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A Review on Graphene-Based Gas/Vapor Sensors with Unique Properties and Potential Applications
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  • 分类:O613.71[理学—无机化学;理学—化学] TP212[自动化与计算机技术—控制科学与工程;自动化与计算机技术—检测技术与自动化装置]
  • 作者机构:Key Laboratory for Thin Film and Microfabrication of Ministry of Education, Department of Micro/Nano Electronics, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, National Engineering Research Center for Nanotechnology
  • 相关基金:financial supports provided by the National Basic Research Program of China(2013CB932500);the National Natural Science Foundation of China(21171117 and 61574091);the Program for New Century Excellent Talents in University(NCET-12-0356);the Program of Shanghai Academic/Technology Research Leader(15XD1525200);Shanghai Jiao Tong University Agri-X Funding(Agri-X2015007);the Program for Professor of Special Appointment(Eastern Scholar)at Shanghai Institutions of Higher Learning
中文摘要:

Graphene-based gas/vapor sensors have attracted much attention in recent years due to their variety of structures, unique sensing performances, room-temperature working conditions, and tremendous application prospects, etc.Herein, we summarize recent advantages in graphene preparation, sensor construction, and sensing properties of various graphene-based gas/vapor sensors, such as NH3, NO2, H2, CO, SO2, H2S, as well as vapor of volatile organic compounds.The detection mechanisms pertaining to various gases are also discussed. In conclusion part, some existing problems which may hinder the sensor applications are presented. Several possible methods to solve these problems are proposed, for example, conceived solutions, hybrid nanostructures, multiple sensor arrays, and new recognition algorithm.

英文摘要:

Graphene-based gas/vapor sensors have attracted much attention in recent years due to their variety of structures, unique sensing performances, room-temperature working conditions, and tremendous application prospects, etc. Herein, we summarize recent advantages in graphene preparation, sensor construction, and sensing properties of various graphene-based gas/vapor sensors, such as NH3, NO2, H-2, CO, SO2, H2S, as well as vapor of volatile organic compounds. The detection mechanisms pertaining to various gases are also discussed. In conclusion part, some existing problems which may hinder the sensor applications are presented. Several possible methods to solve these problems are proposed, for example, conceived solutions, hybrid nanostructures, multiple sensor arrays, and new recognition algorithm.

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