JOURNAL ARTICLE

A Highly Sensitive Room-Temperature NO2 Gas Sensor based on PorousMnO2/rGO Hybrid Composites

Youyi SunHui ZhangKangtai OuRuihua GuanYang CaoXiao Li

Year: 2022 Journal:   Current Nanoscience Vol: 19 (3)Pages: 401-409   Publisher: Bentham Science Publishers

Abstract

Background: The NOX (e.g. NO2) is harmful to human health and environmental quality. It is of great interest to monitor the hazardous NOx with a simple, reliable, and sensitive sensor. Currently, the commonly used detection methods have disadvantages of complex operation, unstable cycling performance and low sensitivity. Objective: In this paper, rGO coated Ni foam supported MnO2 is synthesized to develop a more advanced detection method for the rapid analysis of NO2. Methods: A three-dimensional nickel foam supported MnO2 and rGO (MnO2/rGO@NF) was prepared by a hydrothermal method for application in binder-free electrode of NO2 sensor. Results: The MnO2/rGO@NF composite displayed significantly better NO2 sensing performance compared to single MnO2@NF or rGO@NF. The excellent sensing response (5.9%) as well as high cycling stability were observed in the presence of 50.0 ppm NO2 at room temperature. Furthermore, the mechanism of the great gas-sensing performance was also investigated by the density functional theory (DFT). Conclusion: These results were very important to further design and prepare new sensitive materials applied in binder-free electrode of gas NO2 sensors.

Keywords:
NOx Materials science Electrode Composite number Hydrothermal circulation Porosity Hazardous waste Chemical engineering Nickel Composite material Nanotechnology Combustion Metallurgy Waste management Chemistry

Metrics

13
Cited By
1.40
FWCI (Field Weighted Citation Impact)
36
Refs
0.78
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Gas Sensing Nanomaterials and Sensors
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Analytical Chemistry and Sensors
Physical Sciences →  Chemical Engineering →  Bioengineering
Advanced Chemical Sensor Technologies
Physical Sciences →  Engineering →  Biomedical Engineering

Related Documents

JOURNAL ARTICLE

Highly sensitive room-temperature α-Fe2O3-RGO /n-Si Schottky diode acetone sensor

Hosna DavarimaneshMohammad Bagher Rahmani

Journal:   Microchemical Journal Year: 2025 Vol: 217 Pages: 114909-114909
JOURNAL ARTICLE

Highly Sensitive CO2 Sensor with Polymer Composites Operating at Room Temperature

T. TonosakiTakahiro OhoHiroshi ShiigiK. IsomuraKotaro Ogura

Journal:   Analytical Sciences/Supplements Proceedings of IUPAC International Congress on Analytical Sciences 2001 (ICAS 2001) Year: 2002 Vol: 17
© 2026 ScienceGate Book Chapters — All rights reserved.