Tuning the Photocatalytic Performance of Tungsten Oxide by Incorporating Cu3V2O8 Nanoparticles for H2 Evolution Under Visible Light Irradiation

被引:3
|
作者
Tahir, M. B. [1 ]
Iqbal, T. [1 ]
Zeba, I. [2 ]
Hasan, A. [1 ]
Muhammad, Shabbir [3 ]
Siddeeg, Saifeldin M. [4 ]
Shahzad, Khurram [5 ]
机构
[1] Univ Gujrat, Dept Phys, Fac Sci, Hafiz Hayat Campus, Gujrat 50700, Pakistan
[2] Women Univ, Dept Phys, Lahore Coll, Lahore 54000, Punjab, Pakistan
[3] King Khalid Univ, Dept Phys, Coll Sci, POB 9004, Abha 61413, Saudi Arabia
[4] King Khalid Univ, Dept Chem, Coll Sci, POB 9004, Abha, Saudi Arabia
[5] King Abdulaziz Univ, Ctr Excellence Environm Studies, Jeddah 21589, Saudi Arabia
关键词
hydrogen energy; photocatalysis; Cu3V2O8-WO3; nanoparticles; WO3; NANOPARTICLES; THIN-FILMS; DEGRADATION; FABRICATION; NANOSTRUCTURES; PHOTOANODE; NANOSHEETS; NANORODS; G-C3N4;
D O I
10.1115/1.4043491
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
The green energy production through water splitting under visible light irradiation has become an emerging challenge in the 21st century. Photocatalysis, being a cost-competitive and efficient technique, has grabbed much more attention for environmental applications, especially for hydrogen evolution. In this article, the hybrid Cu3V2O8-WO3 nanostructures were prepared through the hydrothermal method by using copper acetate, ammonium meta-vanadate, and Na2WO4 center dot 2H(2)O as precursors. The varying contents of Cu3V2O8 in WO3 were 0.2%, 0.5%, 1.0%, 2.0%, and 3.0%. The X-ray diffraction (XRD), scanning electron microscopy (SEM), Brunauer-Emmett-Teller (BET), UV-Vis, and photoluminescence (PL) emission spectroscopy were used to investigate the structural, morphological, surface area, and optical properties of prepared samples. The average crystalline size of the pure WO3 ranges from 10 to 15 nm and 70 to 195 nm for an optimal composite sample. The structural phase of the hybrid WO3-Cu3V2O8 nanoparticles was found to transfer from monoclinic to hexagonal by incorporating the Cu3V2O8 contents. The enhanced photocatalytic performance for hydrogen evolution was observed for 2% Cu3V2O8-WO3 composite sample. The key to this enhancement lies at the heterojunction interface, where charge separation occurs. In addition, the excellent photocatalytic activity was attributed to a higher surface area, efficient charge separation, and extended visible light absorption. This work provides an in-depth understanding of efficient separation of charge carriers and transfer processes and steer charge flow for efficient solar-to-chemical energy applications.
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页数:5
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