DOE OSTI · 1616138
High-Performance Atomically-Thin Room-Temperature NO 2 Sensor
Abstract
The development of room-temperature sensing devices for detecting small concentrations of molecular species is imperative for a wide range of low-power sensor applications. Here, we demonstrate a room-temperature, highly sensitive, selective, and reversible chemical sensor based on a monolayer of the transition metal dichalcogenide Re 0.5 Nb 0.5 S 2 . The sensing device exhibits thickness dependent carrier type, and upon exposure to NO 2 molecules, its electrical resistance considerably increases or decreases depending on the layer number. The sensor is selective to NO 2 with only minimal response to other gases such as NH 3 , CH 2 O, and CO 2 . In the presence of humidity, not only are the sensing properties not deteriorated, but also the monolayer sensor shows complete reversibility with fast recovery at room temperature. We present a theoretical analysis of the sensing platform and identify the atomically-sensitive transduction mechanism.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Azizi, Amin, Dogan, Mehmet, Long, Hu, Cain, Jeffrey D., Lee, Kyunghoon, Eskandari, Rahmatollah, Varieschi, Alessandro, Glazer, Emily C., Cohen, Marvin L., Zettl, Alex. 2020-07-17. High-Performance Atomically-Thin Room-Temperature NO 2 Sensor. https://doi.org/10.1021/acs.nanolett.0c02221
Cite the original work for its findings. Save a collection to share your selection of sources.