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December 11, 2025Microsystems & Nanoengineering5 citationsOpen Access

Two-dimensional SnS2 single crystal for sensitive NO2 detection at room temperature

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CGChenfei GuoLLLin LiuZCZhengyang Cai

Key Points

  • This research aims to synthesize a SnS2 single crystal for enhanced sensitivity in NO2 detection at room temperature.
  • Synthesis of SnS2 single crystal via chemical vapor deposition (CVD) approach.
  • Characterization of sensor performance including detection limit and response time at room temperature and under UV illumination.
  • Use of in-situ Kelvin probe force microscope for analyzing charge transfer behavior and selectivity.
  • The optimized SnS2 sensor shows a detection limit of 2 ppb for NO2.
  • Fast recovery time of 66 seconds at 1 ppm NO2 was observed.
  • The sensor achieves a high response of approximately 4702% at 1 ppm NO2.

Abstract

Two-dimensional (2D) materials are intensively studied as promising materials for gas sensors owing to their large surface area and low working temperature. In this work, we report the synthesis of a layered SnS2 single crystal by a chemical vapor deposition (CVD) approach for NO2 sensing. By tuning the growth temperature, high-quality crystals with a lateral size over 3 mm are obtained in 30 min. The 2D SnS2 sensor with optimized thickness (~15 nm) shows a low detection limit (2 ppb), a fast recovery time (66 s/1 ppm), and a high response (~4702% @ 1 ppm NO2) at room temperature (RT) under UV illumination. An in-situ Kelvin probe force microscope is employed to reveal the high selectivity of SnS2 through qualitative and semi-quantitative analysis of charge transfer behavior, including the directions and amount of charge transfer, upon exposure to different gases. In-situ Raman and first-principles density functional theory calculations further confirm the sensing mechanism toward NO2. Both experimental and theoretical results suggest that 2D SnS2 holds promising potential as an RT NO₂ sensing material.

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Cite This Study

Guo et al. (2025) studied this question.

synapsesocial.com/papers/694019342d562116f28f6e5ehttps://doi.org/10.1038/s41378-025-01054-7
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