciencePhotoluminescencePerovskite (structure)HalideCrystallizationOxideChemical engineeringEmission intensityThermal stabilityPolyethyleneOptoelectronicsInorganic chemistryNanotechnologyChemistryComposite materialMetallurgyEngineeringLayer (electronics)Perovskite Materials and ApplicationsSolid State Laser Technologies