Layered Sulfur Nanosheets: From Ultrasensitive Ammonia Detection to High-Performance Pressure Sensing
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Le résumé fourni par la source
This work reports on the innovative application of layered sulfur nanosheets (S-NSs) in high-performance ammonia (NH 3 ) sensing and flexible piezoresistive sensing. To address the challenges of precise band structure tailoring in two-dimensional materials and the limited performance enhancement of piezoresistive sensors, we successfully synthesized S-NSs with an optimized band structure via a dual-ligand strategy employing sodium dodecyl benzenesulfonate (SDBS) and bovine serum albumin (BSA). The resulting material exhibited exceptional sensitivity in NH 3 detection, achieving a 20-fold enhancement in the response signal to an ultralow NH 3 concentration (10 ppt) compared to its single-ligand (BSA) counterpart along with a rapid response (5.2 s) and recovery (3.5 s). More importantly, we pioneered the integration of S-NSs with carbon nanotubes (CNTs) into a polyvinylidene fluoride (PVDF) matrix to construct a ternary “PVDF/CNTs/S-NSs” composite for piezoresistive sensing. This sensor demonstrated a remarkable 100-fold improvement in piezoresistive response relative to the control group without S-NSs, featuring high sensitivity, good linearity (0.3 to 1.4 kPa), a fast response time of as low as 220 ms, and enabling the effective monitoring of a wide range of human motions, including finger tapping, joint movement, and walking. This study not only provides a paradigm for designing ultrasensitive gas sensors through ligand engineering but also pioneeringly demonstrates the vast potential of S-NSs as a versatile nanomaterial for achieving cross-modal sensing capabilities, paving a material pathway for the development of next-generation flexible electronics.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Layered Sulfur Nanosheets: From Ultrasensitive Ammonia Detection to High-Performance Pressure Sensing
- Date Crossref
- 13/01/2026
- Éditeur
- American Chemical Society (ACS)
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Où se fait cette recherche
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Xi'an University of Science and Technology pays non établi dans la noticeUniversité ou école supérieure
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College of Chemistry and Chemical Engineering pays non établi dans la noticeUniversité ou école supérieure
Xi'an University of Science and Technology et College of Chemistry and Chemical Engineering.
Une affiliation ne permet pas de déduire la nationalité d’un auteur.