3D-nanostructured MoS2 nanoscroll with highly active sites for improving NO2 gas detection

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초록

Assembly operations can transform simple structures into complicated topologies such as crumples, folds, and scrolls, offering extraordinary electronic and optical properties. Two-dimensional (2D) transition metal dichal-cogenides (TMDC) nanoscrolls have attracted attention for their distinctive and excellent characteristics. How-ever, their chemically inert surface limits scalability in various applications. This study exploits the scrolling characteristics of three-dimensional nanostructured 2D MoS2 (3DN-MoS2) to improve NO2 detection. By growing 3DN-MoS2 and applying high strain energy through an ethanol solution-based drop-casting process, the material self-assembles in the direction of high strain energy. To confirm the applicability of opened active sites in nanostructure interlayers, we fabricated a scrolled 3DN-MoS2 gas sensor, demonstrating a 28-fold sensitivity enhancement compared to pristine 3DN-MoS2. The unique assembly operation of nanostructures enables ver-satile applications, including the detection of toxic gases at low concentrations and low operating temperatures.

키워드

2D material; MoS2; Nanoscroll; 3D nanostructure; Gas sensor; QUALITY CARBON NANOSCROLLS; MONOLAYER; PERFORMANCE
제목
3D-nanostructured MoS2 nanoscroll with highly active sites for improving NO2 gas detection
저자
Park, Hoyeon; Park, Jaeseo; Kang, Sang-Woo; Jeong, Soo-Hwan
DOI
10.1016/j.matlet.2023.134733
발행일
2023-10-15
유형
Article
저널명
Materials Letters
권
349