Pressure-induced emission enhancement and bandgap narrowing: Experimental investigations and first-principles theoretical simulations on the model halide perovskite Cs3Sb2Br9
Author:
Funder
Ministry of Earth Sciences
Department of Science and Technology, Ministry of Science and Technology
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.105.104103/fulltext
Reference54 articles.
1. Metal halide perovskites for energy applications
2. High‐Pressure Band‐Gap Engineering and Metallization in the Perovskite Derivative Cs 3 Sb 2 I 9
3. Pressure-Induced Emission Enhancement, Band-Gap Narrowing, and Metallization of Halide Perovskite Cs3 Bi2 I9
4. Lead‐Free Cs 3 Sb 2 Br 9 Single Crystals for High Performance Narrowband Photodetector
5. Submillimeter and lead-free Cs3Sb2Br9 perovskite nanoflakes: inverse temperature crystallization growth and application for ultrasensitive photodetectors
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1. Excitonic emission and phonon anharmonicity in Cs3Sb2Br9;Applied Physics Letters;2024-06-10
2. Intense Broadband Emission in the Unconventional 3D Hybrid Metal Halide via High‐Pressure Engineering;Advanced Science;2023-12-24
3. Pressure-dependent electronic, optical, and mechanical properties of antiperovskite X3NP (X = Ca, Mg): A first-principles study;Journal of Semiconductors;2023-10-01
4. Heavy pnictogens-based perovskite-inspired materials: Sustainable light-harvesters for indoor photovoltaics;APL Energy;2023-08-31
5. Phonon anharmonicity and soft-phonon mediated structural phase transition in Cs3Bi2Br9;Physical Review B;2023-08-16
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