Facile synthesis of copper carbonate/cobalt carbonate/manganese carbonate and copper oxide/cobalt manganese oxide/manganese oxide as novel nanocomposites for efficient photocatalytic degradation of crystal violet dye
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A. M. Khedr | M. Al-Omar | A. Naglah | H. Katouah | A. Al-Wasidi | Ehab A. Abdelrahman | Reem M. Alghanmi | A. Almehizia | Maram T. Basha | Ehab A Abdelrahman | R. M. Hegazey | F. Algethami
[1] Mohamed A. Abdelwahab,et al. Encapsulation of NiS and ZnS in analcime nanoparticles as novel nanocomposites for the effective photocatalytic degradation of orange G and methylene blue dyes , 2022, International Journal of Environmental Analytical Chemistry.
[2] H. Ibrahim,et al. Reusable and highly stable MoS2 nanosheets for photocatalytic, sonocatalytic and thermocatalytic degradation of organic dyes: Comparative study , 2022, Nano-Structures & Nano-Objects.
[3] Hassan Algadi,et al. Facile green synthesis of magnesium oxide nanoparticles using tea (Camellia sinensis) extract for efficient photocatalytic degradation of methylene blue dye , 2022, Environmental Technology & Innovation.
[4] M. A. Malik,et al. Biomimmetic ZrO2@PdO nanocomposites: fabrication, characterization, and water splitting potential exploration , 2022, International Journal of Energy Research.
[5] M. Ghaznavi-Ghoushchi,et al. Enhanced photocatalytic Activity of ZrO2-CdZrO3-S Nanocomposites for Degradation of Crystal Violet dye under Sunlight , 2021, Journal of Photochemistry and Photobiology A: Chemistry.
[6] Soner Top,et al. Production of Mn3O4 nanoparticles from a manganiferous iron ore via reductive leaching, precipitation, and calcination , 2021, Hydrometallurgy.
[7] A. Dey,et al. Synthesis and characterization of copolymer adsorbent for crystal violet dye removal from water , 2021, Materials Today: Proceedings.
[8] Li Li,et al. Succulent-like core–shell composite: Synthesis of CdS coated with an ultrathin layer of TiO2 and enhanced photocatalytic performance in the degradation of crystal violet and hydrogen production , 2021 .
[9] Yaneth A. Bustos-Terrones,et al. Removal of BB9 textile dye by biological, physical, chemical, and electrochemical treatments , 2021 .
[10] Nagaraju Kottam,et al. Investigation of photocatalytic degradation of crystal violet and its correlation with bandgap in ZnO and ZnO/GO nanohybrid , 2021, Inorganic Chemistry Communications.
[11] H. H. Do,et al. Efficient photocatalytic degradation of crystal violet under natural sunlight using Fe3O4/ZnO nanoparticles embedded carboxylate-rich carbon , 2021 .
[12] R. Ullah,et al. Evaluations of physico-chemical properties of TiO2/clinoptilolite synthesized via three methods on photocatalytic degradation of crystal violet , 2020 .
[13] M. Trari,et al. Photocatalytic degradation of crystal violet dye on the novel CuCr2O4/SnO2 hetero-system under sunlight , 2020, Optik.
[14] Abdu Subaihi,et al. Facile fabrication of hematite nanoparticles from Egyptian insecticide cans for efficient photocatalytic degradation of rhodamine B dye , 2020 .
[15] Jency Thomas,et al. Ion-exchange mediated removal of cationic dye-stuffs from water using ammonium phosphomolybdate , 2020 .
[16] M. E. Khalifa,et al. Application of Mesoporous Silica Nanoparticles Modified with Dibenzoylmethane as a Novel Composite for Efficient Removal of Cd(II), Hg(II), and Cu(II) Ions from Aqueous Media , 2019, Journal of Inorganic and Organometallic Polymers and Materials.
[17] Ahmed Alharbi,et al. Facile synthesis of Fe2O3 nanoparticles from Egyptian insecticide cans for efficient photocatalytic degradation of methylene blue and crystal violet dyes. , 2019, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[18] Shen-ming Chen,et al. Green synthesis of reduced graphene oxide supported TiO2/Co3O4 nanocomposite for photocatalytic degradation of methylene blue and crystal violet , 2019, Ceramics International.
[19] Moayad Hossaini Sadr,et al. Synthesis and Characterization of CdTiO3@S Composite: Investigation of Photocatalytic Activity for the Degradation of Crystal Violet Under Sun Light , 2019, Journal of Inorganic and Organometallic Polymers and Materials.
[20] Veerabhadram Guttena,et al. Sunlight-driven competent photocatalytic degradation of crystal violet using sonochemically produced GO capped Ag2S nanocomposites , 2019, Materials Today Communications.
[21] A. Stephen,et al. Preparation and performance of Fe3O4/TiO2 nanocomposite with enhanced photo-Fenton activity for photocatalysis by facile hydrothermal method , 2019, Applied Physics A.
[22] P. Mei,et al. Enhanced removal efficiency of acid red 18 from aqueous solution using wheat bran modified by multiple quaternary ammonium salts , 2018, Chemical Physics Letters.
[23] M. Trari,et al. Structural and optical properties of Cu-substitution of NiAl2O4 and their photocatalytic activity towards Congo red under solar light irradiation , 2018, Journal of Photochemistry and Photobiology A: Chemistry.
[24] A. Zaki,et al. Visible light assisted photocatalytic degradation of crystal violet, bromophenol blue and eosin Y dyes using AgBr-ZnO nanocomposite , 2018 .
[25] B. Majlis,et al. Synthesis and characterization of CaFe2O4 nanoparticles via co-precipitation and auto-combustion methods , 2018 .
[26] H. M. Aly,et al. Synthesis, characterization, and biological activity of some novel Schiff bases and their Co(II) and Ni(II) complexes: A new route for Co 3 O 4 and NiO nanoparticles for photocatalytic degradation of methylene blue dye , 2017 .
[27] S. Shariati,et al. Removal of Carmoisine edible dye by Fenton and photo Fenton processes using Taguchi orthogonal array design , 2017 .
[28] H. Ali,et al. Biodegradation of Synthetic Dyes—A Review , 2010 .
[29] A. Afkhami,et al. Adsorptive removal of Congo red, a carcinogenic textile dye, from aqueous solutions by maghemite nanoparticles. , 2010, Journal of hazardous materials.
[30] A. Chakraborty,et al. Study of energy transfer from 7-amino coumarin donors to rhodamine 6G acceptor in non-aqueous reverse micelles , 2005 .