Facile and one step synthesis of WO3 nanorods and nanosheets as an efficient photocatalyst and humidity sensing material

被引:121
作者
Parthibavarman, M. [1 ]
Karthik, M. [2 ]
Prabhakaran, S. [3 ]
机构
[1] Chikkaiah Naicker Coll, PG & Res Dept Phys, Erode 638004, Tamil Nadu, India
[2] Bharathiar Univ, Res & Dev Ctr, Coimbatore 641046, Tamil Nadu, India
[3] VIT Univ, Ctr Crystal Growth, Vellore 632014, Tamil Nadu, India
关键词
WO3; nanostructures; Photocatalyst; Visible light; Humidity sensor; High sensitivity; PERFORMANCE; SNO2; NANOSTRUCTURES; TEMPERATURE; HYDROGEN; SPHERE; FILMS; WATER; TIO2;
D O I
10.1016/j.vacuum.2018.06.021
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this report, large scale WO3 nanorods (NRs) and nanosheets (NSs) are prepared successfully by a facile one-step microwave irradiation method, using tungstic acid as tungsten source and CTAB & PEG as surfactants. TEM images showed that CTAB assisted microwave produced WO3 nanorods (diameter of 20-50 nm, length of 400-500 nm) and nanosheets (widths of 250-300 nm and thicknesses of about 15 nm) was produced with the presence of PEG assisted WO3 samples respectively. Powder XRD result showed that monoclinic phase of WO3 and the consequent pattern is in good agreement with the JCPDS card No. 83-0951. The photocatalytic activity of the catalyst powders were examined by using methylene blue (MB) and congo-red (CR) dyes under visible light irradiation. The results proved that superior catalytic performance of WO3 nanosheets compared to WO3 nanorods towards dye solutions, this could be due to more active surface for the interaction of dye molecules compared to the rods, which results in a more capable degradation of the dye molecules. Humidity sensor results also showed that WO3 nanosheets were high sensing performance, including sensitivity (98%), fast response (25 s)/recovery time (15 s) and high stability than compared to WO3 nanorods.
引用
收藏
页码:224 / 232
页数:9
相关论文
共 46 条
[21]   Evaluate humidity sensing properties of novel TiO2-WO3 composite material [J].
Lin, Wang-De ;
Lai, De-Sheng ;
Chen, Min-Hung ;
Wu, Ren-Jang ;
Chen, Fu-Chou .
MATERIALS RESEARCH BULLETIN, 2013, 48 (10) :3822-3828
[22]   Topochemical Preparation of WO3 Nanoplates through Precursor H2WO4 and Their Gas-Sensing Performances [J].
Ma, Jianmin ;
Zhang, Jun ;
Wang, Shurong ;
Wang, Taihong ;
Lian, Jiabiao ;
Duan, Xiaochuan ;
Zheng, Wenjun .
JOURNAL OF PHYSICAL CHEMISTRY C, 2011, 115 (37) :18157-18163
[23]   Photocatalyst releasing hydrogen from water - Enhancing catalytic performance holds promise for hydrogen production by water splitting in sunlight. [J].
Maeda, K ;
Teramura, K ;
Lu, DL ;
Takata, T ;
Saito, N ;
Inoue, Y ;
Domen, K .
NATURE, 2006, 440 (7082) :295-295
[24]   A novel microwave synthesis of nanocrystalline SnO2 and its structural optical and dielectric properties [J].
Parthibavarman, M. ;
Vallalperuman, K. ;
Sathishkumar, S. ;
Durairaj, M. ;
Thavamani, K. .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2014, 25 (02) :730-735
[25]  
Parthibavarman M, 2010, J OPTOELECTRON ADV M, V12, P1894
[26]  
Parthibavarman M., 2017, J MATER SCI-MATER EL, V29, P2341
[27]   Ultra-thin V2O5 nanosheet based humidity sensor, photodetector and its enhanced field emission properties [J].
Pawar, Mahendra S. ;
Bankar, Prashant K. ;
More, Mahendra A. ;
Late, Dattatray J. .
RSC ADVANCES, 2015, 5 (108) :88796-88804
[28]   Diameter controlled synthesis of tungsten oxide nanorod bundles for highly sensitive NO2 gas sensors [J].
Pham Van Tong ;
Nguyen Duc Hoa ;
Vu Van Quang ;
Nguyen Van Duy ;
Nguyen Van Hieu .
SENSORS AND ACTUATORS B-CHEMICAL, 2013, 183 :372-380
[29]   Effect of annealing temperature on structural, optical and humidity sensing properties of indium tin oxide (ITO) thin films [J].
Premkumar, M. ;
Vadivel, S. .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2017, 28 (12) :8460-8466
[30]   Humidity Sensor Based on Synthesized WO3-SnO2 Nanocomposites [J].
Roy, Akash ;
Pandey, N. K. ;
Shakya, Vandana ;
Kumar, Alok .
ENERGY AND ENVIRONMENT FOCUS, 2013, 2 (02) :126-132