In this study, we show a direct correlation between the applied mechanical strain and an increase in monolayer MoS2 photoresponsivity. This shows that tensile strain can improve the efficiency of monolayer MoS2 photodetectors. The observed high photocurrent and extended response time in our devices are indicative that devices are predominantly governed by photogating mechanisms, which become more prominent with applied tensile strain. Furthermore, we have demonstrated that a nonencapsulated MoS2 monolayer can be used in strain-based devices for many cycles and extensive periods of time, showing endurance under ambient conditions without loss of functionality. Such robustness emphasizes the potential of MoS2 for further functionalization and utilization of different flexible sensors.
Strain-enhanced large-area monolayer MoS2 photodetectors / Radatović, Borna; Çakıroğlu, Onur; Jadriško, Valentino; Frisenda, Riccardo; Senkić, Ana; Vujičić, Nataša; Kralj, Marko; Petrović, Marin; Castellanos-Gomez, Andres. - In: ACS APPLIED MATERIALS & INTERFACES. - ISSN 1944-8244. - 16:12(2024), pp. 15596-15604. [10.1021/acsami.4c00458]
Strain-enhanced large-area monolayer MoS2 photodetectors
Frisenda, Riccardo;
2024
Abstract
In this study, we show a direct correlation between the applied mechanical strain and an increase in monolayer MoS2 photoresponsivity. This shows that tensile strain can improve the efficiency of monolayer MoS2 photodetectors. The observed high photocurrent and extended response time in our devices are indicative that devices are predominantly governed by photogating mechanisms, which become more prominent with applied tensile strain. Furthermore, we have demonstrated that a nonencapsulated MoS2 monolayer can be used in strain-based devices for many cycles and extensive periods of time, showing endurance under ambient conditions without loss of functionality. Such robustness emphasizes the potential of MoS2 for further functionalization and utilization of different flexible sensors.File | Dimensione | Formato | |
---|---|---|---|
Radatović_Strain-enhanced-large_2024.pdf
accesso aperto
Note: Articolo su rivista
Tipologia:
Versione editoriale (versione pubblicata con il layout dell'editore)
Licenza:
Creative commons
Dimensione
6.23 MB
Formato
Adobe PDF
|
6.23 MB | Adobe PDF |
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.