Synthesis of optically enriched cobalt-doped zinc oxide nanocomposites: Reduction of methylene blue dye

被引:7
作者
Abebe, Buzuayehu [1 ]
Tsegaye, Dereje [1 ]
Sori, Chaluma [1 ]
Ravikumar, C. R. [2 ]
Murthy, H. C. Ananda [1 ,3 ]
机构
[1] Adama Sci & Technol Univ, Sch Appl Nat Sci, Dept Appl Chem, POB 1888, Adama, Ethiopia
[2] East West Inst Technol, Res Ctr, Dept Sci, Bangalore 560091, India
[3] Saveetha Univ, Saveetha Dent Coll & Hosp, Saveetha Inst Med & Tech Sci SIMATS, Dept Prosthodont, Chennai 600077, Tamil Nadu, India
关键词
Doped catalyst; Porosity; Charge transfer band; Optoelectronic properties; ZNO NANOPARTICLES; PHOTOCATALYTIC DEGRADATION; MAGNETIC-PROPERTIES; PHOTOLUMINESCENCE; PERFORMANCE; MN;
D O I
10.1016/j.optmat.2023.114072
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study reports the synthesis of highly pure nanosized composite materials using a sol-gel self-combustion synthesis (SCS) approach. The complex generated within the polyvinyl alcohol and precursor(s) induces combustion once the ignition temperature is reached, resulting in a porous nanocatalyst as the gaseous by-products are removed. The XRD and TEM morphological analyses confirmed the crystalline nature, interstitial inclusion of cobalt into the ZnO lattice, and the nanoscale size range (20-50 nm) of the synthesized materials. The photoluminescence spectra of the doped nanocomposites showed a significant decrease in intensity as well as a high percentage of visible light absorption potential over pure ZnO NPs. This confirms the presence of better charge transfer and its significance in preventing electron-hole recombination processes. The UV-vis-DRS and Mot Schottky investigations showed better optoelectronic properties for the cobalt-doped ZnO composites (CZ-Cs) compared to that of the pure ZnO NPs. The indirect bandgap reduction (redshift) from 3.22 to 2.70 eV shows the perfect inclusion of cobalt in the ZnO lattice. It was revealed that the CZ-Cs showed better catalytic reduction potential for methylene blue dye within 12 min than ZnO. Thus, the solution combustion synthesis approach effectively synthesizes optoelectrically improved nanocomposite materials, which have promising prospects for catalysis, sensors, and biomedical applications.
引用
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页数:10
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