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Electron density control in tungsten diselenide monolayers via photochlorination

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arxiv 2305.06756 v1 pith:E6DOE2M7 submitted 2023-05-11 cond-mat.mtrl-sci cond-mat.mes-hall

Electron density control in tungsten diselenide monolayers via photochlorination

classification cond-mat.mtrl-sci cond-mat.mes-hall
keywords chlorinedensitydiselenidetungstenelectronfermiindicatelevel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Modulation of the Fermi level using an ultraviolet (UV)-assisted photochemical method is demonstrated in tungsten diselenide monolayers. Systematic shifts and relative intensities between charged and neutral exciton species indicate a progressive and controllable decrease of the electron density and switch tungsten diselenide from n-type to a p-type semiconductor. The presence of chlorine in the 2D crystal shifts the Fermi level closer to the valence band while the effect can be only partially reversible via continuous wave laser rastering process. The presence of chlorine species in the lattice is validated by X-ray photoelectron spectroscopy (XPS), and density functional theory (DFT) calculations predict that adsorption of chlorine on the selenium vacancy sites leads to p-type doping. The results of our study indicate that photochemical techniques have the potential to enhance the performance of various 2D materials, making them suitable for potential applications in optoelectronics.

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