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- W4283075462 endingPage "448" @default.
- W4283075462 startingPage "413" @default.
- W4283075462 abstract "2D transition metal dichalcogenides (TMDs) are atomically thin semiconductors. They attract great interest because of their unique chemical and physical properties. Features such as an intrinsic direct bandgap, high luminescence yield, and high carrier mobilities are driving the search for novel optoelectronic applications. Due to their high mechanical strength, the application of strain lends itself to deepening the understanding of the underlying physical effects and find novel applications. In this chapter, the composition and chemical bonds of 2D TMDs are reviewed first. After highlighting specific properties such as valley-contrasting physics, optical selection rules, and excitonic effects, the strain-tuning techniques for 2D TMDs will be discussed. Strain can be exerted, e.g. by atomic force microscopy tips, substrate deformation, or piezoelectric actuators. The different types of applicable strain fields and tuning techniques as well as their effect on the material properties are evaluated. Eventually, representative building blocks of related optical and optoelectronic application scenarios and future prospective research will be summarized." @default.
- W4283075462 created "2022-06-19" @default.
- W4283075462 creator A5037190979 @default.
- W4283075462 creator A5048579498 @default.
- W4283075462 creator A5088267968 @default.
- W4283075462 date "2022-06-17" @default.
- W4283075462 modified "2023-10-16" @default.
- W4283075462 title "Strain‐Tuning of 2<scp>D</scp>Transition Metal Dichalcogenides" @default.
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