paper

Humidity-enhanced NO gas sensing using atomically sharp edges in multilayer MoS

arXiv:2411.01043

Abstract

Ambient humidity poses a significant challenge in the development of practical room temperature NO gas sensors. Here, we employ atomically precise zigzag edges in multilayer MoS, fabricated using electron beam lithography and anisotropic wet etching, to achieve highly sensitive and selective gas sensing performance that is humidity-tolerant at elevated temperatures and humidity-enhanced at room temperature under ultraviolet illumination. Notably, exposure to 2.5 parts per billion (ppb) NO at 70% relative humidity under ultraviolet illumination and at room-temperature resulted in a 33-fold increase in response and a 6-fold faster recovery compared to 0% relative humidity, leading to response values exceeding 1100%. The optimized samples demonstrated a theoretical detection limit ranging from 4 to 400 parts per trillion (ppt) NO. The enhanced NO sensing capabilities of MoS edges have been further confirmed through first-principles calculations. Our study expands the applications of nanostructured MoS and highlights its potential for detecting NO at sub-ppb levels in complex scenarios, such as high humidity conditions.

40 pages, 7 figures

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