Fabrication of a room-temperature NO2 gas sensor based on WO3 films and WO3/MWCNT nanocomposite films by combining polyol process with metal organic decomposition method

被引:54
作者
Su, Pi-Guey [1 ]
Pan, Te-Tsun [1 ]
机构
[1] Chinese Culture Univ, Dept Chem, Taipei 111, Taiwan
关键词
Polyol; Metal organic decomposition; Nanocomposite; Room-temperature sensor; MEDIATED SYNTHESIS; CARBON NANOTUBES; THICK-FILM; TUNGSTEN TRIOXIDE; OXIDE; SENSITIVITY; FUNCTIONALIZATION; POWDERS;
D O I
10.1016/j.matchemphys.2010.11.001
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Polyol process was combined with metal organic decomposition (MOD) method to fabricate a room-temperature NO2 gas sensor based on a tungsten oxide (WO3) film and another a nanocomposite film of WO3/multi-walled carbon nanotubes (WO3/MWCNTs). X-ray diffractometry (XRD), scanning electron microscopy (SEM) and atomic force microscopy (AFM) were used to analyze the structure and morphology of the fabricated films. Comparative gas sensing results indicated that the sensor that was based on the WO3/MWCNT nanocomposite film exhibited a much higher sensitivity than that based on a WO3 film in detecting NO2 gas at room temperature. Microstructural observations revealed that MWCNTs were embedded in the WO3 matrix. Therefore, a model of potential barriers to electronic conduction in the composite material was used to suggest that the high sensitivity is associated with the stretching of the two depletion layers at the surface of the WO3 film and at the interface of the WO3 film and the MWCNTs when detected gases are adsorbed at room temperature. The sensor that is based on a nanocomposite film of WO3/MWCNT exhibited a strong response in detecting very low concentrations of NO2 gas at room temperature and is practical because of the ease of its fabrication. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:351 / 357
页数:7
相关论文
共 50 条
[41]   Electrodeposition of WO3 nanostructured thin films for electrochromic and H2S gas sensor applications [J].
Poongodi, S. ;
Kumar, Palaniswamy Suresh ;
Mangalaraj, D. ;
Ponpandian, N. ;
Meena, P. ;
Masuda, Yoshitake ;
Lee, Chongmu .
JOURNAL OF ALLOYS AND COMPOUNDS, 2017, 719 :71-81
[42]   Enhanced NO2 sensing properties of Pt/WO3 films grown by glancing angle deposition [J].
Liu, Hao ;
Xu, Yaohua ;
Zhang, Xiao ;
Zhao, Wenrui ;
Ming, Anjie ;
Wei, Feng .
CERAMICS INTERNATIONAL, 2020, 46 (13) :21388-21394
[43]   Modulation of room temperature ferromagnetism in WO3 thin films on low-cost Si wafers [J].
Pham, Nguyen Sy ;
Hong, Nguyen Hoa .
SOLID STATE COMMUNICATIONS, 2025, 397
[44]   WO3 porous nanosheet arrays with enhanced sensing performance low temperature NO2 gas [J].
Wang, Mingsong ;
Wang, Yiwei ;
Li, Xiaojing ;
Ge, Chuanxin ;
Hussain, Shahid ;
Liu, Guiwu ;
Qiao, Guanjun .
SENSORS AND ACTUATORS B-CHEMICAL, 2020, 316
[45]   Improved acetone gas sensing performance based on optimization of a transition metal doped WO3 system at room temperature [J].
Pi, Mingyu ;
Zheng, Liyu ;
Luo, Haoyue ;
Duan, Simiao ;
Li, Chenlu ;
Yang, Jie ;
Zhang, Dingke ;
Chen, Shijian .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2021, 54 (15)
[46]   Synergetic Interplay of Curved Si Nanobelts and WO3 Nanoparticles as Heterostructure Design Featuring Effective Room-Temperature NO2 Detection [J].
Chen, Yu-Ren ;
Chen, Yafeng ;
Chiu, Po-Hao ;
Hsiao, Po-Hsuan ;
Chen, Chia-Yun .
ACS APPLIED NANO MATERIALS, 2022, 5 (07) :8962-8972
[47]   Effect of humidity on the properties of NO2 sensors based on thin WO3 and SnO2 films modified with gold [J].
E. Yu. Sevastyanov ;
N. K. Maksimova ;
F. V. Rudov ;
N. V. Sergeichenko ;
E. V. Chernikov .
Russian Journal of Physical Chemistry A, 2015, 89 :447-452
[48]   Preparation of polythiophene/WO3 organic-inorganic hybrids and their gas sensing properties for NO2 detection at low temperature [J].
Huang, Jing ;
Kang, Yanfei ;
Yang, Taili ;
Wang, Yao ;
Wang, Shurong .
JOURNAL OF NATURAL GAS CHEMISTRY, 2011, 20 (04) :403-407
[49]   A novel room temperature ethanol sensor based on catalytic Fe activated porous WO3 microspheres [J].
Renitta, A. ;
Vijayalakshmi, K. .
CATALYSIS COMMUNICATIONS, 2016, 73 :58-62
[50]   Highly sensitive and selective NO2 sensor based on Au-impregnated WO3 nanorods [J].
Kabcum, S. ;
Kotchasak, N. ;
Channei, D. ;
Tuantranont, A. ;
Wisitsoraat, A. ;
Phanichphant, S. ;
Liewhiran, C. .
SENSORS AND ACTUATORS B-CHEMICAL, 2017, 252 :523-536