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Anomalous Behavior of 2D Janus Excitonic Layers under Extreme Pressures
Authors:Han Li  Ying Qin  Byeongkwan Ko  Dipesh B. Trivedi  Debarati Hajra  Mohammed Yasir Sayyad  Lei Liu  Sang-Heon Shim  Houlong Zhuang  Sefaattin Tongay
Affiliation:1. School for Engineering of Matter, Transport and Energy, Arizona State University, Tempe, AZ, 85287 USA;2. School of Earth and Space Exploration, Arizona State University, Tempe, AZ, 85287 USA
Abstract:Newly discovered 2D Janus transition metal dichalcogenides layers have gained much attention from a theory perspective owing to their unique atomic structure and exotic materials properties, but little to no experimental data are available on these materials. Here, experimental and theoretical studies establish the vibrational and optical behavior of 2D Janus S–W–Se and S–Mo–Se monolayers under high pressures for the first time. Chemical vapor deposition (CVD)-grown classical transition metal dichalcogenides (TMD) monolayers are first transferred onto van der Waals (vdW) mica substrates and converted to 2D Janus sheets by surface plasma technique, and then integrated into a 500 µm size diamond anvil cell for high-pressure studies. The results show that 2D Janus layers do not undergo phase transition up to 15 GPa, and in this pressure regime, their vibrational modes exhibit a nonmonotonic response to the applied pressures (/dP). Interestingly, these 2D Janus monolayers exhibit unique blueshift in photoluminescence (PL) upon compression, which is in contrast to many other traditional semiconductor materials. Overall theoretical simulations offer in-depth insights and reveal that the overall optical response is a result of competition between the ab-plane (blueshift) and c-axis (redshift) compression. The overall findings shed the very first light on how 2D Janus monolayers respond under extreme pressures and expand the fundamental understanding of these materials.
Keywords:2D Janus monolayers  bandgap blueshifting  high-pressure diamond anvil cells  optical properties  vibrational properties
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