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March 3, 2026Royal Society Open Science0 citationsOpen Access

Adsorption of glucose, dopamine and uric acid on N-doped WSe2 monolayers: potential applications

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NHNgoc Van HoangTQTrang Trieu Quynh

Key Points

  • Increased magnetization occurs with glucose and uric acid, which contrasts the minor effect from dopamine.
  • Analysis shows how the electronic band structure and optical characteristics change due to molecular adsorption.
  • Density functional theory was utilized to explore electronic, magnetic, and optical properties systematically.
  • These results suggest significant utility for N-doped WSe2 monolayers in biosensing and nanoelectronics applications.

Abstract

Abstract The electronic, magnetic and optical properties of N-doped WSe2 monolayers upon adsorption of glucose, dopamine and uric acid molecules are systematically investigated using density functional theory (DFT). The pristine N-doped WSe2 monolayer exhibits only trace magnetization. Molecular adsorption slightly modifies this behaviour, with magnetization enhanced by glucose and uric acid, while remaining nearly unchanged with dopamine. In contrast, adsorption strongly influences the electronic band structure and optical characteristics, as confirmed by density of states, charge density differences, and optical spectra. These findings highlight the potential of N-doped WSe2 monolayers for applications in biosensing, biomedical devices, pharmaceutical detection and nanoelectronics.

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Cite This Study

Hoang et al. (2026) studied this question.

synapsesocial.com/papers/69a75ccdc6e9836116a25f9fhttps://doi.org/10.1098/rsos.251963
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