Reduced Graphene Oxide-Zinc Sulfide Nanocomposite Decorated with Silver Nanoparticles for Wastewater Treatment by Adsorption, Photocatalysis and Antimicrobial Action

被引:31
作者
Naeem, Hina [1 ]
Tofil, Hafiz Muhammad [2 ]
Soliman, Mohamed [3 ]
Hai, Abdul [4 ]
Zaidi, Syeda Huma H. [5 ]
Kizilbash, Nadeem [4 ]
Alruwaili, Daliyah [4 ]
Ajmal, Muhammad [6 ]
Siddiq, Muhammad [2 ]
机构
[1] Rawalpindi Women Univ, Dept Chem, 6th Rd, Rawalpindi 46300, Pakistan
[2] Quaid i Azam Univ, Dept Chem, Islamabad 45320, Pakistan
[3] Northern Border Univ, Fac Med, Dept Microbiol, Ar Ar 91431, Saudi Arabia
[4] Northern Border Univ, Fac Appl Med Sci, Dept Med Lab Technol, Ar Ar 91431, Saudi Arabia
[5] Northern Border Univ, Fac Sci, Dept Chem, Ar Ar 91431, Saudi Arabia
[6] Univ Educ, Dept Chem, Div Sci & Technol, Lahore 54770, Pakistan
关键词
graphene; silver; nanocomposite; adsorption; photocatalysis; antibacterial; HEAVY-METAL IONS; AQUEOUS-SOLUTION; MALACHITE GREEN; GOLD NANOPARTICLES; ORGANIC-DYES; REMOVAL; COMPOSITE; FABRICATION; ADSORBENT; CAPACITY;
D O I
10.3390/molecules28030926
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Reduced graphene oxide nanosheets decorated with ZnS and ZnS-Ag nanoparticles are successfully prepared via a facile one-step chemical approach consisting of reducing the metal precursors on a rGO surface. Prepared rGO-ZnS nanocomposite is employed as an adsorbent material against two model dyes: malachite green (MG) and ethyl violet (EV). The adsorptive behavior of the nanocomposite was tuned by monitoring some parameters, such as the time of contact between the dye and the adsorbent, and the adsorbent dose. Experimental data were also simulated with kinetic models to evaluate the adsorption behavior, and the results confirmed that the adsorption of both dyes followed a pseudo 2nd order kinetic mode. Moreover, the adsorbent was also regenerated in a suitable media for both dyes (HCl for MG and ethanol for EV), without any significant loss in removal efficiency. Ag doped rGO-ZnS nanocomposite was also utilized as a photocatalyst for the degradation of the selected organic contaminant, resorcinol. The complete degradation of the phenolic compound was achieved after 60 min with 200 mg of rGO-ZnS-Ag nanocomposite under natural sunlight irradiation. The photocatalytic activity was studied considering some parameters, such as the initial phenol concentration, the photocatalyst loading, and the pH of the solution. The degradation kinetics of resorcinol was carefully studied and found to follow a linear Langmuir-Hinshelwood model. An additional advantage of rGO-ZnS and rGO-ZnS-Ag nanocomposites was antibacterial activity against Gram-negative bacterium, E. coli, and the results confirmed the significant performance of the nanocomposites in destroying harmful pathogens.
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页数:19
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