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- W3191594947 abstract "The construction of van der Waals (vdW) heterostructures by stacking different two-dimensional layered materials have been recognised as an effective strategy to obtain the desired properties. The 3N-doped graphdiyne (N-GY) has been successfully synthesized in the laboratory. It could be assembled into a supercapacitor and can be used for tensile energy storage. However, the flat band and wide forbidden bands could hinder its application of N-GY layer in optoelectronic and nanoelectronic devices. In order to extend the application of N-GY layer in electronic devices, MoS 2 was selected to construct an N-GY/MoS 2 heterostructure due to its good electronic and optical properties. The N-GY/MoS 2 heterostructure has an optical absorption range from the visible to ultraviolet with a absorption coefficient of 10 5 cm −1 . The N-GY/MoS 2 heterostructure exhibits a type-II band alignment allows the electron-hole to be located on N-GY and MoS 2 respectively, which can further reduce the electron-hole complexation to increase exciton lifetime. The power conversion efficiency of N-GY/MoS 2 heterostructure is up to 17.77%, indicating it is a promising candidate material for solar cells. In addition, the external electric field and biaxial strain could effectively tune the electronic structure. Our results provide a theoretical support for the design and application of N-GY/MoS 2 vdW heterostructures in semiconductor sensors and photovoltaic devices." @default.
- W3191594947 created "2021-08-16" @default.
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- W3191594947 date "2021-12-01" @default.
- W3191594947 modified "2023-09-23" @default.
- W3191594947 title "Electronic and optical properties of 3N-doped graphdiyne/MoS<sub>2</sub> heterostructures tuned by biaxial strain and external electric field*" @default.
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- W3191594947 doi "https://doi.org/10.1088/1674-1056/ac1927" @default.
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