Facile hydrothermal synthesis and characterization of novel Co-doped ZnS nanoparticles with superior physical properties

被引:0
|
作者
Mohamed, W. S. [1 ]
Ezzeldien, Mohammed [1 ]
Alshammari, Alhulw H. [1 ]
Alshammari, Khulaif [1 ]
Alhassan, Sultan [1 ]
Hadia, N. M. A. [1 ]
机构
[1] Jouf Univ, Coll Sci, Dept Phys, POB 2014, Sakaka, Saudi Arabia
关键词
Nanospheres; XRD; Infrared spectra; XPS; Optical properties; Co(x)Zn(1-x)S; MAGNETIC-PROPERTIES; DEPENDENT ROOM; THIN-FILMS; FERROMAGNETISM;
D O I
10.1016/j.optmat.2024.116345
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study utilized simple hydrothermal conditions for developing novel Co(x)Zn(1-x)S nanosphere particles with varying Co doping ratios (0.0 <= x < 0.09). We analyzed the samples for structural, morphological, and optical parameters, taking special care to correlate all these aspects. The structural analysis by x-ray diffraction (XRD) reveals that both pure ZnS nanoparticles and Co(x)Zn(1-x)S nanospheres possess crystalline and cubic-phase purity. The Williamson-Hall method employed XRD line profile analysis to evaluate the microstructural characteristics of the nanoparticles. The crystallite size in the doped samples varied from 5.8 nm to 8 nm, contingent upon the cobalt concentration in the zinc sulfide lattice. The field emission scanning electron microscopy analysis verified that the obtained nanoparticles had a uniform spherical morphology and narrow size distribution. UV-Vis spectroscopy indicates that the optical energy gap of Co(x)Zn(1-x)S nanospheres ranges from 4.74 eV to 5.1 eV within the ultraviolet-visible spectrum. The infrared spectra exhibit the three distinct Zn-S stretching vibrational modes within the wavenumber range of 470 cm(-1) to 706 cm(-1). X-ray photoelectron spectroscopy (XPS) analysis revealed that all samples exhibited a Zn2+ oxidation state within the crystal lattice and contained sulfur vacancies. The XPS test verifies the presence of both Co3+ and Co2+ oxidation states inside the lattice structure of ZnS nanoparticles. This can be advantageous in specific applications. The results of this study suggest that Co(x)Zn(1-x)S nanospheres has potential functional applications across various domains.
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页数:15
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