ref [20] · 2608.10122 · notice #10056 · dispute
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metal dichalcogenides (TMDC) MXY , e.g. WSSe or MoSSe [17], with the role of chalcogens played by transition metals and W/Mo played by C/N. Janus transition metal dichalco- genides have been studied[17-19] for their attractive proper- ties like Rashba effect, Berry curvature dipole, etc. On the other hand, similar studies for the Janus MXene structure are limited [20]. MXenes, on the other hand, offer several advan- tages over TMDs due to their possible metallic conductivity, tunable surface functionality through the terminating group, and better cycling stability [21-23]. In this study, our aim is to computationally explore the emergent properties that a monolayer Janus MXene may offer by combining two essential ingredients: a) broken inversion
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metal dichalcogenides (TMDC) MXY, e.g. WSSe or MoSSe [17], with the role of chalcogens played by transition metals and W/Mo played by C/N. Janus transition metal dichalco- genides have been studied[17-19] for their attractive proper- ties like Rashba effect, Berry curvature dipole, etc. On the other hand, similar studies for the Janus MXene structure are limited [20]. MXenes, on the other hand, offer several advan- tages over TMDs due to their possible metallic conductivity, tunable surface functionality through the terminating group, and better cycling stability [21-23]. In this study, our aim is to computationally explore the emergent properties that a monolayer Janus MXene may offer by combining two essential ingredients: a) broken inversion