Spatially Resolved Optoelectronic Puddles of WTe2-2D Te Heterostructure


Two-dimensional (2D) semiconductors have attracted vital scientific curiosity due to their optical properties. Their purposes in optoelectronic gadgets will be additional expanded by combining them to kind heterostructures. We characterised a WTe2-2D Te heterostructure via native probing of the photocurrent with respect to the magnitude, part, and place. Photocurrent technology throughout the system is split into distinct areas: photo-thermoelectric results happen solely on the 2D Te-Au junction space, PV-dominant results on the 2D-WTe2 interface, and thermoelectric-to-photovoltaic crossover results on the WTe2/2D Te overlap space. These totally different photocurrents can’t be fused right into a single area as a result of every space is ruled by totally different technology mechanisms, which rely upon the placement of the system. The ability dependence of every photocurrent kind additionally varies throughout the system. Our outcomes point out that cautious materials choice and system construction design, based mostly on the digital, optical, and thermal properties of the channel supplies, are important to keep away from forming totally different optoelectronic puddles that might counteract one another inside a single system.

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