Piezoelectrics & Acoustooptics, Volume. 47, Issue 2, 246(2025)
Graphene Oxide Coated SAW Sensor for Highly Sensitive DMMP Detection
[1] [1] GRABKA M, JASEK K, PASTERNAK M. Application of polymethyl [4-(2, 3-difluoro-4-hydroxyphenoxy)butyl] siloxane in surface acoustic wave gas sensors for dimethyl methylphosphonate detection[J]. Sensors and Actuators B: Chemical, 2021, 329: 129216.
[2] [2] FAN Shengqiang, ZHANG Guanran, DENNISON G H, et al. Challenges in fluorescence detection of chemical warfare agent vapors using solid-state films[J]. Advanced Materials, 2020, 32(18): 1905785.
[3] [3] BARTELT-HUNT S L, KNAPPE D R U, BARLAZ M A. A review of chemical warfare agent simulants for the study of environmental behavior[J]. Critical Reviews in Environmental Science and Technology, 2008, 38(2): 112-136.
[4] [4] BESOV A S, KRIVOVA N A, VORONTSOV A V, et al. Air detoxification with nanosize TiO2 aerosol tested on mice[J]. Journal of Hazardous Materials, 2010, 173(1/2/3): 40-46.
[5] [5] KISELEV A, MATTSON A, ANDERSSON M, et al. Adsorption and photocatalytic degradation of diisopropyl fluorophosphate and dimethyl methylphosphonate over dry and wet rutile TiO2[J]. Journal of Photochemistry and Photobiology A: Chemistry, 2006, 184(1/2): 125-134.
[6] [6] CHEN Daqi, ZHANG Kaihuan, ZHOU Hui, et al. A wireless-electrodeless quartz crystal microbalance with dissipation DMMP sensor[J]. Sensors and Actuators B: Chemical, 2018, 261: 408-417.
[7] [7] LONG Yin, WANG Yang, DU Xiaosong, et al. The different sensitive behaviors of a hydrogen-bond acidic polymer-coated SAW sensor for chemical warfare agents and their simulants[J]. Sensors, 2015, 15(8): 18302-18314.
[8] [8] ZHU Ye, CHENG Zhixuan, XIANG Qun, et al. Synthesis of functionalized mesoporous TiO2-SiO2 with organic fluoroalcohol as high performance DMMP gas sensor[J]. Sensors and Actuators B: Chemical, 2017, 248: 785-792.
[9] [9] JING Hongjun, JIANG Yadong, DU Xiaosong. Dimethyl methylphosphonate detection with a single-walled carbon nanotube capacitive sensor fabricated by airbrush technique[J]. Journal of Materials Science: Materials in Electronics, 2013, 24(2): 667-673.
[10] [10] YANG Zhimin, ZHANG Yaqing, ZHAO Liang, et al. The synergistic effects of oxygen vacancy engineering and surface gold decoration on commercial SnO2 for ppb-level DMMP sensing[J]. Journal of Colloid and Interface Science, 2022, 608: 2703-2717.
[12] [12] HAO Meng, ZENG Wen, LI Yanqiong, et al. Three-dimensional graphene and its composite for gas sensors[J]. Rare Metals, 2021, 40(6): 1494-1514.
[13] [13] MENG Fanli, GUO Zheng, HUANG Xingjiu. Graphene-based hybrids for chemiresistive gas sensors[J]. TrAC Trends in Analytical Chemistry, 2015, 68: 37-47.
[14] [14] LIU Sen, TIAN Jingqi, WANG Lei, et al. Production of stable aqueous dispersion of poly(3, 4-ethylenedioxythiophene) nanorods using graphene oxide as a stabilizing agent and their application for nitrite detection[J]. Analyst, 2011, 136(23): 4898-4902.
[15] [15] ELLIS J E, SORESCU D C, HWANG S I, et al. Modification of carbon nitride/reduced graphene oxide van der waals heterostructure with copper nanoparticles to improve CO2 sensitivity[J]. ACS Applied Materials& Interfaces, 2019, 11(44): 41588-41594.
[16] [16] YANG Yuanmin, WAN Neng, YU Hong. The preparation of modified graphene oxide and gas sensitivity study[C]//New Delhi, India: 2018 IEEE Sensors, 2018: 1-4.
[17] [17] XIONG Xinyue, LIU Zhanglin, ZHAO Li, et al. Tailoring biochar by PHP towards the oxygenated functional groups (OFGs)-rich surface to improve adsorption performance[J]. Chinese Chemical Letters, 2022, 33(6): 3097-3100.
Get Citation
Copy Citation Text
ZHANG Ying, JIN Jing, YANG Shilin, ZHANG Song, HU Wentao, RUAN Linping, CAI Jianbing. Graphene Oxide Coated SAW Sensor for Highly Sensitive DMMP Detection[J]. Piezoelectrics & Acoustooptics, 2025, 47(2): 246
Received: Dec. 15, 2024
Accepted: Jun. 17, 2025
Published Online: Jun. 17, 2025
The Author Email: