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基于二维材料的气体传感器研究进展

Research progress of gas sensor based on two-dimensional materials
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摘要 二维材料具有比表面积大、物理、化学性能优异、可在室温下工作等特点,已在气体传感器领域得到了广泛应用。根据二维材料的分类,系统阐述石墨烯、过渡金属二卤代物(TMDs)、MXenes及其复合材料在气体传感器领域的研究现状,指出存在的问题与最新的突破,并展望二维材料的发展前景和挑战。 Two-dimensional materials have been widely used in the field of gas sensors because of their large specific surface area,excellent physical and chemical properties and ability to work at room temperature.According to the classification of two-dimensional materials,the research status of graphene,transition metal dihalogenates(TMDs),MXenes and their composites in the field of gas sensors are systematically expounded,and the existing problems and the latest breakthroughs are pointed out.Development prospects and challenges of two-dimensional materials as gas sensing materials are prospected.
作者 朱成龙 周杨 吴科 张然然 李丽丽 汶飞 ZHU Chenglong;ZHOU Yang;WU Ke;ZHANG Ranran;LI Lili;WEN Fei(School of Electronic Information,Hangzhou Dianzi University,Hangzhou 310018,China;Institute of Microelectronics Technology of Xi’an,Xi’an 710068,China)
出处 《传感器与微系统》 CSCD 北大核心 2023年第6期8-12,16,共6页 Transducer and Microsystem Technologies
基金 浙江省联合技术研发与示范推广项目(2019C04003) 杭州电子科技大学研究生科研创新基金资助项目(CXJJ2021045)。
关键词 二维材料 气体传感器 气敏响应 复合材料 two-dimensional material gas sensor gas sensitive response composite materials
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  • 1Du A, Zhu Z, Smith S C. Multifunctional porous graphene for nanoelectronics and hydrogen storage: new properties revealed by first principle calculations. Journal of the American Chemical Society, 2010, 132(9): 2876-2877.
  • 2Geim A K, Novoselov K S. The rise of graphene. Nature Materials, 2007, 6(3): 183-191.
  • 3Schedin F, Geim A K, Morozov S V, Hill E W, Blake P, Katsnelson M I, Novoselov K S. Detection of individual gas molecules adsorbed on graphene. Nature Materials, 2007, 6(9): 652-655.
  • 4Leenaerts O, Partoens B, Peeters M. Adsorption of H20, NH3, CO, NO2, and NO on graphene: A first-principles study. Physical Review B: Condensed Matter and Materials Physics, 2008, 77(12): 125416.
  • 5Romero H E, Joshi P, Gupta A K, Gutierrez H R, Cole M W, Tadigadapa S A, Eklund P C. Adsorption of ammonia on graphene. Nanotechnology, 2009, 20(24): 245501.
  • 6Ko G, Jung Y, Lee Y, Lee K, Kim J. Improved sorption characteristics of NH3 molecules on the solution-processed graphene sheets. Journal of Crystal Growth, 2011, 326(1): 208- 211.
  • 7Tang S, Cao Z. Adsorption of nitrogen oxides on graphene and graphene oxides: insights from density functional calculations. Journal of Chemical Physics, 2011, 134(4): 044710-044714.
  • 8Mercuri F, Sgamellotti A, Valentini L, Armentano I, Kenny J M. Vacancy-induced chemisorption of NO2 on carbon nanotubes: a combined theoretical and experimental study. Journal of Physical Chemistry B, 2005, 109(27): 13175-13179.
  • 9Valentini L, Mercuri F, Armentano I, Cantalini C, Picozzi S, Lozzi L, Santucci S, Sgamellotti A, Kenny M. Role of defects on the gas sensing properties of carbon nanotubes thin films: experiment and theory. Chemical Physics Letters, 2004, 387(4-6): 356-361.
  • 10Tang S, Cao Z. Defect-induced chemisorption of nitrogen oxides on (10,0) single-walled carbon nanotubes: Insights from density functional calculations. Journal of Chemical Physics, 2009, 131 (11): 114706-114708.

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